Showing posts with label SOM230. Show all posts
Showing posts with label SOM230. Show all posts

Thursday, March 8, 2012

New Study to Treat Cushing’s disease

(Ivanhoe Newswire) – Cushing’s disease is a rare disorder of chronic hypercortisolism due to a corticotropin-secreting pituitary adenoma. Despite high remission, surgery has been the best option to treat it. Now doctors are shedding light on a new way to target the disease.

Cushing’s disease is associated with central obesity, osteoporosis, arterial hypertension, insulin resistance, glucose intolerance, diabetes mellitus, dyslipidemia, cardiovascular disease, and increased mortality. The next line of defense after surgery is to try radiation therapy, bilateral adrenalectomy, and medical therapy, but doctors are now looking at something new.

162 adults, with a confirmed persistent or recurrent Cushing’s disease or newly diagnosed disease, were randomly selected to participate in a double-blind, phase 3 study. These patients were given a subcutaneous pasirotide (SOM230) – a somatostatin analogue that targets four of the five somatostatin receptors, with highest affinity for subtype— at a dose of 600 µg (82 patients) or 900 µg (80 patients) twice daily.

Patients with urinary free cortisol not exceeding two times the upper limit of the normal range and not exceeding the baseline level in the third months continued to receive their randomly assigned dose; all others received an additional 300 µg two times daily. The primary end point was a urinary free cortisol level at or below the upper limit of the normal range at month 6 without an increased dose. Open-label treatment continued through well into the twelfth month.

Results showed that twelve of the 82 patients in the 600-µg group and 21 of the 80 patients in the 900-µg group met the primary end point. The median urinary free cortisol level decreased by approximately 50% by the second month and remained stable in both groups. A normal urinary free cortisol level was achieved more frequently in patients with baseline levels not exceeding five times the upper limit of the normal range than in patients with higher baseline levels. Serum and salivary cortisol and plasma corticotropin levels decreased, and clinical signs and symptoms of Cushing's disease diminished.

Pasireotide was associated with hyperglycemia-related adverse events in 118 of 162 patients; other adverse events were similar to those associated with other somatostatin analogues. Despite declines in cortisol levels, blood glucose and glycated hemoglobin levels increased soon after treatment initiation and then stabilized; treatment with a glucose-lowering medication was initiated in 74 of 162 patients.

Researchers concluded that the significant decrease in cortisol levels in patients with Cushing's disease who received pasireotide supports its potential use as a targeted treatment for corticotropin-secreting pituitary adenomas.

SOURCE: New England Journal of Medicine, March 2012.

From http://www.ivanhoe.com/channels/p_channelstory.cfm?storyid=29075

Friday, January 20, 2012

Novartis drug Signifor® recommended by CHMP for EU approval to treat patients with Cushing's disease


Basel, Switzerland, Jan 20, 2012 (Thomson Reuters ONE via COMTEX) -- Novartis International AG / Novartis drug Signifor® recommended by CHMP for EU approval to treat patients with Cushing's disease . Processed and transmitted by Thomson Reuters ONE. The issuer is solely responsible for the content of this announcement.

- If approved, Signifor (SOM230, pasireotide) would be the first approved medication targeting Cushing's disease[1]

- In clinical trials, pasireotide suppresses overproduction of cortisol caused by an underlying pituitary tumor, a critical factor in controlling the disease[2],[3],[4]

- A debilitating endocrine disorder, Cushing's disease most commonly affects women from 20 to 50 years old[2],[5]

Basel, January 20, 2012 - The Committee for Medicinal Products for Human Use (CHMP) of the European Medicines Agency (EMA) adopted a positive opinion for Signifor® (SOM230, pasireotide) for the treatment of Cushing's disease. There are currently no approved medicines in the European Union (EU) targeting Cushing's disease, a debilitating endocrine disorder caused by excess cortisol in the body due to the presence of a non-cancerous pituitary tumor[1],[2].

"We are pleased with the decision by the CHMP in support of pasireotide in the European Union," said Herve Hoppenot, President, Novartis Oncology. "We are now one step closer to being able to offer patients in Europe the first approved medical treatment for Cushing's disease."

In the EU, the European Commission generally follows the recommendations of the CHMP and delivers its final decision within three months of the CHMP recommendation. The decision will be applicable to all 27 EU member states plus Iceland and Norway. Pasireotide has orphan drug designation for Cushing's disease, a condition which affects no more than five in 10,000 people in the EU, the threshold for orphan designation[6].

The CHMP positive opinion is based on data from the Phase III PASPORT-CUSHINGS (PASireotide clinical trial PORTfolio - CUSHING'S disease) trial, the largest randomized study to evaluate a medical therapy in patients with Cushing's disease[4].

In the study, patients were randomized to receive pasireotide subcutaneous (sc) injection in doses of 900ug and 600ug twice daily. For the 900ug group, the study met the primary endpoint of normalizing urinary-free cortisol (UFC) levels, the key measure of biochemical control of the disease[4].

Urinary-free cortisol levels were normalized in 26.3% and 14.6% of patients randomized to receive pasireotide 900ug and 600ug twice daily, respectively, at six months of treatment. After 12 months of treatment, results confirmed the durability of the effect. On average, as UFC levels were reduced, clinical manifestations of Cushing's disease improved including reduction of blood pressure, total cholesterol, weight and body mass index[4].

The most frequently reported adverse events (AE) (>10%) by investigators for pasireotide were diarrhea, nausea, hyperglycemia, cholelithiasis, abdominal pain, diabetes mellitus, injection site reactions, fatigue and increased glycosylated hemoglobin (HbA1c), with most events being Grade 1-2. The tolerability profile of pasireotide was similar to that of other somatostatin analogs with the exception of the greater degree of hyperglycemia[4].

About Cushing's disease

Cushing's syndrome is an endocrine disorder caused by excessive cortisol, a vital hormone that regulates metabolism, maintains cardiovascular function and helps the body respond to stress[2]. Cushing's disease is a form of Cushing's syndrome, in which excess cortisol production is triggered by an adrenocorticotropic hormone (ACTH)-secreting pituitary adenoma[1]. The first-line and most common treatment approach for Cushing's disease is surgical removal of the tumor[2].

Cushing's disease is a rare but serious disease that affects approximately one to two patients per million per year[7]. It most commonly affects women from 20 to 50 years old[2],[5]. Cushing's disease may present with weight gain, central obesity, moon face, severe fatigue and weakness, striae (purple stretch marks), buffalo hump, depression and anxiety[1],[5].

About pasireotide

Pasireotide, an investigational multireceptor targeting somatostatin analog (SSA), binds with high affinity to four of the five somatostatin receptor subtypes (sst 1, 2, 3 and 5)[1].

For the treatment of Cushing's disease, pasireotide has been studied as a twice-daily subcutaneous (sc) injection and is currently being evaluated as a long-acting release (LAR), once-monthly intramuscular (IM) injection as part of a global Phase III program. Pasireotide LAR is also being studied in three large-scale, global Phase III clinical trial programs: two in patients with acromegaly and one in patients with metastatic carcinoid tumors whose disease-related symptoms are inadequately controlled by somatostatin analogs.

Information about Novartis clinical trials for pasireotide can be obtained by healthcare professionals at www.pasporttrials.com .

Important Safety Information about pasireotide

Pasireotide is contraindicated in patients with hypersensitivity to pasireotide or to any of the excipients and in patients with severe liver impairment. Hyperglycemia is commonly reported as an adverse event and elevated glucose was the most frequently reported Grade 3 laboratory abnormality (23.2% of patients) in the Phase III study in Cushing's disease patients. Glycemic status should be assessed prior to starting treatment with pasireotide. Patients need to be monitored for hyperglycemia; if hyperglycemia develops, the initiation or adjustment of antidiabetic treatment is recommended.

Mild transient elevations in AST (aminotransferases) are commonly observed in patients treated with pasireotide. Rare cases of concurrent elevations in ALT (alanine aminotransferase) greater than 3 times the upper limit of normal (ULN) and bilirubin greater than 2 times ULN have also been observed. Patients need to be monitored closely for liver function for the first 3 months and thereafter as clinically indicated. Therapy should be discontinued if the patient develops jaundice, other clinical signs of significant liver dysfunctions, sustained AST or ALT increase 5 times ULN or greater, or if ALT or AST increase 3 times ULN with concurrent bilirubin elevation greater than 2 times ULN.

Patients with cardiac disease and/or risk factors for bradycardia need to be closely monitored. Caution is to be exercised in patients who have or may develop QT prolongation. Hypokalemia or hypomagnesemia must be corrected prior to initiating therapy and monitored thereafter.

Treatment with pasireotide leads to rapid suppression of ACTH (adrenocorticotropic hormone) secretion in Cushing's disease patients. Patients need to be monitored for signs and symptoms of hypocortisolism. Temporary exogenous steroid (glucocorticoid) replacement therapy and/or dose reduction or interruption of pasireotide therapy may be necessary.

Pasireotide should not be used during pregnancy unless clearly necessary. Breast feeding should be discontinued during treatment with pasireotide.

Pasireotide may affect the way other medicines work, and other medicines can affect how pasireotide works. Caution is to be exercised with the concomitant use of drugs with low therapeutic index mainly metabolized by CYP3A4, bromocriptine, cyclosporine, anti-arrhythmic medicines or drugs that may lead to QT prolongation.

The most frequently reported adverse events (AE) (>10%) by investigators for pasireotide were diarrhea, nausea, hyperglycemia, cholelithiasis, abdominal pain, diabetes mellitus, injection site reactions, fatigue and increased glycosylated hemoglobin (HbA1c), with most events being Grade 1-2. The tolerability profile of pasireotide was similar to that of other somatostatin analogs with the exception of the greater degree of hyperglycemia.

 

The foregoing release contains forward-looking statements that can be identified by terminology such as "would," "will," "being evaluated," "being studied," or similar expressions, or by express or implied discussions regarding potential marketing approvals for pasireotide or regarding potential future revenues from pasireotide. You should not place undue reliance on these statements. Such forward-looking statements reflect the current views of management regarding future events, and involve known and unknown risks, uncertainties and other factors that may cause actual results with pasireotide to be materially different from any future results, performance or achievements expressed or implied by such statements. There can be no guarantee that pasireotide will be approved for sale in any market. Nor can there be any guarantee that pasireotide will achieve any particular levels of revenue in the future. In particular, management's expectations regarding pasireotide could be affected by, among other things, unexpected regulatory actions or delays or government regulation generally; unexpected clinical trial results, including unexpected new clinical data and unexpected additional analysis of existing clinical data; competition in general; government, industry and general public pricing pressures; unexpected manufacturing issues; the company's ability to obtain or maintain patent or other proprietary intellectual property protection; the impact that the foregoing factors could have on the values attributed to the Novartis Group's assets and liabilities as recorded in the Group's consolidated balance sheet, and other risks and factors referred to in Novartis AG's current Form 20-F on file with the US Securities and Exchange Commission. Should one or more of these risks or uncertainties materialize, or should underlying assumptions prove incorrect, actual results may vary materially from those anticipated, believed, estimated or expected. Novartis is providing the information in this press release as of this date and does not undertake any obligation to update any forward-looking statements contained in this press release as a result of new information, future events or otherwise.

 

About Novartis

Novartis provides innovative healthcare solutions that address the evolving needs of patients and societies. Headquartered in Basel, Switzerland, Novartis offers a diversified portfolio to best meet these needs: innovative medicines, eye care, cost-saving generic pharmaceuticals, preventive vaccines and diagnostic tools, over-the-counter and animal health products. Novartis is the only global company with leading positions in these areas. In 2010, the Group's continuing operations achieved net sales of USD 50.6 billion, while approximately USD 9.1 billion (USD 8.1 billion excluding impairment and amortization charges) was invested in R&D throughout the Group. Novartis Group companies employ approximately 121,000 full-time-equivalent associates and operate in more than 140 countries around the world. For more information, please visit http://www.novartis.com .

Novartis is on Twitter. Sign up to follow @Novartis at http://twitter.com/novartis .

References

[1] Pedroncelli A.M. Medical Treatment of Cushing's Disease: Somatostatin Analogues and Pasireotide. Neuroendocrinology. 2010;92 (suppl 1): 120-124.

 

[2] National Endocrine and Metabolic Diseases Information Service. National Institutes of Health. Cushing's Syndrome. Available at http://www.endocrine.niddk.nih.gov/pubs/cushings/Cushings_Syndrome_FS.pdf . Accessed December 2011.

 

[3] Boscaro M., et al. Treatment of Pituitary-Dependent Cushing's Disease with the Multireceptor Ligand Somatostatin Analog Pasireotide (SOM230): A Multicenter, Phase II Trial. J Clin Endocrinol Metab. 2009; 94(1):115-122.

 

[4] Colao, A. Pasireotide (SOM230) provides clinical benefit in patients with Cushing's disease: results from a large, 12-month, randomized-dose, double-blind, Phase III study. Abstract# OC1.7. European Neuroendocrine Association (ENEA) 14th Congress.

 

[5] Newell-Price J, et al., The Diagnosis and Differential Diagnosis of Cushing's Syndrome and Pseudo-Cushing's States. Endocrine Reviews. 19(5): 647-672. Available at http://edrv.endojournals.org/content/19/5/647.full.pdf +html Published 1998. Accessed December 2011.

 

[6] European Medicines Agency. Committee for Orphan Medicinal Products. Public Summary of Positive Opinion for Orphan Designation of Pasireotide for the treatment of Cushing's Disease. Available at http://www.emea.europa.eu/docs/en_GB/document_library/Orphan_designation/2009... . Accessed December 2011.

 

[7] Lindholm S., et al. Incidence and Late Prognosis of Cushing's Syndrome: A Population-Based Study. J Clin Endocrinol Metab. 2001; 86 (1): 117-123.

 

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Novartis Media Relations

 

 

Sunday, June 5, 2011

ENDO: New Agent Targets Cause of Cushing's Disease

By Kristina Fiore, Staff Writer, MedPage Today
Published: June 04, 2011
Reviewed by Dori F. Zaleznik, MD; Associate Clinical Professor of Medicine, Harvard Medical School, Boston.

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Action Points  
  • Note that this study was published as an abstract and presented at a conference. These data and conclusions should be considered to be preliminary until published in a peer-reviewed journal.

  • Explain that pasireotide, an investigational somatostatin analogue with affinity for the sst5 receptor, decreased cortisol levels in patients with refractory Cushing's disease.
  • Note that there is currently no approved medical therapy for Cushing's disease, but there was also no control group in this randomized, double-blind study of two different doses of pasireotide.
  • BOSTON -- A novel somatostatin analogue called pasireotide (SOM230) appears to reduce elevated cortisol levels in patients with Cushing's disease, researchers said here.

    On average, patients' levels of urinary-free cortisol fell by about 50% during a six-month, phase III trial, Beverly Biller, MD, of Massachusetts General Hospital in Boston, and colleagues reported at The Endocrine Society meeting.

    "Pasireotide may provide an option for pituitary-directed medical therapy targeting the underlying cause of the disease," Biller said.

    Currently, there are no medical therapies specifically indicated for Cushing's disease. Surgery is the main therapeutic option, followed by radiation, and a handful of medications are used off-label.

    The investigational agent pasireotide has a high affinity for the sst5 receptor, which is commonly expressed in corticotroph adenomas, a major cause of Cushing's disease.

    It was previously shown to be effective in a 15-day phase II study, Biller said.

    So to follow up, the researchers conducted a blinded, phase III trial, enrolling 162 patients with the disease at centers in 18 countries. Most had been refractory to prior treatments, including surgery, but some de novo patients were included if they weren't candidates for pituitary surgery.

    The cohort was randomized to two injections of either 600 µg or 900 µg of pasireotide per day.

    After three months, nonresponders were unblinded and their dose was upped by 300 µg, while all others continued on the same double-blind dose through six months. Doses were then titrated in all patients, as needed through one year.

    The vast majority of patients ( 77%) were female.

    The researchers found that urinary-free cortisol levels fell quickly, within the first one to two months after treatment, and significantly for patients on both doses of the drug.

    The median decrease in cortisol from baseline to two months was about 50% in both groups, and remained stable through the end of the study.

    At six months, 14.6% of those on the 600-µg dose and 26.3% of those on the 900-µg dose met the primary endpoint of having urinary-free cortisol levels at or below the upper limit of normal. Those percentages were similar after a year at 13.4% and 25%, respectively.

    In subgroup analyses, Biller and colleagues found that patients with lower baseline levels of cortisol had greater normalization of the hormone.

    Although the compound generally had a safety profile similar to that of other somatostatin analogues -- largely gastrointestinal side effects -- 73% of patients had a hyperglycemic event. Biller said fasting plasma glucose and HbA1c levels rose in the patients soon after starting on the drug, and returned to normal once the drug was stopped.

    During her presentation, Biller said that among the 67 normoglycemic patients at baseline, 43% became pre-diabetic and 34% became diabetic during treatment.

    This finding, she said, led to additional investigation into the drug's mechanism, which revealed that the drug reduces incretin and insulin secretion, without affecting insulin sensitivity. The addition of a GLP-1 agonist appeared to mitigate the effects, she said.

    Some patients ( 8%) also experienced hypocortisolism, which was responsive to a dose reduction, the researchers said.

    Though 75% of patients completed six months of the trial, just under half (48%) completed the full year. Most (25%) said they discontinued treatment because of an unsatisfactory therapeutic effect while 17.3% left because of adverse events.

    Biller also noted that there were simultaneous reductions in blood pressure, weight, and LDL cholesterol, as well as reported improvements in quality of life.

    The study was limited because it lacked a control group, but researchers at the meeting were largely pleased with the results.

    "This is a good beginning," said George Chrousos, MD, of Athens University in Greece, who moderated the session at which the study was presented. "Other [off-label pharmacologic] options don't treat the actual cause like this does. They just alleviate the symptoms."

    Chrousos said those other treatments are directed to the adrenal system while pasireotide targets tumors of the pituitary gland, the source of the problem.

    "It's an advance but it's not the final step" in treating Cushing's disease with medical therapy, he said.

    The study was supported by Novartis.

    The researchers reported relationships with Novartis, Ipsen, Otsuka, Pfizer, and Corcept.



    Primary source: The Endocrine Society Meeting

    Source reference:
    Colao A, et al "Pasireotide (SOM230) demonstrates efficacy in patients with Cushing disease: Results from a large, randomized-dose, double-blind phase III study" ENDO 2011. Abstract OR09-6.

    Monday, April 4, 2011

    Cushing's syndrome - Clinical trials

    Information provided by WHO International Clinical Trials Registry The clinical trials below are relevant to Cushing's syndrome.

    Title Recruitment status Location
    Prospective, Open-Label, Multicenter, International Study of Mifepristone for Symptomatic Treatment of Cushing's Syndrome Caused by Ectopic Adrenal Corticotrophin Hormone (ACTH) Secretion Recruiting United Kingdom
    Glucocorticoid Receptor Antagonism in Subclinical Cushings Not recruiting United Kingdom
    Adrenal Tumors - Pathogenesis and Therapy Recruiting Germany
    Protein turnover and energy expenditure in normal subjects, growth hormone deficiency, acromegaly and Cushing's syndrome Recruiting Australia
    Insulin Sensitivity and Substrate Metabolism in Patients With Cushing's Syndrome Recruiting Denmark
    Study of Depression, Peptides, and Steroids in Cushing's Syndrome Recruiting United States
    Stepwise medical treatment of Cushing's disease Recruiting The Netherlands
    Prospective, Open-Label, Multicenter, International Study of Mifepristone for Symptomatic Treatment of Cushing's Syndrome Caused by Ectopic Adrenal Corticotrophin Hormone (ACTH) Secretion Recruiting France
    Prospective, Open-Label, Multicenter, International Study of Mifepristone for Symptomatic Treatment of Cushing's Syndrome Caused by Ectopic Adrenal Corticotrophin Hormone (ACTH) Secretion Recruiting Germany
    Prospective, Open-Label, Multicenter, International Study of Mifepristone for Symptomatic Treatment of Cushing's Syndrome Caused by Ectopic Adrenal Corticotrophin Hormone (ACTH) Secretion Recruiting Italy
    Title Recruitment status Location
    Prospective, Open-Label, Multicenter, International Study of Mifepristone for Symptomatic Treatment of Cushing's Syndrome Caused by Ectopic Adrenal Corticotrophin Hormone (ACTH) Secretion Recruiting Netherlands
    Prospective, Open-Label, Multicenter, International Study of Mifepristone for Symptomatic Treatment of Cushing's Syndrome Caused by Ectopic Adrenal Corticotrophin Hormone (ACTH) Secretion Recruiting United States
    Defining the Genetic Basis for the Development of Primary Pigmented Nodular Adrenocortical Disease (PPNAD) and the Carney Complex Recruiting United States
    An Investigation of Pituitary Tumors and Related Hypothalmic Disorders Recruiting United States
    New Imaging Techniques in the Evaluation of Patients With Ectopic Cushing Syndrome Recruiting United States
    A Study to Assess SOM230 in Patients With Pituitary Cushing's Disease Not recruiting United States
    Long Term Post Operative Follow-Up of Cushing Syndrome Not recruiting United States
    A Study to Confirm Recurrent or Persistent Cushing's Syndrome in Patients With Signs or Symptoms of Hypercortisolemia Not recruiting United States
    Adrenalectomy Versus Follow-up in Patients With Subclinical Cushings Syndrome Not recruiting Sweden
    Hippocampal Complex Volume and Memory Dysfunction in Cushing's Syndrome Not recruiting United States
    Title Recruitment status Location
    Study of Hypercortisolism in Cushing's Syndrome and Stress-Induced Pseudo-Cushing's Syndrome Not recruiting United States
    Study of Cushing's Syndrome Not Related to ACTH Production Not recruiting United States
    Management of subclinical Cushing's syndrome in adrenal incidentalomas Not recruiting Italy
    An Extension Study of CORLUX in the Treatment of Endogenous Cushing's Syndrome Not recruiting United States
    Diagnostic Performance of Screening Tests for Cushing's Syndrome Not recruiting United States
    Cognition, Steroids, and Imaging in Cushings Disease Not recruiting United States
    A Study of the Efficacy and Safety of CORLUX in the Treatment of Endogenous Cushing's Syndrome Not recruiting United States
    Preclinical Study Towards an Immunotherapy in Adrenocortical Carcinoma Not recruiting Germany
    Dose Response Relationship for Single Doses of Corticotropin Releasing Hormone (CRH) in Normal Volunteers and in Patients With Adrenal Insufficiency Not recruiting United States
    Jugular Vein Sampling for Hormone Levels for the Diagnosis of Cushing Syndrome Not recruiting United States

    Sunday, January 23, 2011

    Updated NIH Clinical Trials of interest to Cushing's patients

    Saturday, December 12, 2009

    Novartis seeks to expand cancer drug portfolio

    By Alaric DeArment

    BASEL, Switzerland (Dec. 11) Novartis hopes to maintain what it calls its leading global position in cancer treatments with a wave of regulatory submissions in the coming year, the Swiss drug maker announced at a recent investors meeting.

    By the end of the 2009, the company plans to file regulatory approval applications seeking to expand the use of Tasigna (nilotinib) and Zometa (zoledronic acid) as treatments for various cancers and make as many as five other regulatory submissions in 2010 for Afinitor (everolimus) and drugs in clinical trials.

    “We have a productive and innovative pipeline that holds promise for many patients,” Novartis Pharmaceuticals Division CEO Joe Jimenez said. “The benefits of our sustained R&D investments are reflected in the nearly 30 major regulatory approvals achieved so far in 2009 in the U.S., Europe, Japan and China. A further 27 projects are currently in late-stage clinical trials, while eight more projects are awaiting regulatory decisions.”

    Drugs in clinical development include SOM230 (pasireotide), for which Novartis will seek approval in 2010 as a treatment for Cushing’s disease, carcinoid tumors and acromegaly, and LBH589 (panobinostat), for which the company will seek approval that same year as a Hodgkins lymphoma treatment.

    From http://drugstorenews.com/story.aspx?id=125727&menuid=787

    Saturday, June 20, 2009

    The difficulties of Cushing’s syndrome

    (An Oldie but Goodie!)

    Diagnosing and treating Cushing’s syndrome is sometimes just as difficult as it was 70 years ago.


    For as long as it has been described, Cushing’s syndrome has presented physicians with a problem. Harvey Cushing first described it in 1932, and the diagnosis, differential diagnosis and treatment of Cushing’s have remained a major challenge for endocrinologists ever since.


    Though uncommon, it is difficult to consider Cushing’s syndrome a rare occurrence. New research has shown Cushing’s syndrome to have a substantially higher prevalence than previously thought. Unexpected endogenous hypercortisolism may occur in 0.5% to 1% of patients with hypertension, 2% to 3% with poorly controlled diabetes, 6% to 9% with incidental adrenal masses and 11% with osteoporosis and vertebral fractures.


    “We are gaining an appreciation that Cushing’s is more common than it was once believed to be,” said Mary Ruppe, MD, endocrinologist at the University of Texas Health Science Center at Houston, and program committee chair of the Women in Endocrinology organization. “This fact points to the need for data regarding the value of the different diagnostic approaches and for data regarding treatment/outcomes in populations with Cushing’s.”


    As most of the characteristics of Cushing’s are common in the general population, including obesity, depression and hypertension, it is extremely difficult for endocrinologists to decide on who should be screened for the disorder. A recent clinical review by Hershel Raff, PhD, and James W. Findling, MD, noted that as the number of patients in these high-risk groups continues to increase, the need for a sensitive and specific diagnostic test for Cushing’s syndrome has become paramount.


    The three most commonly performed diagnostic studies for Cushing’s syndrome — urine-free cortisol, low-dose dexamethasone suppression test and the nocturnal salivary cortisol — are also not without hurdles. All three have been shown to produce false positives and false negatives.

    Approximately 80% of patients with Cushing’s syndrome have an adrenocorticotropic-secreting neoplasm from a pituitary tumor (Cushing’s disease) or a nonpituitary neoplasm, and the treatment of Cushing’s disease remains challenging for both endocrinologists and neurosurgeons as well. Transsphenoidal surgery is currently the standard treatment of choice in patients, but achieving surgical remission has been difficult as well.


    “Cushing’s syndrome is a very rare but important diagnosis for the patient and endocrinologist. Confirming the diagnosis may be challenging, and before embarking on a costly set of tests, the endocrinologist should be reasonably assured that the patient indeed requires diagnostic exclusion by rigorous screening methods,” said Shlomo Melmed, MD, senior vice president of Academic Affairs at Cedars Sinai Medical Center, Los Angeles, and an Endocrine Today editorial board member.


    With more than 7.5 decades of research since Dr. Cushing’s discovery, what are the best methods of diagnosis and treatment for Cushing’s syndrome? Endocrine Today talked with leading researchers in the field to uncover the current trends in Cushing’s syndrome treatment.


    Screening process


    Laurence Katznelson, MD, associate professor of medicine and neurosurgery at Stanford University, and medical director of the pituitary program at Stanford Hospital and Clinics, explained to Endocrine Today the difficulty of deciding who should be screened for Cushing’s syndrome. For instance, although the syndrome is associated with multiple comorbidities, including obesity, hypertension and depression, endocrinologists should be prepared to delve a little deeper into the symptoms to see if they warrant a screening test.


    “The presence of Cushing’s syndrome should be considered if these medical conditions are present, though diagnostic testing should be performed only in subjects who have signs favoring Cushing’s, such as demonstration of objective proximal weakness, spontaneous ecchymoses and violaceous striae,” Katznelson said.


    “For example, central obesity with supraclavicular and dorsicervical fat pads would favor a diagnosis of Cushing’s syndrome, in contrast to the presence of generalized obesity,” he said.


    Raff and Findling noted in a recent clinical review that endogenous cortisol excess also leads to fairly specific catabolic effects — including the thinning of the skin with easy bruising, abdominal striae, poor wound healing, immune suppression, rib fractures, hirsutism in women, acne and muscle wasting leading to proximal muscle weakness.


    “There is no clear guideline,” said Roberto Salvatori, MD, associate professor of medicine in the division of endocrinology at Johns Hopkins University School of Medicine. “You need to keep your mind open.”


    “Sometimes Cushing’s is obvious. Sometimes, when it is mild, it may not be diagnosed for many years. One must screen a lot of patients to find one with Cushing’s. However, anytime a physician thinks about the possibility of a patient having the disease, work-up should be initiated,” he said.


    Testing options


    Opinions varied when Endocrine Today asked researchers which of the three tests for Cushing’s syndrome was most reliable.


    “No test is 100% sensitive or specific,” Salvatori said. “I always use two, sometimes three, screening tests.” However, Salvatori noted he feels the night-time salivary cortisol test is the most reliable and easy to obtain.


    Raff and Findling described the measurement of free cortisol in a 24-hour urine collection as being long considered the gold standard for the diagnosis of endogenous hypercortisolism. The test relies on the concept that as daily production of cortisol is increased, the free cortisol filtered and not reabsorbed or metabolized in the kidneys will be increased. They noted that current research has shown that many patients with mild Cushing’s syndrome do not have elevations of urine-free cortisol, “making it a poor screening test for this condition.”


    The low-dose dexamethasone suppression test relies on the concept that the correct dose of dexamethasone will suppress ACTH, and cortisol will release in normal patients while patients with corticotroph adenomas will not suppress below a specified cut off. Raff and Findling noted that because of the significant variability of the biological behavior of corticotroph adenomas, research has shown that neither the overnight 1-mg dexamethasone suppression test nor the two-day low-dose dexamethasone suppression test appears to be reliable using the standard cutoffs for serum cortisol.


    According to Raff and Findling, there is no diagnostic test used in the evaluation of Cushing’s syndrome that performs better than the late night/midnight salivary cortisol method. The concept is based on the fact that patients with mild Cushing’s syndrome fail to decrease cortisol secretion to its nadir at night. However, they still acknowledged that many factors, such as stress, sleep disturbances and psycho-neuroendocrine may falsely elevate nocturnal cortisol secretion.

    “Because each of these tests has associated false positives and negatives, a combination of these tests is often necessary for a valid diagnosis,” Katznelson said. “In the end, these tests need to be considered in the context of a history and physical examination that favors this diagnosis.”


    Lynette Nieman, MD, associate director of the Intramural Endocrinology Training Program at the NIH, agreed. “Of the three recommended tests, each is useful in certain conditions,” she said. “I try to stress that the testing should be individualized since some tests are likely to be falsely positive in some situations, eg, a woman on birth control pills is likely to have a high corticosteriod-binding globulin, which might elevate serum cortisol.”


    Ruppe said the choice between the tests should be based on patient characteristics that will allow for adequate collection of each sample. “For instance, the use of a late-night salivary cortisol measurement would be suboptimal in an individual who works the third shift and may not have an intact circadian rhythm, or the choice of a 24-hour urinary free cortisol may be suboptimal in an individual with urinary frequency or urinary incontinence.”


    Ruppe also noted that one possible improvement would be to improve standardization of the assays across different labs. “Since there is no standardization, the quality of the performance of the assay can vary across different facilities and centers,” she said.


    Petrosol sinus sampling


    Another controversial topic in the field is whether or not the inferior petrosol sinus should be sampled for an ACTH gradient to distinguish between Cushing’s disease and occult ectopic ACTH syndrome.


    The invasive procedure has proven to be relatively safe when performed by experienced radiologists, but not all medical centers have the capability.
    A woman with mild hypercortisolism, a normal or slightly elevated plasma ACTH and normokalemia has an approximately 95% likelihood of having Cushing’s disease before any differential diagnostic testing is performed, according to Raff and Findling. In contrast, a male patient with prodigious hypercortisolism of rapid onset, hypokalemia and marked elevations of plasma ACTH may be more likely to have an occult ectopic ACTH-secreting tumor.


    About half of patients with ACTH-secreting microadenomas are estimated to have a normal pituitary MRI. In such situations, it is important to perform further testing, particularly an inferior petrosal sinus catheterization, to discern the presence of an ectopic ACTH-producing lesion, according to Katznelson.
    “Some people would say that every patient should have it because it is the one best test for the differential diagnosis of ACTH-dependent Cushing’s syndrome,” Nieman said. “However, patients in whom data strongly suggest Cushing’s disease might forego it.”


    “In a young woman with an MRI with a definitive adenoma and high-dose dexamethasone test showing less than 60% suppression, it is reasonable to proceed with surgery,” Salvatori said. “But even the International Prostate Symptom Score is not 100% sensitive or specific.” Raff said that he disagrees with the high-dose dexamethasone test.


    Transsphenoidal surgery


    Currently, transsphenoidal surgery is the primary treatment of Cushing’s disease associated with an ACTH-secreting pituitary tumor. According to recent studies, remission rates after transsphenoidal pituitary microsurgery range from 42% to 86%.


    Raff told Endocrine Today that the most important treatment recommendation that an endocrinologist makes to a patient with Cushing’s disease is referral to a neurosurgeon with extensive experience.


    “Referral to a neurosurgeon who is highly experienced in this procedure is critical,” Katznelson agreed. He noted that there have been studies demonstrating that both the degree of tumor bulk resection and rates of biochemical remission are increased for all types of pituitary tumors when the surgery is performed by a neurosurgeon with extensive experience in endonasal pituitary surgery.


    “In Cushing’s disease, this is especially true,” Katznelson said. “Because the tumors in this disorder are often small, if not microscopic, the surgical strategy may require dissection through the gland. In inexperienced hands, this may result in higher rates of hypopituitarism and lower rates of biochemical cure,” Katznelson said.


    “There is no doubt that the surgeon’s experience influences the success rate,” Nieman said.


    Constantine Stratakis, MD, with the National Institute of Child Health and Human Development, said he agreed, and stressed the importance of confirmation of diagnosis of Cushing’s syndrome prior to a referral to a neurosurgeon.


    “There is nothing worse than an inexperienced surgeon operating on a patient with Cushing’s or a surgeon operating on a patient who does not have a firm diagnosis of Cushing’s syndrome,” Stratakis said.


    “Surgery offers a reasonable chance for cure in the hands of an experienced neurosurgeon,” said Amir Hamrahian, MD, a staff physician at the Endocrinology Institute at the Cleveland Clinic. “We are currently involved in two studies looking at new medications for medical treatment of patients with Cushing’s syndrome. However, surgery is still the best initial approach for those not cured,” Hamrahian said.


    The future


    “Medications are the future for patients with inoperable, recurrent Cushing’s syndrome,” Stratakis said, referring to pasireotide (SOM230), a somatostatin analog.


    He was part of a study in 2006 examining the in vitro effects of SOM230 on cell proliferation in human corticotroph tumors. Researchers found SOM230 significantly suppressed cell proliferation and ACTH secretion in primary cultures of human corticotroph tumors. They concluded that SOM230 may have a role in the medical therapy of Cushing’s disease. Raff said he believes that clinical trials in patients with Cushing’s disease who used SOM230 were not particularly successful. Anne Klibanski, MD, director of the neuroendocrine clinical center at Massachusetts General Hospital and primary investigator of the study, commented that in vitro studies play a critical role in assessing novel targeted pituitary tumor therapies. It is only in rigorous clinical trials that the overall efficacy and risks of such therapies can be established, she suggested.


    “Microsurgical improvements will also be significant, but the major problem right now is the number of patients who are left untreated with recurrent disease,” Stratakis said. “For them, there are very few options other than irradiation, so innovative medical treatments with molecularly designed compounds or targeted to specific receptors and/or functions of the pituitary are the most important advances that I see coming in the near future,” Stratakis said.


    According to James Liu, MD, assistant professor of neurologic surgery at Northwestern University Feinberg School of Medicine in Evanston, Ill., the future appears bright in the battle against Cushing’s.


    “Technical advances in surgery including endoscopic pituitary surgery and pseudocapsular dissection can improve surgical outcomes,” Liu said.
    Katznelson said he hopes the future will bring improved diagnostic strategies important for detecting true Cushing’s syndrome in the presence of multiple comorbidities. He noted that the ongoing research studies involving innovative medical therapeutic strategies that target the corticotroph adenoma itself, or block the effects of cortisol in the periphery, should bring new treatment options in the future.


    “These studies will hopefully lead to novel medical options for this syndrome,” Katznelson said. “There have been significant advances in surgery, particularly with the development of minimally invasive, endoscopic surgery that has resulted in both improved biochemical outcomes and patient tolerability.” – by Angelo Milone

    Discuss on the Message Boards

    From http://www.endocrinetoday.com/view.aspx?rid=33057

    Friday, May 8, 2009

    Pituitary-directed medical treatment of Cushing’s disease

    From http://www.expert-reviews.com/doi/abs/10.1586/eem.09.10

    Giorgio Arnaldi, Marina Cardinaletti, Laura Trementino, Giacomo Tirabassi and Marco Boscaro

    Author for correspondence

    The treatment of Cushing’s disease is very complex and represents a challenge for clinicians. Transphenoidal surgical excision of adrenocorticotropic hormone (ACTH)-secreting pituitary adenoma remains the treatment of choice but, unfortunately, the rate of cure at long-term follow-up is suboptimal and recurrences are high, even in the hands of skilled neurosurgeons. Other treatment options, such as bilateral adrenalectomy and pituitary radiotherapy, are currently in use but no treatment has proven fully satisfactory during the lengthy progress of this chronic and devastating disease. Nelson’s syndrome and hypopituitarism are of particular concern as affected patients need lifelong hormone-replacement therapy and have notably increased mortality. Although medical treatment represents a second-line treatment option in patients with Cushing’s disease, so far pharmacological therapy has been considered a transient and palliative treatment. Many drugs have been employed: they may act at the hypothalamic–pituitary level, decreasing ACTH secretion; at the adrenal level, inhibiting cortisol synthesis (steroidogenesis inhibitors); or at the peripheral level by competing with cortisol (glucocorticoid receptor antagonists). Recently, there has been renewed interest in the medical therapy of Cushing’s disease and pituitary-directed drugs include old compounds commercially available for other diseases, such as cabergoline, and new promising compounds, such as pasireotide (SOM230) or retinoic acid. This review focuses on the tumor-directed pharmacological approaches for the management of Cushing’s disease based on the recent identification of possible targets at a pituitary level.

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    Wednesday, January 7, 2009

    Treatment of Pituitary-Dependent Cushing’s Disease with the Multireceptor Ligand Somatostatin Analog Pasireotide (SOM230): A Multicenter, Phase II Trial

    From
    http://jcem.endojournals.org/cgi/content/abstract/94/1/115

    Journal of Clinical Endocrinology & Metabolism, doi:10.1210/jc.2008-1008
    The Journal of Clinical Endocrinology & Metabolism Vol. 94, No. 1 115-122
    Copyright © 2009 by The Endocrine Society
    Treatment of Pituitary-Dependent Cushing’s Disease with the Multireceptor Ligand Somatostatin Analog Pasireotide (SOM230): A Multicenter, Phase II Trial
    M. Boscaro, W. H. Ludlam, B. Atkinson, J. E. Glusman, S. Petersenn, M. Reincke, P. Snyder, A. Tabarin, B. M. K. Biller, J. Findling, S. Melmed, C. H. Darby, K. Hu, Y. Wang, P. U. Freda, A. B. Grossman, L. A. Frohman and J. Bertherat

    Division of Endocrinology (M.B.), Polytechnic University of Marche, 60126 Ancona, Italy; Seattle Pituitary Center (W.H.L.), Swedish Neurosciences Institute, Seattle, Washington 98122; Regional Centre for Endocrinology and Diabetes (B.A.), Royal Victoria Hospital, Belfast BT12 6BA, United Kingdom; Oncology Clinical Development (J.E.G., C.H.D., K.H., Y.W.), Novartis Pharmaceuticals Corporation, East Hanover, New Jersey 07932; Division of Endocrinology (S.P.), Medical Center, University of Essen, 45122 Essen, Germany; Medizinische Klinik Innenstadt Klinikum der Universität München (M.R.), 80336 München, Germany; University of Pennsylvania (P.S.), Philadelphia, Pennsylvania 19104; Service d’Endocrinologie (A.T.), Centre Hospitalier Universitaire Bordeaux, Haut Lévêque, 33075 Pessac, France; Massachusetts General Hospital (B.M.K.B.), Boston, Massachusetts 02114; Midwest Endocrinology Associates (J.F.), Milwaukee, Wisconsin 53215; Cedars-Sinai Pituitary Center (S.M.), Los Angeles, California 90048; Department of Medicine (P.U.F.), Division of Endocrinology, Columbia University, New York, New York 10027; Department of Endocrinology (A.B.G.), St. Bartholomew’s Hospital, EC1M 6BQ London, United Kingdom; Department of Medicine (L.A.F.), Section of Endocrinology, Diabetes, and Metabolism, University of Illinois at Chicago, Chicago, Illinois 60637; and Center for Rare Adrenal Diseases (J.B.), Department of Endocrinology, Institut National de la Santé et de la Recherche Médicale Unit 567, Paris-Descartes University, Cochin Hospital, 75014 Paris, France

    Address all correspondence and requests for reprints to: Jérôme Bertherat, Institut National de la Santé et de la Recherche Médicale Unit 567, Institut Cochin, Paris-Descartes University, Assistance Publique-Hôpitaux de Paris, Center for Rare Adrenal Disease, Department of Endocrinology, Hôpital Cochin, 27 rue du Faubourg Saint-Jacques, 75014 Paris, France. E-mail: jerome.bertherat@cch.aphp.fr.

    Context: There is currently no medical therapy for Cushing’s disease that targets the pituitary adenoma. Availability of such a medical therapy would be a valuable therapeutic option for the management of this disorder.

    Objective: Our objective was to evaluate the short-term efficacy of the novel multireceptor ligand somatostatin analog pasireotide in patients with de novo, persistent, or recurrent Cushing’s disease.

    Design: We conducted a phase II, proof-of-concept, open-label, single-arm, 15-d multicenter study.

    Patients: Thirty-nine patients with either de novo Cushing’s disease who were candidates for pituitary surgery or with persistent or recurrent Cushing’s disease after surgery without having received prior pituitary irradiation.

    Intervention: Patients self-administered sc pasireotide 600 µg twice daily for 15 d.

    Main Outcome Measure: Normalization of urinary free cortisol (UFC) levels after 15 d treatment was the main outcome measure.

    Results: Of the 29 patients in the primary efficacy analysis, 22 (76%) showed a reduction in UFC levels, of whom five (17%) had normal UFC levels (responders), after 15 d of treatment with pasireotide. Serum cortisol levels and plasma ACTH levels were also reduced. Steady-state plasma concentrations of pasireotide were achieved within 5 d of treatment. Responders appeared to have higher pasireotide exposure than nonresponders.

    Conclusions: Pasireotide produced a decrease in UFC levels in 76% of patients with Cushing’s disease during the treatment period of 15 d, with direct effects on ACTH release. These results suggest that pasireotide holds promise as an effective medical treatment for this disorder.

    Tuesday, January 6, 2009

    Cushing's Clinical Trials

    California

    Various Cities : Research Center New!
    Cushing's Disease Study CSOM230B2305

    Colorado

    Various Cities : Research Center New!
    Cushing's Disease Study CSOM230B2305

    Florida

    Various Cities : Research Center New!
    Cushing's Disease Study CSOM230B2305

    Illinois

    Various Cities : Research Center New!
    Cushing's Disease Study CSOM230B2305

    Massachusetts

    Various Cities : Research Center New!
    Cushing's Disease Study CSOM230B2305

    New York

    Various Cities : Research Center New!
    Cushing's Disease Study CSOM230B2305

    Ohio

    Various Cities : Research Center New!
    Cushing's Disease Study CSOM230B2305

    Oregon

    Various Cities : Research Center New!
    Cushing's Disease Study CSOM230B2305

    Pennsylvania

    Various Cities : Research Center New!
    Cushing's Disease Study CSOM230B2305

    Texas

    Various Cities : Research Center New!
    Cushing's Disease Study CSOM230B2305

    Washington

    Various Cities : Research Center New!
    Cushing's Disease Study CSOM230B2305

    Monday, November 3, 2008

    Treatment of pituitary dependent Cushing's disease with the multi-receptor ligand somatostatin analog pasireotide (SOM230): A multicenter, phase II trial.

    From http://www.unboundmedicine.com/medline/ebm/record/18957506/full_citation/Treatment_of_pituitary_dependent_Cushing%27s_disease_with_the_multi_receptor_ligand_somatostatin_analog_pasireotide__SOM230_:_A_multicenter_phase_II_trial

    Treatment of pituitary dependent Cushing's disease with the multi-receptor ligand somatostatin analog pasireotide (SOM230): A multicenter, phase II trial.


    Author(s)    Boscaro M, Ludlam WH, Atkinson B, Glusman JE, Petersenn S, Reincke M, Snyder P, Tabarin A, Biller BM, Findling J, Melmed S, Darby CH, Hu K, Wang Y, Freda PU, Grossman AB, Frohman LA, Bertherat J


    Institution    Department of Clinical Endocrinology (M.B.), University of Ancona, Italy; Seattle Pituitary Center (W.H.L.), Swedish Neurosciences Institute, Seattle, Washington, USA; Regional Centre for Endocrinology and Diabetes (B.A.), Royal Victoria Hospital, Belfast, UK; Oncology Clinical Development (J.E.G., C.H.D., K.H., Y.W.), Novartis Pharmaceuticals Corporation, East Hanover, New Jersey, USA; Division of Endocrinology (S.P.), Medical Center, University of Essen, Germany; Medizinische Klinik Innenstadt Klinikum der Universität München (M.R.), München, Germany; University of Pennsylvania (P.S.), Philadelphia, USA; Service d'Endocrinologie (A.T.), CHU Bordeaux, Haut Lévêque, Pessac Cedex, France; Massachusetts General Hospital (B.M.K.B.), Boston, USA; Midwest Endocrinology Associates (J.F.), Milwaukee, Wisconsin, USA; Cedars-Sinai Pituitary Center (S.M.), Los Angeles, California, USA; Department of Medicine (P.U.F.), Division of Endocrinology, Columbia University, New York; Department of Endocrinology (A.B.G.), St Bartholomew's Hospital, London, UK; Department of Medicine (L.A.F.), Section of Endocrinology, Diabetes and Metabolism, University of Illinois at Chicago, Chicago, Illinois, USA; Center for Rare Adrenal Diseases (J.B.), Department of Endocrinology, INSERM U567, Paris-Descartes University, Cochin Hospital, Paris, France.


    Source    J Clin Endocrinol Metab 2008 Oct 28.


    Abstract    Context: There is currently no medical therapy for Cushing's disease that targets the pituitary adenoma. Availability of such a medical therapy would be a valuable therapeutic option for the management of this disorder.


    Objective: To evaluate the short-term efficacy of the novel multi-receptor ligand somatostatin analog pasireotide in patients with de novo, persistent or recurrent Cushing's disease.


    Design: Phase II, proof-of-concept, open-label, single-arm, 15-day multicenter.


    Patients: Thirty-nine patients with either de novo Cushing's disease who were candidates for pituitary surgery or with persistent or recurrent Cushing's disease post surgery without having received prior pituitary irradiation. Intervention: Patients self-administered subcutaneous pasireotide 600 microg twice daily for 15 days. Main Outcome Measure: Normalization of UFC levels after 15 days of treatment.


    Results: Of the 29 patients in the primary efficacy analysis, 22 (76%) showed a reduction in UFC levels, of whom 5 (17%) had normal UFC levels (responders), after 15 days of treatment with pasireotide. Serum cortisol levels and plasma ACTH levels were also reduced. Steady-state plasma concentrations of pasireotide were achieved within 5 days of treatment. Responders appeared to have higher pasireotide exposure than non-responders.
    Conclusions: Pasireotide produced a decrease in UFC levels in 76% of patients with Cushing's disease during the treatment period of 15 days, with direct effects on adrenocorticotropin release. These results suggest that pasireotide holds promise as an effective medical treatment for this disorder.


    Language    ENG
    Pub Type(s)    JOURNAL ARTICLE
    PubMed ID    18957506