Characterization of persistent and recurrent Cushing’s disease

Pituitary, 09/25/2013  Review Article

Sundaram NK et al. – A case of possible recurrent Cushing’s disease (CD) is presented and data on current definitions of CD remission, persistence, and recurrence are reviewed.

The number and degree of abnormal test results needed to define recurrence, and the determination of which biochemical test has more significance when there are discrepancies between markers is inconsistent among studies. Further inquiry is warranted to examine if patients in apparent CD remission who have subtle hypothalamic pituitary adrenal (HPA) axis abnormalities represent distinctive remission subtypes versus mild or early recurrence.

Additional investigation could also explore the degree to which these HPA axis abnormalities, such as alterations in cortisol circadian rhythm or partial resistance to dexamethasone, are associated with persistence of CD morbidities, including neuropsychiatric impairments, alterations in body composition, and cardiovascular risk.

From MDLinx

Researchers at Department of Endocrinology and Diabetes Release New Data on Cushing Syndrome

By a News Reporter-Staff News Editor at Biotech Week — Research findings on Adrenal Gland Diseases are discussed in a new report. According to news reporting originating from Melbourne, Australia, by NewsRx correspondents, research stated, “Stereotactic radiation therapy has emerged as an alternative to conventional radiotherapy for treatment of Cushing disease. The aim of this study was to investigate the efficacy and safety of this treatment.”

Our news editors obtained a quote from the research from the Department of Endocrinology and Diabetes, “Records of patients with Cushing disease treated with stereotactic radiation were reviewed. Seventeen patients underwent stereotactic radiosurgery.”

According to the news editors, the research concluded: “Ten achieved remission after a mean of 23 (95% confidence interval, 15-31) months, and two developed hormone deficiencies.”

For more information on this research see: Stereotactic radiosurgery for treatment of Cushing disease: an Australian experience. Internal Medicine Journal, 2012;42(10):1153-6. (Wiley-Blackwell – www.wiley.com/; Internal Medicine Journal – onlinelibrary.wiley.com/journal/10.1111/(ISSN)1445-5994)

The news editors report that additional information may be obtained by contacting L. Wein, Dept. of Endocrinology and Diabetes, Alfred Hospital, Melbourne, Victoria, Australia. Additional authors for this research include M. Dally and L.A Bach (see also Adrenal Gland Diseases).

Keywords for this news article include: Melbourne, Treatment, Radiotherapy, Radiation Therapy, Cushing’s Syndrome, Adrenal Gland Diseases, Australia and New Zealand.

Our reports deliver fact-based news of research and discoveries from around the world. Copyright 2013, NewsRx LLC

From http://www.hispanicbusiness.com/2013/9/18/researchers_at_department_of_endocrinology_and.htm

Mifepristone in children with refractory Cushing’s disease

Introduction

This study is being done to examine the effects of a medication called mifepristone in children with Cushing’s disease. This medication has been approved by the Food and Drug Administration (FDA) for use in adult patients with Cushing’s syndrome. It is not FDA approved for use in children.

The study will investigate how children’s bodies absorb and process mifepristone, how it works in children and what effect it has on the use of sugar in the body, on the child’s weight and on growth hormone. An important part of the study is to determine the proper dosing and to evaluate the side effects of mifepristone in children.

Children 6 to 17 years old will be enrolled in the study if they have had surgery for Cushing’s disease and currently have elevated cortisol levels.

To get started, please click here.

NIH: An Open-Label Study of The Safety, Pharmacokinetics and Pharmacodynamics of Mifepristone in Children With Refractory Cushing’s Disease

This study is currently recruiting participants.

Summary

Number 13-CH-0170
Sponsoring Institute National Institute of Child Health and Human Development (NICHD)
Recruitment Detail Type: Participants currently recruited/enrolled
Gender: Male & Female
Min Age: 6
Max Age: 17
Referral Letter Required No
Population Exclusion(s) None
Special Instructions Currently Not Provided
Keywords Child;
Cushing Syndrome;
Metabolism;
Mifepristone;
Pharmacokinetic-Pharmacodynamic
Recruitment Keyword(s) None
Condition(s) Cushing’s Syndrome;
Cushing Syndrome
Investigational Drug(s) Mifepristone
Investigational Device(s) None
Intervention(s) Drug: mifepristone
Supporting Site National Institute of Child Health and Human Development

Background:

– There are currently no approved therapies for children with Cushing’s disease who are not cured by surgery alone. A drug called mifepristone has been approved to treat adults with Cushing’s syndrome and elevated blood glucose caused by Cushing’s. The drug is marketed under the name Korlym(Registered Trademark). The study drug may have a different effect on a child’s body than an adult’s, so researchers want to know how much of the drug to give children and what effect it will have. They want to learn if mifepristone improves Cushing’s disease in children as it does in adults. They also want to know about the drug’s side effects in children.

Objectives:

– To study the effect of a medication called mifepristone in children with Cushing’s disease that has not been helped by pituitary surgery.

Eligibility:

– Children ages 6 to 17 with active Cushing’s disease following pituitary surgery and who have a body weight higher than expected for their height and age.

Design:

– Participants will be screened for up to 8 weeks with a physical exam, medical history, and medical tests including blood tests and X-rays.

– Participants will take tablets of the study drug each day for 12 weeks.

– Participants will stay at the clinic for 4 nights at the beginning of the study. They will have three 1-day visits during the study. They will stay at the clinic the last 3 days of the study.

– At these visits, participants will be given several tests. In one test, a small wire is inserted under the skin of the belly and a small monitor is attached taped to the belly. In another, the participant drinks a liquid and blood samples are taken.

– Follow-up visits will occur 4 weeks and 12 weeks after the study ends.

–Back to Top–

Eligibility

INCLUSION CRITERIAPatients who are eligible for enrollment must meet the following eligibility criteria:

– Males and females 6-17 years at informed consent

– Active Cushing’s disease as demonstrated by the following:

–24 hour Urinary Free Cortisol greater than the upper limit of normal for age on two urine collections during screening and

— midnight serum cortisol > 4.4 mcg/dL (mean of two determinations on a single day at 2330 and 2400 during screening)

– Previous trans-sphenoidal surgery (TSS) for ACTH secreting pituitary tumor at least 3 months prior to screening

– Increased body weight defined by BMI Z-score of 1.5 or above

– Able to provide consent/assent

– Able to swallow study drug tablets (not crushed or split)

– Willing to use non-hormonal method of contraception in patients of reproductive potential

– Primary health care provider in home location

EXCLUSION CRITERIA:

– Hypercortisolism not due to Cushing’s disease.

– Type 1 diabetes mellitus

– HbA1c geater than or equal to 9.5% at Screening

– Body weight < 25 kg

– Use of certain medications that are CYP3A substrates with narrow therapeutic ranges, such as simvastatin, lovastatin, cyclosporine, dihydroergotamine, ergotamine, fentanyl, pimozide, quinidine, sirolimus, and tacrolimus during the 4 weeks prior to starting study drug. Use of these medications is also prohibited until 2 weeks after end of dosing.

– Use of certain medications that are strong CYP3A inhibitors such as itraconazole, nefazodone, ritonavir, nelfinavir, indinavir, atazanavir, amprenavir, fosamprenavir, boceprevir, clarithromycin, conivaptan, lopinavir, mibefradil, posaconazole, saquinavir, telaprevir, telithromycin, and voriconazole during the 2 weeks prior to starting study drug.

Use of these medications is also prohibited until 2 weeks after end of dosing. Grapefruit and grapefruit juice are prohibited during this time frame.

– Use of certain medications that are strong inducers on CYP3A such as rifampin, rifabutin, rifapentin, phenobarbital, phenytoin, carbamazepine, St. John’s wort during the 2 weeks prior to starting study drug. Use of these medications is also prohibited until 2 weeks after end of dosing.

– Use of medications used to treat hypercortisolism from the duration indicated below prior to Day 1. Use of the medications is also prohibited until after the end of study 4 week follow up visit.

–steroidogenesis inhibitors such as ketoconazole, metyrapone: 4 weeks

–cabergoline, bromocriptine, somatostatin analogs such as octreotide, lanreotide, pasireotide long acting formulations: 8 weeks (immediate release formulations: 2 weeks)

–mitotane: 8 weeks

– Use of systemic glucocorticoid medications beginning 1 month prior to screening or anticipated use of these medications except for the treatment of adrenal insufficiency. Use of glucocorticoid medications is prohibited during the study until after the end of study 4 week study visit.

– Inflammatory, rheumatological, proliferative or other disorder(s) that would be anticipated to worsen with glucocorticoid blockade (e.g. inflammatory bowel disease, rheumatoid arthritis, psoriasis, etc.).

– Uncontrolled hypo- or hyperthyroidism.

– Uncorrected hypokalemia (< 3.5 mEq/L). The screening period may be used to correct hypokalemia prior to starting study drug. Use of potassium and/or mineralocorticoid antagonists is permitted during the study.

– QTc geater than or equal to 450 msec on Screening electrocardiogram

– Unexplained vaginal bleeding in females and/or any history of endometrial pathology.

– Positive pregnancy test in females.

From http://clinicalstudies.info.nih.gov/cgi/detail.cgi?A_2013-CH-0170.html

Enzyme linked to obesity

Researchers find that increased levels of an enzyme in fat cells lead to dangerous levels of abdominal obesity.

Previous studies have shown that the stress hormone cortisol can lead to an accumulation of fat round the abdomen. For instance, people with Cushing’s disease – where there’s excess cortisol in the blood – have too much abdominal fat. It’s bad for health to have fat in this area – it’s linked to diabetes and heart disease. That’s why it’s healthier to be a ‘pear shape’ rather than an ‘apple shape’. The distribution of fat in your body really does matter.

Researchers in Scotland and the US have now focussed upon an enzyme that produces cortisol to see what effect it has on abdominal fat. Working on mice genetically-modified to produce the enzyme – and therefore cortisol – in fat cells, they find that even a small increase in levels produces dramatic effects. The mice, compared with normal animals, gained fat in the abdominal area even on a low fat diet. They developed diabetes, high blood pressure, and also tended to eat more. It opens up the possibility of further studies on human obesity, and also perhaps could lead to therapies that block this enzyme and so reduce fat accumulation.

From http://www.tele-management.ca/2013/09/enzyme-linked-to-obesity/