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5α-reductase type 1 modulates insulin sensitivity in men
Rita Upreti1, Katherine A Hughes, Dawn E W Livingstone
1University/British Heart Foundation Centre for Cardiovascular Science (R.U., K.A.H., D.E.W.L., D.P.M., I.M., B.R.W., R.A.) and Clinical Research Imaging Centre (C.D.G.), University of Edinburgh, Queen's Medical Research Institute, Edinburgh EH16 4TJ, United Kingdom; and Radiology (F.C.M.) and Urology (L.H.S.) Departments, National Health Service Lothian University Hospitals Division, Western General Hospital, Edinburgh EH4 2XU, United Kingdom.
Dual 5α-reductase inhibition with dutasteride, unlike finasteride, impairs insulin sensitivity and increases body fat in men. This suggests dutasteride may cause metabolic dysfunction by affecting peripheral tissues.
Area of Science:
- Endocrinology
- Metabolic Science
- Pharmacology
Background:
- 5α-Reductase (5αR) enzymes (types 1 and 2) are crucial for steroid A-ring reduction.
- Inhibitors like finasteride and dutasteride are used for benign prostatic hyperplasia, with dutasteride inhibiting both 5αR1 and 5αR2.
- Rodent studies indicate that 5αR1 deficiency is linked to fatty liver disease.
Purpose of the Study:
- To investigate the hypothesis that 5αR1 inhibition leads to metabolic dysfunction in humans.
- To compare the metabolic effects of dual 5αR inhibition (dutasteride) versus 5αR2 inhibition (finasteride).
Main Methods:
- A 3-month, double-blind, randomized controlled trial involving 46 men aged 20-85.
- Participants received oral dutasteride (0.5 mg/day), finasteride (5 mg/day), or tamsulosin (0.4 mg/day) as a control.
- Insulin sensitivity was assessed using a hyperinsulinemic-euglycemic clamp, measuring glucose disposal and nonesterified fatty acid suppression.
Main Results:
- Dutasteride and finasteride similarly altered steroid profiles, reducing androgen/glucocorticoid metabolites and dihydrotestosterone (DHT).
- Only dutasteride significantly reduced insulin-stimulated glucose disposal and suppressed nonesterified fatty acids, indicating impaired insulin sensitivity in peripheral tissues.
- Dutasteride treatment led to a 1.6% increase in body fat, while finasteride and tamsulosin did not.
Conclusions:
- Dual 5αR inhibition, as with dutasteride, impacts insulin sensitivity in human peripheral tissues, not the liver.
- These findings suggest potential metabolic side effects for patients taking dutasteride for conditions like prostatic disease.
- Targeting 5αR1 may be a key factor in dutasteride's observed metabolic effects.
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