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Disposition and metabolism of finasteride in dogs.

Finasteride (FIN) is a potent 5 alpha-reductase inhibitor that has shown clinical success in treating men with benign prostatic hyperplasia. In the study of biological effects and metabolism of FIN in animals, the dog serves as the primary modality. This study was conducted to determine the pharmacokinetics and fate of FIN after oral administration of single doses of [14C]FIN to dogs at 10 and 80 mg/kg (N = 2 and 3, respectively), and also after intravenous infusion at 5 mg/kg (N = 2). Plasma, urine, and feces were analyzed for total 14C content. Parent drug and metabolites in plasma and excreta were measured by HPLC/UV/radioassay and identified by NMR spectroscopy and MS, FIN was subject to extensive biotransformation before excretion. Structures were determined for the major metabolites in plasma, urine, and feces. The primary metabolic events for FIN were hydroxylation of the t-butyl side chain to give hydroxymethyl-FIN (metabolite I), which is oxidized further to form the carboxylic acid derivative (metabolite IV), and hydroxylation at positions B alpha and 15. Terminal half-life of FIN after the intravenous dose was 3.4 hr. Plasma clearance and volume of distribution at steady-state were 4.8 ml/min/kg and 1.1 liter/kg. Dogs showed rapid absorption after oral administration of the low dose, with Cmax reached in the 1-2 hr, bioavailability was estimated to be > 90%. After either dosing route, 45% of the plasma radioactivity (as represented by AUC) was parent drug, 43% was metabolite I, and 1% was metabolite IV. After oral administration, the 80 mg/kg dose was absorbed slowly, with the highest levels of radioactivity in plasma reached in 4-30 hr. Average Cmax value for FIN and metabolite I increased in a dose-related, but nonproportional, manner. Compared with the 10 mg/kg dose, it seems the higher dose was reasonably well-absorbed, as indicated by the nearly proportional increase of AUC values of total radioactivity and FIN. Composition of plasma metabolites observed at the 80 mg/kg dose level was similar to that observed previously for the low dose, suggesting that an increase in plasma exposure was effected in dogs receiving FIN at 80 mg/kg in toxicity studies. Most of the administered radioactivity was recovered in feces after all doses. Little of the intravenous and low oral doses, but > 50% of the 80 mg/kg oral dose, was excreted as intact FIN, suggesting that metabolism might have been saturated at the high dose.

Animals↗

Effects of a 5 alpha-reductase inhibitor, finasteride, on the developing prostate and testis of a marsupial.

This study examines the role of dihydrotestosterone in virilization of the developing male tammar. The onset of prostate differentiation in this marsupial species normally occurs around 25 days postpartum, long after the onset of testicular testosterone production immediately after birth and the appearance of 5 alpha-reductase in the urogenital sinus before day 10. Males treated with the 5 alpha-reductase inhibitor Finasteride had reduced prostatic growth and development, and their testicular structure was disorganized. Exogenous testosterone in males enhanced the development of prostatic buds but also caused damage to the testis structure. Treatment of female tammars with testosterone between days 20-30 postpartum stimulated prostatic tissue formation and Wolffian duct development, confirming that prostatic differentiation is initiated by androgens and occurs over a relatively narrow window of time. Testosterone had a deleterious effect on the ovary, destroying the germ cells. Although treatment with testosterone damaged gonadal cellular structure in both male and female tammar young, dihydrotestosterone is apparently necessary for stability of the seminiferous tubules in the testis. Taken together, these results suggest that dihydrotostesterone initiates prostatic development between days 20 and 25 after birth in this marsupial.

5-alpha Reductase Inhibitors↗

[Long-term results of proscar (finasteride, MSD) treatment of patients with benign prostatic hyperplasia].

Patients with benign prostatic hyperplasia (BPH) received proscar (finasteride) in daily dose 5 mg for: at least 6 months (n = 206, 20.4%), 12 months (n = 513, 50.9%), 24 months (n = 164, 16.3%), 3-4 years (n = 125, 12.4%). Because the size of the prostatic gland reduced significantly (by 22%) only after one year of proscar treatment, the duration of this treatment should be continued for at least 12 months, in some patients as long as the whole life. The duration of the treatment should be decided for each individual patient. The improvement after the proscar treatment was observed in 95% of the patients treated for benign prostatic hyperplasia.

Aged↗

Saw palmetto and finasteride in the treatment of category-III prostatitis/chronic pelvic pain syndrome.

Chronic nonbacterial prostatitis/chronic pelvic pain syndrome is a common entity for which a standardized management has not been established. Patients often have a significant symptom complex and impact on quality of life, but very little is known about the efficacy of second- and third-line treatments, such as the use of herbal supplements. Many treatments studied in recent literature include antibiotics, alpha-blockade, anti-inflammatory agents, and cognitive behavioral interventions such as biofeedback and psychotherapy.

5-alpha Reductase Inhibitors↗

High-performance liquid chromatographic method for the determination of finasteride in human plasma at therapeutic doses.

A high-performance liquid chromatographic (HPLC) method with ultraviolet detection for the determination of a novel 4-aza-steroidal inhibitor of 5 alpha-reductase in human plasma has been developed. The assay is based on a single solid-phase extraction and an efficient HPLC separation on two analytical columns in series. The assay has been fully validated and used to support Phase II and III clinical pharmacokinetic studies. The lowest limit of quantification was found to be at 1 ng/ml and allowed pharmacokinetic evaluation of the drug at doses down to 5 mg.

3-Oxo-5-alpha-Steroid 4-Dehydrogenase↗