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Selectivity of finasteride as an in vivo inhibitor of 5alpha-reductase isozyme enzymatic activity in the human prostate.

The type II 5alpha-reductase inhibitor finasteride is used in the treatment of benign prostatic hyperplasia (BPH), reducing local production of the growth promoting androgen dihydrotestosterone (DHT). The effect of prolonged treatment with this time-dependent irreversible inhibitor on the recently described prostatic type I 5alpha-reductase, however, is not clear. Therefore, we assessed the effects of 5 mg. finasteride per day for 6 months on prostatic 5alpha-reductase isozymes, and prostatic tissue composition and androgen content of patients suffering from BPH. In prostatic tissue from these patients, the type II enzymatic activity is inhibited 100-fold compared with tissues obtained from placebo treated patients. The type II immunoreactivity is up regulated 2-fold. The type I isozyme is inhibited 3-fold and potentially still contributes to DHT production. In conclusion, finasteride is a selective type II inhibitor in vivo. Further research is warranted to assess the possibly distinct roles of the 5alpha-reductase isozymes in the normal prostate, in BPH, and during finasteride treatment.

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

Nodular hyperplasia of the prostate. Quantitative evaluation of secretory cell changes after treatment with finasteride.

OBJECTIVE: To quantitatively evaluate the changes in the secretory cells in nodular hyperplasia of the prostate after treatment with finasteride. STUDY DESIGN: Secretory cell nuclear and nucleolar measurements were performed with an image analyzer in hematoxylin-and-eosin-stained sections of 20 untreated and 20 finasteride-treated cases of nodular hyperplasia. An immunoperoxidase method was used to stain the secretory cells with a monoclonal antibody-directed, anti-prostate specific antigen (PSA). The size of prostates was determined by transrectal ultrasound. For both groups the serum PSA values were determined. RESULTS: After six months of treatment with finasteride, the prostates shrank by approximately 20% with the therapeutic regimen (as determined by transrectal ultrasound), whereas the serum PSA values decreased by 30% (before therapy, < 4.00 ng/mL). The secretory cells appeared smaller than those from the untreated group of patients, and the cytoplasm staining of the PSA marker was slightly diminished. Karyometric analyses showed that the nuclear and nucleolar size were smaller in comparison with the controls. In particular, the mean nuclear and nucleolar area in the treated group were, respectively, 34.12 and 1.424 micron 2, whereas in the untreated group the values were 40.46 and 2.261. CONCLUSION: Reduced androgen stimulation after treatment with finasteride induces involution of secretory cells. This may be responsible for the decrease in the serum PSA level and may contribute to the reduction in prostate size.

Aged↗

Usefulness of a 12-month treatment with finasteride in idiophathic and polycystic ovary syndrome-associated hirsutism.

OBJECTIVE: Hirsutism is considered as a skin disease due to increased 5 alpha-reductase activity in the pilosebaceous unit and finasteride is a drug that inhibits this enzymatic activity. This study showed the effectiveness of a chronic treatment with a selective 5 alpha-reductase inhibitor, finasteride, in idiopathic and PCOS-associated hirsutism. METHODS: Finasteride was administered orally at a daily dose of 5 mg for a period of 12 months to 20 women with IH and 20 women with PCOS. MAIN OUTCOME MEASURES: Each group was submitted to clinical (with Ferriman-Gallwey method) and serum hormonal (FSH, LH, 17 beta-estradiol, total and free T, delta 4-androstenedione, DHEAS; dihydrotestosterone, 3 alpha-androstanediol glucuronide) studies at baseline and after 3, 6 and 12 months of treatment. RESULTS: After 3 months of finasteride treatment, a significant decrease in the average hirsutism scores was recorded both in IH (p < 0.0001) and PCOS patients (p < 0.0001). A progressive significant decrease of hirsutism score was observed in IH patients after 6 and 12 months (p < 0.002) and in PCOS patients after 6 but not 12 months. In fact, the maximal therapeutic effect on the hirsutism was obtained after 12 months in the IH and 6 months in PCOS group.

Adolescent↗

Finasteride in the treatment of Taiwanese men with androgenetic alopecia: a 12-month open-label study.

Finasteride 1 mg/day is effective in the treatment of androgenetic alopecia (AGA). Our open-label study assessed the efficacy and safety of finasteride for the treatment of Taiwanese men with AGA. We enrolled 34 Taiwanese men (aged 18-40 yr) with AGA of modified Norwood/Hamilton scale (MNHS) grade II-V. In investigator assessments at 12 months, five of 21 subjects (23.8%) had two-grade improvement in MNHS grade and 12 of 21 subjects (57.1%) had one-grade improvement; the others remained at the same grade. In global photographic evaluation, five of 31 subjects (15.1%) had observable hair growth at 6 months and 11 of 21 subjects (52.4%) had observable hair growth at 12 months. Patient self-assessment of hair growth was favorable across all questions in the treatment course, more significantly at 12 months than at 6 months; nine of 21 subjects (42.9%) were satisfied with their overall appearance at 12 months. Serum prostate specific antigen levels had decreased by 23.4% at 12 months. Adverse effects, including abnormal liver function (5/34), were minimal, and the causal relationship with finasteride could not be established. Thus, in Taiwanese men with AGA, finasteride 1 mg/day for 1 year slowed the progression of hair loss and increased hair growth.

Adolescent↗

Efficacy and tolerability of finasteride 1 mg in men aged 41 to 60 years with male pattern hair loss.

A 24-month double-blind, randomized, placebo-controlled, parallel-group, multicenter study of 424 men was conducted to determine the efficacy and tolerability of finasteride 1 mg on hair growth/loss in men aged 41 to 60 years with mild-to-moderate, predominantly vertex male pattern hair loss. Efficacy was evaluated by review of global photographs of the vertex scalp taken at baseline and at Months 6, 12, 18, and 24 and by patient self-assessments and investigator clinical assessments of change from baseline in hair growth/loss collected at Months 6, 12, 18, and 24. Safety analyses included assessment of clinical and laboratory adverse experiences, including sexual adverse experiences. Analysis of global photographic assessment data showed significant improvement in hair growth for men in the finasteride group compared with those taking placebo beginning at Month 6 (p < 0.001) and maintained through Month 24 (p < 0.001). Results of the patient self-assessment and investigator assessments were consistent with those from the global photographic assessment. Finasteride 1 mg improved scalp hair growth in men aged 41 to 60 years with predominantly vertex male pattern hair loss compared with results seen with placebo. Improvement was evident by 6 months of treatment and continued through 24 months. Treatment with finasteride 1 mg was generally well tolerated.

Adult↗

[Determination of finasteride in human plasma by HPLC-MS].

AIM: To develop an HPLC-MS assay for determination of finasteride in human plasma and to investigate the bioequivalence in healthy volunteers. METHODS: After alkalization with sodium hydroxide, plasma was extracted with ethyl acetate and separated using a C18 column with a mobile phase of methanol-water (85:15). LC-ESI-MS was performed in the selected ion monitoring (SIM) mode using target ions at m/z 395 for finasteride and m/z 407 for the IS. The fragmentor voltage was 120 V. A randomized crossover design was performed in 20 healthy volunteers. In the two study periods, a single 10 mg dose of each tablet was administered to each volunteer. RESULTS: Calibration curves were linear over the range 1-200 micrograms.L-1 (r = 0.9986). The limit of determination for finasteride in plasma was 0.05 microgram.L-1. The recovery of finasteride from plasma was in the range of 85.9%-98.7%. The results of variance analysis and two one-side t-test showed that there was no significant difference between the two formulations in the AUC and Cmax. CONCLUSION: The assay was proved to be sensitive, accurate and convenient. The two formulations were bioequivalent.

Adult↗

The effect of finasteride on prostate specific antigen: review of available data.

PURPOSE: We reviewed the available data on the effect of finasteride on serum levels of prostate specific antigen (PSA), PSA velocity and PSA density in men with benign prostatic hyperplasia (BPH) and prostate cancer. MATERIALS AND METHODS: To our knowledge all previously published analyses of PSA data from clinical trials of finasteride therapy for BPH and prostate cancer are reviewed. RESULTS: The normal reference range of serum PSA levels in men with BPH and no evidence of prostate cancer who were treated with finasteride for 6 months or longer is half that in untreated men with BPH. The percent by which serum levels of PSA are suppressed after 6 months of treatment for prostate cancer does not tend to be greater than that for BPH. CONCLUSIONS: To interpret serum PSA levels in men with BPH treated with finasteride for 6 months or longer, the serum PSA level should be multiplied by 2 and compared to either age-independent or age-specific upper limits of normal for serum PSA in untreated men with BPH. On the basis of limited data the sensitivity and specificity of this approach appear to be similar to those of the corresponding PSA limits in untreated men with BPH.

5-alpha Reductase Inhibitors↗

Effect of finasteride on serum PSA concentration in men with benign prostatic hyperplasia. Results from the North American phase III clinical trial.

Finasteride, a 5-alpha reductase inhibitor recently introduced for the treatment of symptomatic benign prostatic hyperplasia, reduces prostate size and decreases serum PSA concentration. To interpret PSA in men treated with finasteride, it is necessary to take the reduction into account. This article describes the effect of finasteride on the serum PSA concentration in the North American Phase III clinical trial and discusses implications of these findings for the interpretation of serum PSA in men treated with finasteride.

Adult↗

[Finasteride in the treatment of benign prostatic hypertrophy].

Finasteride acts by blocking the conversion of testosterone to 5a-dihydrotestosterone, the active androgen metabolite in the human prostate. In large, double-blind, placebo-controlled phase III-studies recruiting over 1,600 patients, it was shown that the administration of Finasteride, either 5 or 1 mg a day, reduced the size of the prostate by a mean of 22%, following 6 months of therapy. Despite this reduction in prostate size, urinary flow rate only improved by a mean of 1.7 ml per second, and symptom score improved only marginally, but statistically significantly different from placebo. The future role for Finasteride therapy is emerging but it appears as if patients with mild to moderate symptoms would be a group who could benefit the most. Whether or not Finasteride can stop the long-term natural course of benign prostatic hyperplasia has still to be demonstrated.

Finasteride↗

Pharmacological treatment of benign prostatic hyperplasia with finasteride: a clinical review.

Finasteride acts by blocking the conversion of testosterone to 5 alpha-dihydrotestosterone, the active androgen metabolite in the human prostate. In large, double-blind, placebo-controlled phase III studies recruiting over 1600 patients, it was shown that the administration of Finasteride, either 5 or 1 mg a day, reduced the size of the prostate by a mean of 22%, following 6 months of therapy. Despite this reduction in prostate size, urinary flow rate only improved by a mean of 1.7 ml per second and symptom score improved only marginally, but statistically significantly different from placebo. Long-term results in small series of patients have indicated a further improvement beyond 1 year. After 3 years flow was improved by 60%. The future role for Finasteride therapy is emerging, but it appears as if patients with mild to moderate symptoms would be a group who could benefit the most. Whether or not Finasteride can stop the long-term natural course of benign prostatic hyperplasia has still to be demonstrated.

Clinical Trials, Phase III as Topic↗

Long-term effects of finasteride on invasive urodynamics and symptoms in the treatment of patients with bladder outflow obstruction due to benign prostatic hyperplasia.

PURPOSE: We assess the long-term effects of finasteride on bladder outlet obstruction and symptoms in the treatment of patients with benign prostatic hyperplasia. MATERIALS AND METHODS: Of the original 36 patients assigned to treatment with 5 mg. finasteride daily (group 1) or placebo (group 2) for 6 months 27 completed an open extension study of 5 mg. finasteride for 4 more years. The possible relief of bladder outlet obstruction was monitored with repeated pressure-flow studies at baseline, 6 months and 4.5 years. RESULTS: The treatment resulted in a further slight decrease in detrusor pressure at maximum flow rate in group 1 and a significant decrease in group 2 during the 4-year period, whereas improvement in maximum flow rate did not achieve statistical significance. Concomitantly, there was a significant improvement in obstructive and irritative symptoms. CONCLUSIONS: Finasteride decreases bladder outlet obstruction moderately and only occasionally relieves it completely. However, the decrease in obstruction achieved in many patients is sufficient to improve the symptoms significantly. The beneficial effect is long-lasting.

Aged↗

The effects of finasteride on hematuria associated with benign prostatic hyperplasia: a preliminary report.

PURPOSE: The efficacy of finasteride was assessed in the treatment of gross hematuria associated with benign prostatic hyperplasia (BPH). MATERIALS AND METHODS: A retrospective review was done of 18 patients who had been placed on finasteride (5 mg . daily) for the treatment of gross hematuria associated with BPH. A hematuria grading system was devised. RESULTS: Of the 12 patients with longer than 3 months of followup (mean 14) 11 improved according to the grade of hematuria after finasteride therapy. CONCLUSIONS: Finasteride is effective in treating hematuria associated with BPH. This finding is especially relevant for patients with multiple medical problems and anesthetic risks.

Aged↗

Evaluation of men on finasteride.

Finasteride, an orally active type II 5 alpha-reductase (5 alpha R) inhibitor, blocks conversion of testosterone (T) to dihydrotestosterone (DHT). The utility of finasteride in effectively managing benign prostatic hyperplasia has been documented. Use of the drug results in reduced prostate volume and serum levels. Patients receiving finasteride should be monitored with periodic digital-rectal examination (DRE) and serum PSA measurement. Patients with a sustained increase in serum PSA or an abnormal DRE require additional evaluation. There is no evidence that use of finasteride has an adverse effect on prostate cancer detection, if the drug's effect on serum PSA is recognized and accounted for.

Enzyme Inhibitors↗

[Finasteride: a new drug for the treatment of male hirsutism and androgenetic alopecia?].

Finasteride is a drug which inhibits the transformation of testosterone into its active metabolite, dihydrotestosterone, in the target organs, i.e. the skin, the scalp, the liver and the prostate. In the pathogenic mechanism of hirsutism and androgenetic alopecia, and important role is presumably played by alterations of the mechanisms which transform testosterone into dihydrotestosterone. In some conditions an increase in dihydrotestosterone has been demonstrated, due to increased activity of the enzyme 5 alpha-reductase. The effect of finasteride develops above all at the level of type II 5 alpha-reductase. Recent studies have evaluated the effect of finasteride in patients of both sexes with hirsutism and androgenetic alopecia. In women with various forms of hyperandrogenism, the use of the drug at the doses commonly used for the treatment of benign prostatic hyperplasia seems to have induced a significant reduction in the degree of hirsutism. Furthermore, both in animals and men with alopecia, the drug seems to have led to an increase in the number and an improvement in the shape of the follicles in the anagen phase, and a simultaneous decrease of dehydrotestosterone at the level of the scalp. This study represents a review of the main results obtained over the last two years and reports the prospects which the use of finasteride may have in this context.

Alopecia↗

Effect of finasteride on human testicular steroidogenesis.

We studied the testicular function and some androgen-mediated events in 22 males (16-30 years of age) with male pattern baldness that was treated with finasteride (10 mg once daily) for 2 years. Patients were evaluated every 3 months. Prostatic volume was determined in six subjects by endorectal ultrasound scans. Serum gonadotropin, prostate-specific antigen (PSA), and sex hormone levels were determined basally and periodically during the treatment period. Fourteen subjects underwent gonadal stimulation with human chorionic gonadotropin (hCG), and the gonadotropin response to gonadotropin releasing hormone (GnRH) was determined in eight subjects, prior to and after 2 years of therapy. Finasteride treatment resulted in an improvement in the male pattern baldness and prostatic shrinkage that was associated with an increase in serum testosterone levels (17.2 +/- 2.5 vs. 26.3 +/- 1.7 nmol/L) and a decrease in dihydrotestosterone (DHT) levels (1.45 +/- 0.41 vs. 0.38 +/- 0.10 nmol/L), causing a marked increase in that testosterone/DHT ratio. A significant increase in the serum levels of androstenedione (3.67 +/- 0.49 vs. 7.05 +/- 0.70 nmol/L) and estradiol (132 +/- 44 vs. 187 +/- 26 pmol/L) was also noted, whereas androstanediol glucoronide (33.3 +/- 6.4 vs. 10.7 +/- 4.5 pmol) and PSA (1.6 +/- 0.6 vs. 0.4 +/- 0.1 ng/ml) were significantly decreased. No changes in basal or stimulated levels of gonadotropin were observed. There was a significant increase in the testosterone response to hCG during finasteride therapy (delta: 16.7 vs. 35.5 nmol/L) that could be explained, at least in part, by the reduction of testosterone metabolism resulting from the blockage induced by finasteride. The decrease in the androstenedione to testosterone and estrone to estradiol ratios observed after hCG treatment, however, strongly suggests increased activity of the 17-ketosteroid reductase enzyme and an improvement of the testicular capacity for testosterone production.

Adult↗

The treatment of gross hematuria secondary to prostatic bleeding with finasteride.

PURPOSE: We evaluate the use of finasteride to control gross hematuria secondary to prostatic bleeding. MATERIALS AND METHODS: We reviewed retrospectively 42 patients treated with finasteride to treat gross hematuria. RESULTS: There were 28 evaluable patients who had taken finasteride for at least 6 months to control gross hematuria and hematuria ceased in 25 (91%). In 1 patient clot retention developed requiring transurethral resection of the prostate and 2 patients had 1 or more minor episodes of bleeding that resolved spontaneously. CONCLUSIONS: Finasteride appears to be an effective agent for controlling gross hematuria secondary to prostatic bleeding.

Aged↗

Finasteride, a 5alpha-reductase inhibitor, blocks the anticonvulsant activity of progesterone in mice.

Progesterone is an effective anticonvulsant against pentylenetetrazol (PTZ) seizures. This action is hypothesized to require the metabolic conversion of progesterone to the gamma-aminobutyric acidA receptor potentiating neuroactive steroid allopregnanolone by 5alpha-reductase isoenzymes followed by 3alpha-hydroxy oxidoreduction. We evaluated this possibility using the competitive 5alpha-reductase inhibitor finasteride. Progesterone (50-200 mg/kg, i.p.) protected mice against PTZ-induced seizures in a dose-dependent manner (ED50, 94 mg/kg). Pretreatment with finasteride (50-300 mg/kg, i.p.) produced a dose-dependent (ED50, 146 mg/kg) reversal of the protective effects of progesterone (2 x ED50 dose = 188 mg/kg). In contrast, finasteride (up to 300 mg/kg) failed to affect the anticonvulsant activity of allopregnanolone (10-30 mg/kg, i.p.; ED50, 12 mg/kg). Finasteride (up to 300 mg/kg) did not block the protective effect of high doses of progesterone (250-350 mg/kg) on tonic hindlimb extension in the maximal electroshock seizure test (progesterone ED50, 235 mg/kg). The anticonvulsant activity of progesterone against PTZ-induced seizures can be blocked by 5alpha-reductase inhibition, providing strong evidence that the anticonvulsant effect of the steroid in this model is mediated by its active metabolite allopregnanolone.

Animals↗

Comparison of clinical trials with finasteride and dutasteride.

Finasteride selectively inhibits the Type 2 isoenzyme of 5alpha-reductase (5AR) (the enzyme responsible for converting testosterone to dihydrotestosterone [DHT]) whereas dutasteride inhibits both Type 1 and Type 2 5AR. General conclusions regarding the differences and similarities of these 2 agents, in terms of pharmacologic effect, safety, and efficacy, can be drawn from evaluation of short-term comparative trials and similar but non-comparative long-term trials. Dutasteride therapy reduces serum DHT significantly more than does finasteride. In men with benign prostatic hyperplasia (BPH), treatment with either agent results in similar prostate gland volume reduction, flow rate and symptom improvement, and similar reductions in long-term risk of BPH development in terms of symptom progression and acute urinary retention (AUR) and BPH-related surgery. There does not appear to be any clinically significant difference between the adverse event profiles of dutasteride and finasteride. Although weak evidence suggests a difference in the onset of clinical benefit, the available non-comparative trial data do not confirm this finding. Patients with symptomatic BPH who receive dutasteride or finasteride, either as monotherapy or combination therapy with alpha-blockers, can expect to experience significant prostate gland size reduction, improved symptoms, and reduced risk of progression in terms of long-term adverse outcomes.

Journal Article↗