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Finasteride: a 5 alpha-reductase inhibitor.

The pharmacology and pharmacokinetics of finasteride are reviewed, and finasteride's clinical efficacy, adverse effects, and dosage in patients with benign prostatic hyperplasia (BPH) are described. Finasteride is a member of a new class of medications, the azasteroids, that have antiandrogenic activity limited to certain tissues, including the prostate gland. Finasteride inhibits the activity of 5 alpha-reductase, the enzyme necessary for converting testosterone to dihydrotestosterone in the prostate and other tissues. BPH is androgen dependent, and dihydrotestosterone is necessary for the hyperplasia to occur. Finasteride is well absorbed after oral administration; peak plasma concentration is reached in as little as one hour. Finasteride is approximately 90% bound to plasma proteins, is widely distributed, and is extensively metabolized by the liver. In clinical studies, finasteride has been effective in decreasing prostatic volume, increasing urinary flow rate, and decreasing the obstructive and irritative symptoms of BPH. Because of the heterogeneity of BPH, however, treatment is successful in only one third to one half of patients. Finasteride's adverse effects include decreased libido, ejaculatory disorders, and effects on prostate-specific antigen. The recommended dosage of finasteride is 5 mg/day orally. Therapy should be continued for at least six months before the clinical response is evaluated. Finasteride provides a pharmacologic alternative to surgery in patients with BPH.

5-alpha Reductase Inhibitors↗

In vitro biotransformation of finasteride in rat hepatic microsomes. Isolation and characterization of metabolites.

Metabolism of finasteride ([N-(1,1-dimethylethyl)-3-oxo-4-aza-5 alpha-androst-1-ene-17 beta- carboxamide]; MK-906), a new type of specific inhibitor of testosterone 5 alpha-reductase, was investigated using rat hepatic microsomes. The metabolism of finasteride by rat hepatic microsomes was oxygen- and NADPH-dependent, and addition of metyrapone, 7,8-benzoflavone, and cytochrome c to the incubation mixture inhibited the metabolism of finasteride. It is suggested that the metabolic reaction of finasteride was mediated by a mixed function oxidase involving P-450. Four major metabolites were detected in vitro on incubating finasteride with hepatic microsomes of rats treated with phenobarbital (PB-Ms), whereas two major metabolites were found in the incubation mixture with microsomes of untreated rats (UT-Ms). These metabolites were isolated and purified by solvent extraction and semi-preparative HPLC, and identified by MS spectrometry and NMR spectroscopy. The metabolites consisted of omega-hydroxy finasteride (M-1), finasteride-omega-al (M-2), finasteride-omega-oic acid (M-3), and 6 alpha-OH finasteride (M-4). M-1 and M-4 are the major metabolites in UT-Ms, and M-1 and M-3 in PB-Ms. These studies revealed that hydroxylation of the t-butyl group and ring hydroxylation at the 6-position were key steps in the metabolism of finasteride in the rat hepatic microsomes. Further, the major metabolite M-4 was hydroxylated at the 6 alpha-position, but not at the 6 beta-position of the drug. This finding suggests the existence of a novel enzyme that catalyzes the 6 alpha-hydroxylation of the 4-azasteroid.

Animals↗

Effects of finasteride, a type 2 5-alpha reductase inhibitor, on fetal development in the rhesus monkey (Macaca mulatta).

In genetic male fetuses, dihydrotestosterone (DHT) plays an important role in normal prostatic and external genital differentiation. The enzyme steroid 5-alpha reductase (5 alpha R) catalyzes the conversion of testosterone (T) to DHT. The importance of 5 alpha R in sexual differentiation is evident from the study of human genetic males who congenitally lack this enzyme and consequently develop ambiguous genitalia. These individuals are specifically deficient in the type 2 isozyme, whereas the normal type 1 isozyme activity has been found. The purpose of this study was to determine 1) the suitability of the rhesus monkey for testing the safety of 5 alpha R inhibitors when administered during pregnancy and 2) the potential risk of administering a known type 2 5 alpha R inhibitor, finasteride, during the critical period of internal and external genital differentiation in rhesus monkeys. In vitro studies were also performed on selected rhesus monkey tissues to determine the distribution of the 5 alpha R isozymes. Gravid monkeys were treated once daily from gestational days (GD) 20 to 100. Sonographic monitoring was performed during the course of gestation to monitor viability, growth, and organ system development. Detailed fetal evaluations for developmental abnormalities were performed at term (GD 152 +/- 2). A group of 13 pregnant monkeys ("positive control") were given a high oral dose (2 mg/kg/day) of finasteride to demonstrate that inhibiting type 2 5 alpha R results in specific external genital abnormalities in male fetuses. Thirty-two pregnant monkeys were administered an intravenous (i.v.) formulation of finasteride at doses of 8, 80, or 800 ng/day. The highest i.v. dose selected was at least 60-750 times the semen levels of finasteride in man given orally 5 or 1 mg/day, respectively. Seventeen vehicle-control pregnant monkeys were also included. Administration of a high oral dose (2 mg/kg/day) of finasteride resulted in external genital abnormalities characterized by hypospadias, preputial adhesions to the glans, a small underdeveloped scrotum, a small penis, and a prominent midline raphe in male fetuses; however, no developmental abnormalities were seen in female fetuses. Similarly, no abnormalities were observed in either male or female fetuses of mothers given iv doses (8, 80, or 800 ng/day) of finasteride during pregnancy. The in utero sonographic findings in fetuses correlated with the gross findings at term. These studies have shown that external genital abnormalities can be produced in male monkey fetuses when exposed to a high oral dose (2 mg/kg/day) of finasteride, whereas no abnormalities were observed in fetuses exposed to the i.v. formulation of finasteride. Detailed in vitro studies demonstrated that the rhesus monkey also has two 5 alpha R isozymes (types 1 and 2) with a tissue distribution similar to that seen in man and, furthermore, that finasteride is a potent, mechanism-based inhibitor with selectivity for both human and rhesus type 2 5 alpha R. These studies have demonstrated that the monkey is a suitable model for assessing the safety of 5 alpha R inhibitors administered during pregnancy.

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

Combination therapy with rofecoxib and finasteride in the treatment of men with lower urinary tract symptoms (LUTS) and benign prostatic hyperplasia (BPH).

PURPOSE: Cyclooxygenase-2 (COX-2) is expressed in human BPH tissue and displays either a pro-inflammatory effect or a proliferative effect on prostate cells. The aim of this study is to analyze whether combination therapy with rofecoxib, a COX-2 inhibitor, and finasteride offers an advantage compared to finasteride monotherapy in patients with BPH. MATERIALS AND METHODS: This is a single centre unblinded trial. Forty-six consecutive men with LUTS and BPH were entered into the study and were randomized to receive rofecoxib 25mg/day plus finasteride 5mg/day (group B) versus finasteride 5mg/day alone (group A) for 24 weeks. Inclusion criteria included also a prostate size greater than 40 cc. The efficacy and safety of treatments were assessed at baseline and at week 4, 12 and 24. RESULTS: In our population, both treatments (groups A and B) produced statistically significant improvements in total IPSS and Q(max) from baseline during follow-up, although they were very low in particular for the finasteride alone group at 4 weeks. We found that finasteride monotherapy produces very little improvement at the 1 month interval. In comparing group A with group B, a significantly higher improvement in IPSS (p=0.0001) and Q(max) (p=0.03) was obtained in group B at 4 weeks interval (% cases with IPSS reduction >4 points: group B=34.7, group A=0; % cases with Q(max) improvement >3 ml/s: group B=8.7, group A=0), whereas at week 24, the differences between the two treatments were not significant (p>0.05). CONCLUSIONS: In our population, the advantage of the combination therapy compared to finasteride alone is significant in a short-term interval (4 weeks). It can be hypothesized that the association of rofecoxib with finasteride induces a more rapid improvement in clinical results until the effect of finasteride becomes predominant.

Aged↗

Influence of finasteride on free and total serum prostate specific antigen levels in men with benign prostatic hyperplasia.

PURPOSE: Finasteride therapy for benign prostatic hyperplasia (BPH) results in a marked lowering of serum prostate specific antigen (PSA) levels. However, little is known about the effect of finasteride on unbound or free serum levels of PSA. Such information would be important since percent free PSA may substantially improve the cancer specificity of PSA testing. Thus, we prospectively studied the effect of finasteride therapy on total and free serum PSA levels. MATERIALS AND METHODS: In a randomized, placebo controlled, double-blind trial 40 men with histologically confirmed BPH (age range 52 to 78 years) were treated with either 5 mg. finasteride daily (26 patients) for 9 months or placebo (14) for 6 months. Prostate volume was assessed by transrectal ultrasound. Serum levels of free and total PSA were measured from archived serum samples stored at -70C at baseline and for as long as 9 months of treatment. RESULTS: In the finasteride group mean total PSA levels declined from 3.0 ng./ml. at baseline to 1.5 ng./ml. after 6 months of treatment (50% decrease, p <0.01). In the placebo group, with similar baseline levels, no significant change was observed. PSA density declined significantly in finasteride treated men (p <0.01) but not in men receiving placebo. The mean percent free PSA (13 to 17% at baseline) was not altered significantly by finasteride or placebo. CONCLUSIONS: Total PSA serum levels decreased by an average of 50% during finasteride therapy but percent free PSA did not change significantly. This information is potentially useful in the interpretation of PSA data used for early detection of prostate cancer in men receiving finasteride. However, further studies are required to demonstrate the use of percent free PSA to detect the development of cancer.

Aged↗

Androgen metabolism in men receiving finasteride before prostatectomy.

Oral administration of finasteride, a 5 alpha-reductase inhibitor, affects intraprostatic androgens by suppressing dihydrotestosterone and increasing testosterone. This study was designed to determine the correlation of these effects of finasteride with changes in serum dihydrotestosterone, testosterone and androstanediol glucuronide. In a double blind, placebo-controlled study, 27 men with symptomatic benign prostatic hyperplasia were treated with placebo or 1 or 5 mg. per day finasteride for 6 to 8 weeks before transurethral resection of the prostate. There was no significant change in serum testosterone in any group, or in serum dihydrotestosterone or androstanediol glucuronide in the placebo group. There was a decrease in serum dihydrotestosterone by 66 +/- 4% and 70 +/- 8% (p = 0.32), and of serum androstanediol glucuronide by 78 +/- 3% and 86 +/- 3% (p = 0.012) in the 1 and 5 mg. finasteride groups, respectively. Intraprostatic dihydrotestosterone in the placebo group decreased from 18.6 +/- 1.4 nmol./kg. to 3.8 +/- 1.0 nmol./kg. and 1.7 +/- 0.7 nmol./kg. with 1 mg. and 5 mg. finasteride, respectively (p = 0.049 between 1 mg. and 5 mg. finasteride). Intraprostatic testosterone in the placebo group increased from 1.1 +/- 0.2 nmol./kg. to 7.6 +/- 1.0 nmol./kg. and 8.3 +/- 0.7 nmol./kg. with 1 mg. and 5 mg. finasteride, respectively (no significant difference between 1 mg. and 5 mg. finasteride). Serum and intraprostatic dihydrotestosterone correlated (p = 0.002). There was no correlation between intraprostatic dihydrotestosterone and serum androstanediol glucuronide. We conclude that 5 mg. of finasteride cause greater inhibition of intraprostatic 5 alpha-reductase than 1 mg. and that serum dihydrotestosterone is a better marker of intraprostatic dihydrotestosterone than androstanediol glucuronide.

Androstane-3,17-diol↗

Efficacy and tolerability of doxazosin and finasteride, alone or in combination, in treatment of symptomatic benign prostatic hyperplasia: the Prospective European Doxazosin and Combination Therapy (PREDICT) trial.

OBJECTIVES: To evaluate the efficacy and tolerability of the selective alpha(1)-adrenergic antagonist doxazosin and the 5-alpha-reductase inhibitor finasteride, alone and in combination, for the symptomatic treatment of benign prostatic hyperplasia. METHODS: In a prospective, double-blind, placebo-controlled trial, 1095 men aged 50 to 80 years were randomized to treatment for 52 weeks with doxazosin, finasteride, the combination of doxazosin and finasteride, or placebo. The dose of finasteride (or its matched placebo) was 5 mg/day. Doxazosin (or its matched placebo) was initiated at 1 mg/day, and titrated up to a maximum of 8 mg/day over approximately 10 weeks according to the response of the maximal urinary flow rate (Qmax) and International Prostate Symptom Score (IPSS). The IPSS and Qmax were assessed at baseline and at weeks 10, 14, 26, 39, and 52 or at the endpoint. RESULTS: An intent-to-treat analysis of 1007 men showed doxazosin and doxazosin plus finasteride combination therapy produced statistically significant improvements in total IPSS and Qmax compared with placebo and finasteride alone (P <0.05). Finasteride alone was not significantly different statistically from placebo with respect to total IPSS and Qmax. All treatments were generally well tolerated. CONCLUSIONS: Doxazosin was effective in improving urinary symptoms and urinary flow rate in men with benign prostatic hyperplasia, and was more effective than finasteride alone or placebo. The addition of finasteride did not provide further benefit to that achieved with doxazosin alone.

5-alpha Reductase Inhibitors↗

Does long-term finasteride therapy affect the histologic features of benign prostatic tissue and prostate cancer on needle biopsy? PLESS Study Group. Proscar Long-Term Efficacy and Safety Study.

OBJECTIVES: Finasteride, a common agent used to treat benign prostatic hyperplasia (BPH), inhibits 5-alpha-reductase. Testosterone is converted by 5-alpha-reductase to the more potent dihydrotestosterone, which is the primary androgen in the prostate. Leuprolide is a stronger antiandrogen that is used to downstage prostate cancer before radical prostatectomy. Leuprolide induces marked atrophy of prostate carcinoma cells, which sometimes makes pathologic diagnosis of cancer difficult, although evaluation at radical prostatectomy is easier than at biopsy. It is unknown whether finasteride produces similar changes, which would result in greater diagnostic difficulty because such changes would be seen on biopsy to rule out cancer in men with suspicious clinical findings treated for BPH. The current study investigated the histologic effects of finasteride therapy on human prostate cancer and benign prostatic tissue on needle biopsy. METHODS: In blinded manner, we reviewed 53 needle biopsy specimens showing prostate carcinoma (35 treated with finasteride, 18 with placebo). Also reviewed in blinded manner were 50 benign needle biopsy specimens (25 treated with finasteride, 25 with placebo). The Gleason score, number of cores involved, percentage cancer involvement in a core, percentage of atrophic changes in cancer cells, presence of mitoses, blue-tinged mucinous secretions, prominent nucleoli, and high-grade prostatic intraepithelial neoplasia were documented for each case in the cancer group. The percentage of atrophy, basal cell hyperplasia, transitional metaplasia, chronic inflammation, and stromal proliferation was documented for each case in the benign group. RESULTS: No significant histologic differences were present in either the benign or cancer group between cases treated with finasteride and placebo. CONCLUSIONS: We conclude that finasteride treatment for BPH does not cause difficulty in the diagnosis of cancer in prostate needle specimens. It is possible that there are severely atrophic areas resulting from finasteride treatment that are undersampled. However, the conclusion that cancer seen on needle biopsy in men treated with finasteride is unaltered and readily identified as cancer remains valid.

Aged↗

Treatment with finasteride following radical prostatectomy for prostate cancer.

OBJECTIVES: The objective of this study was to evaluate the effect of finasteride (10 mg/d) or placebo on serum prostate-specific antigen (PSA) and recurrence rates in men with detectable PSA levels after radical prostatectomy. METHODS: A total of 120 men, 48 to 89 years old, previously treated with radical prostatectomy for prostate cancer within the past 10 years, with serum PSA levels between 0.6 and 10.0 ng/mL, with no evidence of skeletal metastasis on bone scan, and with no previous androgen deprivation therapy, were treated with 10 mg finasteride or placebo in a double-blind fashion for 12 months. After the first year, all patients were treated with finasteride for an additional 12 months. Primary endpoints were serum PSA levels and recurrence rates defined as positive bone scan or positive biopsy. RESULTS: Patients treated with finasteride had a delayed increase in serum PSA compared with placebo of approximately 9 months in the first year and 14 months by the end of the second year. Patients with baseline PSA levels less then 1.0 ng/mL had no significant increase in serum PSA during the 2 years of treatment. Fewer recurrences were observed in the finasteride group, but these differences were not statistically significant. Finasteride was well tolerated, and side effects were balanced between treatment groups. CONCLUSIONS: The results of this study indicate that treatment with finasteride delays but does not prevent the rise in serum PSA observed in untreated patients with detectable PSA levels after radical prostatectomy. The reduction in local and distant recurrences in the finasteride group suggests that the effect on PSA reflects a direct effect on tumor growth without affecting the initial response to subsequent hormonal therapy. These data require confirmation by studies that are longer and larger, focused on demonstrating significant differences in progression rates and survival before the use of finasteride can be considered as an option for men with detectable PSA levels after radical prostatectomy.

Aged↗

Economic analysis of finasteride: a model-based approach using data from the Proscar Long-Term Efficacy and Safety Study.

Benign prostatic hyperplasia (BPH) is one of the most common medical conditions in older men in the United States. BPH is often associated with a reduction in quality of life and may progress to acute urinary retention (AUR), the inability to pass any urine. Recently, a 4-year placebo-controlled clinical trial known as the Proscar Long-Term Efficacy and Safety Study (PLESS) demonstrated that finasteride use reduces the risk of developing AUR by 57% and the need for BPH-related surgery by 55%. The economic implications of these findings were investigated using a model-based decision-analytic approach to compare finasteride with both watchful waiting and alpha-blocker therapy. The modeling used the longest-term published controlled data concerning alpha-blockers, which were for the alpha-blocker terazosin. The base case considered a 64-year-old man (the mean age of a PLESS patient) with prostatic enlargement on digital rectal examination and moderate-to-severe symptoms of BPH. The model suggested savings in surgical and AUR costs with finasteride versus watchful waiting, with an estimated 25% of total finasteride costs recouped in savings on surgical events avoided in the first year. Over 2 years, the expected cost per patient starting finasteride therapy was $2304, whereas the expected cost per patient starting terazosin was $2334. Analyses also explored the variation in economic results by baseline levels of prostate-specific antigen (PSA), a proxy for prostate volume. For patients with PSA levels > or =1.4 ng/mL, expected 2-year costs with finasteride and terazosin were $2342 and $2479, respectively. For patients with PSA levels > or =3.3 ng/mL, expected 2-year costs with finasteride were $373 less than with terazosin ($2347 vs $2720). Results were robust over a range of model assumptions and cost estimates. The analyses illustrate that all medical interventions, including watchful waiting, have associated costs. Finasteride shows cost offsets compared with watchful waiting and cost savings compared with terazosin over 2 years. Finasteride appears to be more economical in men with higher PSA levels.

Adrenergic alpha-Antagonists↗

Finasteride increases anagen hair in men with androgenetic alopecia.

BACKGROUND: The growth of scalp hair is a cyclical process of successive phases of growth (anagen) and rest (telogen). In previous clinical trials in men with androgenetic alopecia, treatment with finasteride increased scalp hair counts in a defined area (i.e. increased hair density). OBJECTIVES: The current study used a phototrichogram methodology to assess the effect of finasteride on the phases of the hair growth cycle. PATIENTS/METHODS: Two hundred and twelve men, age 18-40 years, with androgenetic alopecia were randomized to receive finasteride 1 mg daily or placebo for 48 weeks. At baseline and at 24 and 48 weeks, macrophotographs were taken to measure total and anagen hair count in a 1-cm(2) target area of the scalp. RESULTS: At baseline, mean total and anagen hair counts in the finasteride group were 200 and 124 hairs, respectively (% anagen = 62%) and the anagen to telogen ratio was 1.74 (geometric mean). In the placebo group, the respective values were 196 and 119 hairs (% anagen = 60%) and 1.57. At week 48, the finasteride group had a net improvement (mean +/- SE) compared with placebo in total and anagen hair counts of 17.3 +/- 2.5 hairs (8.3% +/- 1.4%) and 27.0 +/- 2.9 hairs (26% +/- 3.1%), respectively (P < 0.001). Furthermore, treatment with finasteride resulted in a net improvement in the anagen to telogen ratio of 47% (P < 0.001). In this study, treatment with finasteride 1 mg day(-1) for 48 weeks increased both total and anagen hair counts, and improved the anagen to telogen ratio. CONCLUSIONS: These data provide direct evidence that finasteride 1 mg daily promotes the conversion of hairs into the anagen phase. These data support that finasteride treatment results in favourable effects on hair quality that contribute to the visible improvements in hair growth observed in treated patients.

Adolescent↗

Effect of finasteride on the sensitivity of PSA for detecting prostate cancer.

BACKGROUND: In the Prostate Cancer Prevention Trial (PCPT), men receiving finasteride had a 24.8% lower risk of prostate cancer than men receiving placebo but a higher risk of high-grade cancer. We examined the impact of finasteride on the sensitivity and area under the receiver operating characteristic curve (AUC) of prostate-specific antigen (PSA) for detecting prostate cancer. METHODS: We studied men in the placebo and finasteride groups of the PCPT who had a prostate biopsy and concurrent PSA tests during the 7-year study. We compared the placebo and finasteride groups for sensitivity and AUC of PSA for the detection of all prostate cancer, of Gleason grade 7 or higher prostate cancer, and of Gleason grade 8 or higher prostate cancer. All statistical tests were two-sided. RESULTS: Of 5112 men in the placebo group, prostate cancer was detected in 1111. Gleason tumor grade was available for 1100 men, of whom 240 had grade 7 or higher and 55 had grade 8 or higher. Of 4579 men in the finasteride group, 695 had prostate cancer. Gleason grade was available for 686 men, of whom 264 had grade 7 or higher and 81 had grade 8 or higher. The AUC of PSA for all outcomes was greater for the finasteride group than the placebo group. For detecting prostate cancer versus no cancer, the AUCs were 0.757 and 0.681, respectively (P < .001); for detecting Gleason grade > or = 7 versus < or = 6 or no cancer, the AUCs were 0.838 and 0.781, respectively (P = .003); and for detecting Gleason grade > or = 8 versus < or = 7 or no cancer, the AUCs were 0.886 and 0.824, respectively (P = .071). The sensitivity of PSA was higher for men in the finasteride group than in the placebo group at all PSA cutoffs matched by specificity. CONCLUSIONS: PSA had statistically significantly better sensitivity and AUC for detecting prostate cancer in the finasteride arm of the PCPT than in the placebo arm. This bias would be expected to contribute to greater detection of all grades of prostate cancer with finasteride.

Aged↗

Comparison of histological compositions and apoptosis in canine spontaneous benign prostatic hyperplasia treated with androgen suppressive agents chlormadinone acetate and finasteride.

PURPOSE: Chlormadinone acetate and finasteride are androgen suppressive agents clinically used for benign prostatic hyperplasia but their mechanism for inducing prostatic atrophy differs. We investigated the effect of these androgen suppressive agents on prostatic histology and apoptosis using the spontaneous canine benign prostatic hyperplasia model. MATERIALS AND METHODS: Animals were treated with oral chlormadinone acetate or finasteride for 25 weeks. The prostatic volumes were analyzed every 5 weeks. Prostatic androgen and estrogen concentrations, histological composition and apoptosis were determined at the end of treatment. Apoptosis was measured by in situ labeling of 3' hydroxy ends of the DNA breaks using the terminal deoxynucleotidyl transferase-mediated deoxyuridine triphosphate nick end-labeling method. RESULTS: There was a similar volume reduction effect with 0.3 mg./kg. chlormadinone acetate daily and 1 mg./kg. finasteride daily. Chlormadinone acetate decreased testosterone and dihydrotestosterone but finasteride decreased only dihydrotestosterone in the prostate gland. The concentration ratio of estradiol-to-total androgen in the prostate was significantly increased in finasteride treated canines. Chlormadinone acetate and finasteride decreased the epithelial and stromal components. The extent of apoptosis observed in the prostate was significantly higher in the chlormadinone acetate group compared to that of the control and finasteride groups. CONCLUSIONS: Although a similar effect of chlormadinone acetate and finasteride was observed in the induction of prostatic regression and composition of the histological components, the sustained increase in apoptosis was observed only in chlormadinone acetate treated canines. We suggest that different intraprostatic endocrine environments created by chlormadinone acetate or finasteride, which have different intraprostatic testosterone levels and estradiol-to-androgen ratios, may be responsible for the different outcomes in the extent of apoptosis.

Androgen Antagonists↗

Sustained decrease in incidence of acute urinary retention and surgery with finasteride for 6 years in men with benign prostatic hyperplasia.

PURPOSE: We determined the effect of long-term treatment with finasteride on the incidence of acute urinary retention (AUR) and benign prostatic hyperplasia (BPH) related surgery in men with BPH. MATERIALS AND METHODS: The Proscar (Merck and Co., Inc., Whitehouse Station, New Jersey) Long-Term Efficacy and Safety Study (PLESS) was comprised of 3040 men with enlarged prostates, moderate to severe symptomatic BPH and no clinical evidence of prostate cancer. Patients were randomized to placebo or 5 mg finasteride daily for 4 years. Of the 3016 randomized patients with available efficacy data 62% completed the original 4-year study (1006 on finasteride and 891 on placebo) and 89% of these (908 from the original finasteride arm and 785 from the placebo arm) continued in a 2-year open extension on finasteride. Followup was attempted in discontinued patients. Complete 6-year outcomes data, including 6-year followup in 770 men who had discontinued treatment during years 1 to 6, were available for 2463 (82%) of the 3016 originally randomized patients. RESULTS: For patients on continuous finasteride treatment the decrease in incidence of AUR and/or BPH related surgery in the 4-year base study was sustained during the open extension. In patients who were switched from placebo to finasteride in the extension, the incidence of AUR and/or BPH related surgery was similar to that in the continuous finasteride arm. CONCLUSIONS: The 6-year data from PLESS confirmed and further extended the findings from the original 4-year trial, demonstrating that finasteride treatment led to a sustained decrease in the incidence of AUR and/or BPH related surgery in men with BPH and enlarged prostates.

Acute Disease↗

Comparative study of therapeutic effect of dibenyline, finasteride, and combination drugs for symptomatic benign prostatic hyperplasia.

OBJECTIVES: A prospective study was conducted in a community hospital in order to evaluate the therapeutic effect of dibenyline, finasteride, and a combination of the two drugs for symptomatic benign prostatic hyperplasia (BPH). METHODS: 190 men suffering from severe prostatism entered this study. They were assessed by IPSS symptom score, digital rectal examination, transrectal sonography of the prostate, uroflowmetry and residual urine. The patients were randomly selected for medical treatment with dibenyline 10 mg b.i.d. (n = 71), finasteride 5 mg q.d. (n = 54), and a combination (n = 65). Clinical assessments were carried out before treatment and 3 and 6 months after starting treatment. Patients who could not complete the treatment and those with prostatic cancer were excluded from the final statistics. The quality of life after 6 months of treatment and side effects were also assessed. RESULTS: A total of 172 patients completed the treatment course and 153 patients completed the periodic clinical assessments. Improvement in IPSS was noted in all 3 groups of patients both at 3 and 6 months. The prostatic volume was found to decrease in the finasteride group and the combination group at 6 months by 24.3 and 10.5%, respectively. Maximal flow rate (Qmax) was significantly improved in the dibenyline and combination groups but not in the finasteride group at 3 months. At 6 months a significant increase in Qmax was noted in all groups with a mean increase of 1.4-1.8 ml/s. The quality of life after treatment was satisfactory in 71.9% of the dibenyline group, 70.4% of the finasteride group and 83.1% of the combination group. Side effects were higher in the dibenyline than the finasteride or combination group. The dropout rate was higher in the dibenyline group (15.5%) than in the finasteride (7.5%) and combination (4.6%) groups. After 6 months of treatment, some of the patients discontinued medication and symptom relapse was noted in 92.6% of the dibenyline group, 57.6% of the finasteride group, and 71% of the combination group. CONCLUSIONS: Medical treatment is effective in treating symptomatic BPH. Combination dibenyline and finasteride provides a weak synergistic clinical effect without additive side effects.

Adrenergic alpha-Antagonists↗

Finasteride: a long-term follow-up in the treatment of recurrent hematuria associated with benign prostatic hyperplasia.

OBJECTIVES: To assess the effectiveness and long-term results after finasteride treatment of recurrent hematuria associated with benign prostatic hyperplasia (BPH). MATERIALS AND METHODS: The study comprised 80 patients, aged 62-86 (mean 74) years, of whom 50 received finasteride 5 mg once daily for 4 years and 30 were used as controls. Patients with malignancy, severe hepatic or renal failure and hematologic disorders were excluded. Patients were divided into 3 groups according to the severity of hematuria (minor, moderate, severe). All patients were followed up at 3, 12, 24 and 48 months. RESULTS: The follow-up ranged from 8 to 48 (mean 22) months in the finasteride group and 3-42 (mean 23) months in the control group. Hematuria recurrence rates were 6/50 (12%) and 23/30 (77%) in the finasteride and control groups, respectively. Surgical treatment was needed in 6 patients of the finasteride group and 19 of the control group. Patients with minor hematuria experienced no recurrence of symptoms in the finasteride group in contrast to 13 of 17 patients in the control group. For the patients with moderate hematuria, recurrence of symptoms was observed in 3 of 13 in the finasteride group and 3 of 5 in the control group. Three of six patients with severe hematuria had a recurrence of symptoms after finasteride treatment in contrast to 7 of 8 in the control group. CONCLUSION: Finasteride has proved to be a safe, well tolerable and effective medication in reducing or preventing recurrent hematuria related to BPH.

Aged↗

Apoptotic and proliferative index after Alpha-1-adrenoceptor antagonist and/or finasteride treatment in benign prostatic hyperplasia.

INTRODUCTION: The induction of apoptosis has emerged as a potential target for optimization of the medical management of benign prostatic hyperplasia (BPH), recently. The influence of alpha1-adrenoceptor antagonist (alpha1-ARA), 5-alpha reductase inhibitor and their combination on prostatic cell apoptotic and proliferative indices of benign hyperplastic prostate gland were investigated. MATERIALS AND METHODS: A total of 49 male patients with BPH (mean age: 66.5 years) treated with alpha1-ARA and/or finasteride were retrospectively evaluated. Patients treated with alpha1-ARA (doxazosin n = 12 and terazosin n = 10), finasteride (n = 9) and combination of finasteride and alpha1-ARA (n = 9) were enrolled in the study. Primary antibodies were Ki-67 and proliferating cell nuclear antigen for the evaluation of proliferation in prostate stromal and epithelial cells. In situ apoptotic DNA fragmentation was evaluated using TUNEL assay. RESULTS: All treatment groups had no significant changes in the rate of prostate stromal and epithelial cell proliferation. Epithelial apoptotic index (AI) was not statistically significant for finasteride vs. alpha1- ARA, alpha1-ARA vs. finasteride + alpha1-ARA and finasteride + alpha1-ARA vs. finasteride groups. While alpha1-ARA was more effective than finasteride on stromal apoptosis, alpha1-ARA-induced stromal apoptosis was not significantly different from alpha1-ARA plus finasteirde treatment. CONCLUSION: Not only androgen variabilities but also alterations in sympathetic neurotransmission with age could have important implications for pathophysiological prostate growth. The combination of finasteride and alpha1-ARA is not superior to alpha1-ARA therapy with their similar epithelial and stromal apoptotic effects with unaffected cell proliferation.

Adrenergic alpha-Antagonists↗

Effects of finasteride, a 5 alpha-reductase inhibitor, on circulating androgens and gonadotropin secretion in hirsute women.

An oral 5-mg dose of finasteride, a 5 alpha-reductase inhibitor, was administered for 3 months to 10 hirsute women to determine the effect on gonadotropin secretion, on basal and stimulated androgen secretion, and on hair growth. Hair growth was assessed by the Ferriman-Gallwey score. All of the above determinations were evaluated before and after 1 and/or 3 months of finasteride treatment. Basal and GnRH-stimulated gonadotropin secretions were not affected. Indeed, finasteride did not modify the pulsatility of LH secretion. No change was seen in estradiol, PRL, free testosterone, androstenedione, dehydroepiandrosterone sulfate, and sex hormone-binding globulin concentrations. Serum concentrations of cortisol (F) were significantly reduced after 1 month of finasteride treatment. The F levels returned to pretreatment levels after 3 months. Plasma levels of dihydrotestosterone and 3 alpha-androstanediol glucuronide significantly decreased during finasteride treatment. A significant increase in testosterone concentrations was observed after 3 months. Finasteride did not modify the responses of testosterone, androstenedione, and dehydroepiandrosterone sulfate to ACTH-(1-24) injection. Conversely, finasteride blunted the F response to corticotropin stimulation. Three months of finasteride treatment significantly decreased the Ferriman-Gallwey score. In conclusion, finasteride significantly decreased dihydrotestosterone and hair growth in hirsute women without negatively affecting gonadotropin secretion.

5-alpha Reductase Inhibitors↗