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Effects of finasteride on health-related quality of life in men with symptomatic benign prostatic hyperplasia. Finasteride Study Group.

The effects of urinary symptoms on health-related quality of life (HRQL) are important in therapeutic decision making. Few have evaluated the treatment effects on HRQL in men with benign prostatic hyperplasia (BPH), even though increased urinary symptoms are associated with greater worry, bother, and interference with living activities. We report on patient assessments of such disease-specific measures as well as general HRQL measures from two placebo-controlled clinical trials of finasteride in the treatment of symptomatic BPH. Patients treated with finasteride appeared to have greater improvement than placebo-treated patients in disease-specific measures and in patient global assessment. The treated group appeared to have a greater mean increase in sexual domain scores. As expected, general measures (health rating, life satisfaction, ladder of life) changed little. Thus, treatment with finasteride appears to reduce bother, worry, and activity interference due to symptoms but in a small percentage of men may lead to slightly reduced sexual function.

Aged↗

Finasteride for the treatment and control of benign prostatic hyperplasia: summary of phase III controlled studies. The Finasteride Study Group.

The efficacy and safety profiles of finasteride were tested in 1,645 patients with benign prostatic hyperplasia (BPH) over a 12-month period. The following effects were observed: (1) a 60-80% reduction in serum dihydrotestosterone levels; (2) a 20% reduction in prostate volume; (3) significant increases in the maximum urinary flow rate compared with placebo; and (4) significant improvement in urinary symptoms, particularly obstructive symptoms. All effects were well maintained for the entire duration of the study. Finasteride had a good safety profile and was well tolerated.

Aged↗

Identification of human cytochrome P450 isozymes responsible for the in vitro oxidative metabolism of finasteride.

Finasteride, a prescription drug for the treatment of benign prostatic hypertrophy and alleviation of symptoms associated with benign prostatic hypertrophy and alleviation of symptoms associated with benign prostatic hypertrophy, has been shown to be metabolized in rat hepatic microsomes by hydroxylation at the t-butyl group (omega-OH finasteride), followed by further oxidation to the corresponding acid (omega-oic acid finasteride), with omega-aldehyde finasteride as an intermediate. In this study, we identified specific human cytochrome P450 (CYP) isozyme(s) involved in the in vitro metabolism of [14C]finasteride using CYP isozyme-selective inhibitors and microsomes containing specific recombinant human CYP isozymes (expressed in human AHH-1 TK+/-cells). Each of the three steps of the oxidative pathway was examined separately by using [14C]finasteride and its consecutive metabolites (omega-OH finasteride and omega-aldehyde finasteride) as substrates, and human liver microsomes or expressed recombinant CYP isozymes as the enzyme source. Gestodene, a mechanism-based inhibitor of CYP3A isozymes, showed a concentration-dependent inhibition of the oxidative metabolism of [14C]finasteride. In addition, the respective omega-OH finasteride and omega-oic acid finasteride metabolites were generated only by microsomes containing recombinant CYP3A4, but not the other isozymes (CYP1A1, CYP2B6, CYP2C8, CYP2C9, CYP2D6, and CYP2E1). Similar results were obtained for the oxidation of omega-OH finasteride to omega-aldehyde finasteride, suggesting that human CYP3A isozymes were involved in the oxidation of omega-OH finasteride. When omega-aldehyde finasteride was incubated with human liver microsomes in the presence of an NADPH regenerating system, both the omega-oic acid finasteride and the omega-OH finasteride were detected, suggesting that oxidative and reductive reactions were occurring simultaneously and that they were NADPH- or NADP-dependent. Inhibitors of CYP3A isozymes inhibited the oxidation of omega-aldehyde finasteride in a concentration-dependent manner; an increase in the reduction was also observed, presumably caused by inhibition of the competitive oxidative reaction. Other selective CYP inhibitors for CYP1A1/2 (alpha-naphthoflavone), CYP2C8-10 (sulfaphenazole), CYP2D6 (quinidine), and CYP2E1 (diallylsulfone) showed minor or no effects on both reactions. Consistent with these results, only microsomes containing human recombinant CYP3A4 catalyzed the oxidation of omega-aldehyde finasteride to omega-oic acid finasteride. These results indicate that the oxidation of omega-aldehyde finasteride was NADPH-dependent and was mediated at least in part by CYP3A4. In addition, NAD-dependent enzymes in cytosolic, microsomal, and mitochondrial fractions were capable of oxidizing omega-aldehyde finasteride to omega-oic acid finasteride. Other cellular fractions, particularly mitochondria, were shown to convert finasteride to omega-oic acid finasteride in a similar fashion.

5-alpha Reductase Inhibitors↗

Clinical pharmacokinetics and pharmacodynamics of finasteride.

Finasteride is a potent 5 alpha-reductase inhibitor that has shown limited success in men treated for benign prostatic hyperplasia (success is defined as a decrease in the symptoms associated with urinary tract obstruction, and as increases in the urinary flow rate). 5 alpha-reductase is necessary for the prostatic conversion of testosterone to dihydrotesterone (DHT), the specific steroid that stimulates prostate transitional zone growth. Finasteride reduces the size of the prostate gland by 20%, but this does not correlate well with improvement in symptoms. Finasteride is well absorbed after oral administration and, while the rate of absorption may be slowed postprandially, the presence of food has no effect on the total bioavailability. Finasteride is widely distributed, but since its pharmacological effects are very specific to inhibition of 5 alpha-reductase, and since only the prostate gland, the scalp, and the genital skin contain high concentrations of this enzyme, few adverse reactions will be seen in other organ systems. Finasteride undergoes extensive hepatic metabolism to essentially inactive metabolites, which are eliminated through the bile and urine. The terminal elimination half-life (t1/2z) is 4.7 to 7.1 hours; but despite this, slow accumulation occurs with multiple doses. Values of t1/2z are higher in elderly men, but no dosage adjustments are necessary. Likewise, no dosage adjustments are necessary for patients with renal dysfunction, since the metabolites which accumulate are relatively inactive and well tolerated, and because greater faecal excretion of the metabolites occurs in these patients. The effect of hepatic dysfunction on the metabolism of finasteride is unknown. Therapeutic doses of finasteride produce a rapid and pronounced effect in reducing both plasma and prostate tissue levels of DHT. Doses below 0.5 mg/day do not produce much suppression of DHT levels, and doses above 5 mg/day have little additional benefit. A single dose of finasteride suppresses serum DHT levels for up to 4 days, longer than would be expected from the serum terminal elimination half-life (t1/2z) of the drug: this is probably due to the high affinity that finasteride has for the 5 alpha-reductase enzyme. Serum testosterone levels increase in patients receiving finasteride, but are not normally outside the upper limits of the normal range. Serum prostate-specific antigen (PSA) levels decrease with finasteride administration; the baseline for investigation of prostate cancer with elevated PSA levels should be one-half of the normal range. In responders to finasteride, the prostate gland shrinks in volume by about 20%, urinary flow rate improves by approximately 3 ml/s, and symptoms are relieved. The response to finasteride appears to be maximal at doses of 5 mg/day. For most men receiving finasteride, these effects will persist for at least the 5 years that long term studies have been conducted. Serum DHT levels increase again when finasteride therapy is discontinued, probably resulting in the return of the hyperplasia, decreased urine flow and obstructive symptoms. Finasteride is well tolerated, with loss of libido and sexual potency being the most commonly reported adverse reactions. No drug interactions with finasteride have been reported.

Drug Interactions↗

Long-term treatment with finasteride in men with symptomatic benign prostatic hyperplasia: 10-year follow-up.

OBJECTIVES: To evaluate the safety and efficacy of finasteride 5 mg during a 10-year period in men with enlarged prostates from a single center who participated in the double-blind and extension phases of the multicenter, Phase III, North American benign prostatic hyperplasia (BPH) trial. It is important that the long-term safety and efficacy of drugs intended for chronic administration in men with BPH be well understood. METHODS: The Phase III North American BPH trial involved a 1-year, placebo-controlled, double-blind study, followed by a 5-year open extension with finasteride 5 mg/day. The trial enrolled men with symptomatic BPH, an enlarged prostate on digital rectal examination, and no evidence of prostate cancer. Of the 46 patients originally enrolled from our institution, 43 were randomized to receive finasteride or placebo, of whom 41 (95%) completed the double-blind study and entered the 5-year extension. Thirty (73%) of these 41 patients completed the 5-year extension. Patients continued to be followed up by their physicians for an additional 5 years, for a total follow-up of at least 10 years. RESULTS: Twenty-four (56%) of the original 43 patients randomized to finasteride or placebo were judged as successfully treated during the 10-year finasteride follow-up (17 patients taking finasteride alone at 10 years and 7 patients who were taking finasteride alone when they discontinued during the 10-year follow-up for reasons not related to finasteride treatment). Altogether, 22 (51%) of the original 43 randomized patients continued finasteride treatment at 10 years (17 taking finasteride alone, 4 taking finasteride plus an alpha-blocker, and 1 taking finasteride for treatment of hematuria). Finasteride was well tolerated, with no new adverse experiences occurring with increasing duration of exposure to the drug. CONCLUSIONS: This long-term follow-up study has demonstrated that appropriately selected patients with symptomatic BPH and enlarged prostates are likely to have a long-term response to taking finasteride 5 mg daily.

5-alpha Reductase Inhibitors↗

Finasteride: an update of its use in the management of symptomatic benign prostatic hyperplasia.

UNLABELLED: Finasteride inhibits type 25alpha-reductase activity, significantly reducing dihydrotestosterone levels. Consequent reductions in prostate volume, increases in urinary flow rates and improvements in symptoms compared with placebo have been observed in trials of up to 4 years' duration and in noncomparative extensions (for up to 6 years). Results from the 4-year placebo-controlled PLESS trial show finasteride to significantly reduce the risk of benign prostatic hypertrophy (BPH)-related acute urinary retention and the requirement for surgical intervention. Finasteride has significantly greater efficacy in patients with a large prostate (> or = 40 ml) than in patients with a small prostate. However, the predictive value of prostate size has been questioned. Results of an earlier comparative 1-year trial show terazosin monotherapy and terazosin plus finasteride therapy to be significantly more effective than both finasteride monotherapy and placebo in reducing symptom scores and improving maximum urinary flow rates. Prostatic volume was significantly reduced by finasteride monotherapy and combination therapy only. The overall efficacy of finasteride in patients with mild to moderate symptomatic BPH tended to be greater than that of serenoa repens (Permixon) in a 6-month trial. A US cost analysis model indicates that finasteride and terazosin are less expensive than transurethral resection of the prostate (TURP) during the first 2 years of initiation. Canadian cost-effectiveness and cost-utility analyses using decision analysis modelling have shown primary intervention with finasteride to provide more quality-adjusted life years (QALYs) at lesser cost than watchful waiting or TURP in patients with moderate symptoms who receive the drug for < or = 3 years and < or = 14 years, respectively, but fewer QALYs at a higher cost in patients with severe symptoms needing therapy for > or = 4 years. Confirmatory prospective economic studies are required. Finasteride appears to improve overall quality of life to a similar extent to serenoa repens; patient satisfaction appears similar with finasteride and TURP. Finasteride is generally well tolerated. Most commonly reported adverse effects are sexually related (1 to 2.1 %). Gynaecomastia has been reported in 0.4% of patients. CONCLUSIONS: Despite modest improvements in maximum urinary flow rates and symptom scores, finasteride is a first-line treatment option in those with moderate uncomplicated BPH, especially in patients with a large prostate (> or = 40 ml). It is also an option in patients with more severe symptoms who are unable or unwilling to undergo surgery and in those awaiting surgery. Importantly, finasteride appears to reduce disease progression, significantly decreasing the incidence of acute urinary retention and the requirement for surgical intervention; to date, no other pharmacological agent has been shown to reduce these outcomes.

Controlled Clinical Trials as Topic↗

Efficacy, tolerability, and effect on health-related quality of life of finasteride versus placebo in men with symptomatic benign prostatic hyperplasia: a community based study. CUSP Investigators. Community based study of Proscar.

This study sought to assess the efficacy, tolerability, and effect of finasteride on health-related quality of life (HRQL) in a diverse population of men with moderate-to-severe symptomatic benign prostatic hyperplasia (BPH). This double-blind study evaluated finasteride and placebo for 12 months in 2342 men with BPH (16.2% black, 14.5% Hispanic, 69.3% Caucasian/other) in a community-based setting. At 3-month intervals, urinary symptoms were measured by use of the American Urologic Association symptom index. HRQL was assessed by use of the BPH impact index (BII), which evaluated degree of bother, worry, physical discomfort, and restriction in activities as a result of urinary symptoms. Additional questions regarding activities of living were administered, and global assessments of change in urologic status were performed by both patients and investigators. Compared with placebo, patients treated with finasteride had a statistically significant decrease in symptom scores when first measured at month 3. Symptom scores continued to improve in finasteride-treated patients throughout the study; at month 12, the mean decrease in symptom scores in the finasteride-treated patients was -4.8 compared with -3.4 for placebo patients ( P = 0.0001). Statistically significant differences in favor of finasteride also were noted at month 12 on the BII (P = 0.0465), and finasteride-treated patients experienced less interference with activities of living (P = 0.0518). Patient and investigator global assessments of urologic status showed that significantly more patients in the finasteride group considered themselves improved and were considered improved by investigators at month 12 (P = 0.000). Finasteride was generally well tolerated. The incidence of drug-related sexual adverse experiences was significantly higher in the finasteride group (P = 0.000), but led to withdrawal in only 1.5% of patients. The demonstrated efficacy and tolerability of finasteride in reducing symptoms and improving quality of life confirm observations of previous trials and make finasteride a highly desirable treatment option for many men with symptomatic BPH.

Aged↗

Changes in hair weight in men with androgenetic alopecia after treatment with finasteride (1 mg daily): three- and 4-year results.

BACKGROUND: We previously reported the effects of finasteride on scalp hair weight and count over a 2-year period in men with androgenetic alopecia (AGA). OBJECTIVE: Our purpose was to evaluate the effects of finasteride on hair weight and count over 4 years in men with AGA. METHODS: Men with AGA were randomized to receive finasteride (1 mg/d) or placebo for 192 weeks. Results of the second (weeks 96-144) and third (weeks 144-192) extension periods are reported. RESULTS: Finasteride increased hair weight at 144 and 192 weeks (week 192: finasteride, 21.6% increase from baseline; placebo, 24.5% decrease from baseline; net increase in hair weight for finasteride vs placebo = 46.0%, P < .001). Hair count also increased with finasteride at 144 and 192 weeks (week 192: finasteride, 7.2% increase from baseline; placebo, 13.0% decrease from baseline; net increase in hair count for finasteride vs placebo = 20.3%, P < .05). Finasteride was generally well tolerated. LIMITATIONS: Because this study was extended from its original 48-week duration to nearly 4 years, the sample size available for analysis decreased with time. CONCLUSION: Long-term finasteride treatment led to sustained improvement in hair weight compared with placebo. Hair weight increased to a larger extent than hair count, implying that factors other than the number of hairs, such as increased growth rate (length) and thickness of hairs, contribute to the beneficial effects of finasteride in treated men.

Adult↗

Finasteride: a review of its use in male pattern hair loss.

UNLABELLED: The 5alpha-reductase inhibitor finasteride blocks the conversion of testosterone to dihydrotestosterone (DHT), the androgen responsible for male pattern hair loss (androgenetic alopecia) in genetically predisposed men. Results of phase III clinical studies in 1879 men have shown that oral finasteride 1 mg/day promotes hair growth and prevents further hair loss in a significant proportion of men with male pattern hair loss. Evidence suggests that the improvement in hair count reported after 1 year is maintained during 2 years' treatment. In men with vertex hair loss, global photographs showed improvement in hair growth in 48% of finasteride recipients at 1 year and in 66% at 2 years compared with 7% of placebo recipients at each time point. Furthermore, hair counts in these men showed that 83% of finasteride versus 28% of placebo recipients had no further hair loss compared with baseline after 2 years. The clinical efficacy of oral finasteride has not yet been compared with that of topical minoxidil, the only other drug used clinically in patients with male pattern hair loss. Therapeutic dosages of finasteride are generally well tolerated. In phase III studies, 7.7% of patients receiving finasteride 1 mg/day compared with 7.0% of those receiving placebo reported treatment-related adverse events. The overall incidence of sexual function disorders, comprising decreased libido, ejaculation disorder and erectile dysfunction, was significantly greater in finasteride than placebo recipients (3.8 vs 2.1%). All sexual adverse events were reversed on discontinuation of therapy and many resolved in patients who continued therapy. No other drug-related events were reported with an incidence > or =1% in patients receiving finasteride. Most events were of mild to moderate severity. Oral finasteride is contraindicated in pregnant women because of the risk of hypospadias in male fetuses. CONCLUSIONS: Oral finasteride promotes scalp hair growth and prevents further hair loss in a significant proportion of men with male pattern hair loss. With its generally good tolerability profile, finasteride is a new approach to the management of this condition, for which treatment options are few. Its role relative to topical minoxidil has yet to be determined.

Alopecia↗

Combined finasteride and flutamide therapy in men with advanced prostate cancer.

OBJECTIVES: To evaluate the efficacy of combined finasteride and flutamide therapy in men with advanced prostate cancer by determining (1) the short-term tolerability of finasteride monotherapy and its effect on serum prostate-specific antigen (PSA) and hormone (testosterone, dihydrotestosterone) levels, and (2) the effects of the addition of flutamide on tolerability and on serum PSA and hormone levels. METHODS: Thirteen hormone-naive men with advanced prostate cancer (4 with Stage D2, 1 with Stage D1, 1 with Stage D0, and 7 with rising PSA levels after radical prostatectomy [n = 2] or definitive radiation therapy [n = 5]) were initially treated with 5 mg finasteride daily. Flutamide (250 mg three times a day) was added after serum PSA levels stabilized. RESULTS: Finasteride alone (median 5 weeks) had no significant effect on serum PSA levels (P > 0.05). Combined finasteride and flutamide resulted in a mean 91% reduction in serum PSA levels, with 85% of men achieving a nadir serum PSA level of less than 4.0 ng/mL and 46% achieving undetectable levels (0.2 ng/mL or less). Finasteride alone had no significant effect on serum testosterone levels (P > 0.05) but did result in a mean 74% reduction in serum dihydrotestosterone levels. Combined finasteride and flutamide resulted in a mean 56% increase in serum testosterone levels but had no additional effect on serum dihydrotestosterone levels (P > 0.05). Side effects occurred in 85% (gynecomastia or breast tenderness in 62% [8 of 13] and diarrhea in 23% [3 of 13]) of men on combined therapy. Potency was preserved in 66%. Combined finasteride and flutamide therapy was withdrawn from 15% (2 of 13) because of flutamide-induced diarrhea and from 23% (3 of 13) because of disease progression. All remaining patients (8 of 13) have serum PSA levels below 4.0 ng/mL and 4 of these 8 have undetectable levels. These men have received combined finasteride and flutamide for a median 11 months (range 6 to 19). CONCLUSIONS: Finasteride monotherapy is inadequate therapy for advanced prostate cancer, but combined finasteride and flutamide may be a reasonable alternative for men with advanced prostate cancer who refuse conventional hormone therapy.

Aged↗

Effects of in utero exposure to finasteride on androgen-dependent reproductive development in the male rat.

Finasteride is a specific inhibitor of type II 5alpha-reductase, the enzyme that converts testosterone (T) to the more potent androgen receptor agonist dihydrotestosterone (DHT). In utero exposure to androgen receptor antagonists and T biosynthesis inhibitors have induced permanent effects on androgen-sensitive end points such as anogenital distance (AGD), nipple retention, and malformations of the male rat reproductive tract. The objectives of this study were to (1) characterize the dose response of finasteride-mediated alterations in androgen-dependent developmental end points, (2) determine whether prenatal exposure to finasteride permanently decreases AGD or results in nipple retention, and (3) evaluate whether AGD or nipple retention is predictive of adverse alterations in the male reproductive tract. Pregnant Crl:CD(SD)BR rats (n=5-6/group) were gavaged with either vehicle or finasteride at 0.01, 0.1, 1.0, 10, or 100 mg/kg/day on gestation days 12 to 21. All male offspring were monitored individually until necropsy on postnatal day (PND) 90. The present study design has been used previously for other antiandrogens and is sensitive to perturbations of the male rat reproductive tract. Decreases in AGD on PND 1 and increases in areolae-nipple retention on PND 13 were significantly different from controls in all finasteride-exposed male rats. Finasteride-induced changes in AGD and nipple retention were permanent in male rats exposed to finasteride at and above 0.1 mg/kg/day. On PND 90, dorsolateral and ventral prostate lobes were absent in 21 to 24% of rats exposed to 100 mg/kg/day finasteride and weighed significantly less at and above 10 mg/kg/day. In the highest dose group, 73% of animals had ectopic testes, much higher than previously reported. The most sensitive malformation other than decreased AGD and nipple retention was the dose-dependent increase in hypospadias. The lowest observed adverse effect level (LOAEL) for finasteride-induced permanent effects in this study was 0.1 mg/kg/day based on permanent changes in AGD and nipple retention. Finasteride-induced changes in AGD and retention of nipples were highly predictive of hypospadias, ectopic testes, and prostate malformations even though some animals with retained nipples or decreased AGD may not have had other reproductive tract malformations. In summary, prenatal exposure to finasteride specifically inhibited DHT-mediated development with little to no change in T-mediated development.

Abnormalities, Drug-Induced↗

Effects of finasteride on chronic and acute ethanol withdrawal severity in the WSP and WSR selected lines.

BACKGROUND: The neurosteroid allopregnanolone (ALLO) is a potent positive modulator of gamma-aminobutyric acidA (GABAA) receptors that can modulate ethanol (EtOH) withdrawal. The 5alpha-reductase inhibitor finasteride blocks the formation of ALLO from progesterone and was recently found to reduce certain effects of EtOH. Using the Withdrawal Seizure-Prone (WSP) and Withdrawal Seizure-Resistant (WSR) selected lines, in the present studies we examined the effect of finasteride on acute and chronic EtOH withdrawal severity. METHODS: In the first two studies, male WSP and WSR mice were exposed to 72-hr EtOH vapor or air and received four injections of finasteride (50 mg/kg intraperitoneal (IP) or vehicle 24 hr before and each day of the vapor exposure. After removal from the inhalation chamber, mice were scored for handling-induced convulsions (HICs) hourly for 12 hr and then again at 24 hr (study 1) or were tested on the elevated plus maze at 24 hr after removal from the inhalation chamber (study 2). In the third experiment, mice were pretreated with finasteride or vehicle 24 hr before an acute dose of EtOH (4 g/kg ip) or saline and then were tested for HICs as in the chronic study. RESULTS: In both chronic EtOH studies, finasteride pretreatment reduced EtOH withdrawal severity, measured by HICs, and anxiety-related behavior, but only in the WSP selected line. However, finasteride pretreatment also significantly decreased blood EtOH concentration on the initiation of withdrawal in both chronic EtOH studies in WSP and WSR mice. In contrast, pretreatment with finasteride slightly enhanced acute EtOH withdrawal severity in WSP mice, whereas there was no effect of finasteride or EtOH injection on HICs in WSR mice. CONCLUSIONS: Collectively, these findings indicate that the WSP line is more sensitive than the WSR line to the modulatory effects of finasteride in terms of both chronic and acute EtOH withdrawal severity. The differential effect of finasteride on acute versus chronic EtOH withdrawal severity may result from an indirect effect of finasteride on EtOH pharmacokinetics in the chronic paradigm.

Alcohol Withdrawal Seizures↗

Comparison of percent free prostate-specific antigen levels in men with benign prostatic hyperplasia treated with finasteride, terazosin, or watchful waiting.

OBJECTIVES: Finasteride is known to lower total serum prostate-specific antigen (PSA) levels by approximately 50%. Terazosin is thought to have little or no effect on serum PSA concentration. The objective of our study was to determine the effect of finasteride and terazosin on serum total and serum free PSA levels and the ratio of free to total PSA. METHODS: We identified 69 men with symptomatic benign prostatic hyperplasia (BPH) who had been receiving 5 mg/day (n = 33) of finasteride or 2 to 5 mg/day (n = 14) of terazosin or no therapy ("watchful waiting") (n = 22). The three groups were compared with respect to pretreatment total serum PSA levels and post-treatment total, free, and percent free serum PSA levels. RESULTS: Median (+/- semi-interquartile range [SIR]) pretreatment total serum PSA levels (ng/mL) were not significantly different in men taking finasteride (2.8 +/- 1.9), terazosin (2.2 +/- 2.5), or undergoing watchful waiting (5.5 +/- 1.4) (P = 0.12). The median (+/- SIR) post-treatment total serum PSA levels (ng/mL) were significantly lower in the finasteride group (1.1 +/- 1) when compared with the terazosin (2.5 +/- 1.5) or watchful waiting (4.3 +/- 2.8) groups (P = 0.016). Only the finasteride group had significantly lower post-treatment total serum PSA levels compared with pretreatment levels. The median (+/- SIR) post-treatment free PSA levels were significantly lower in the finasteride group (0.26 +/- 0.16) compared with the terazosin (0.54 +/- 0.5) and watchful waiting (0.85 +/- 0.5) groups (P = 0.0015). However, the median (+/- SIR) percent free PSA was not significantly different in the finasteride (23 +/- 6), terazosin (22 +/- 4), and watchful waiting (25 +/- 5) groups (P = 0.66). CONCLUSIONS: Finasteride appears to lower total and free PSA levels equally in men with BPH and does not appear to change the ratio of free to total serum PSA. Terazosin does not appear to alter total or free serum PSA levels in men with BPH. The percent free PSA could potentially be used to screen for prostate cancer in men taking finasteride. Prospective studies are needed to further evaluate this issue.

Adrenergic alpha-Antagonists↗

The effect of finasteride on the prostate gland in men with elevated serum prostate-specific antigen levels.

Prostate cancer is a disease associated with androgens. It has been hypothesized that reducing the conversion of testosterone (T) to dihydrotestosterone (DHT) in the prostate by the use of the drug finasteride, a 5alpha-reductase inhibitor, will reduce the incidence of prostate cancer. We investigated the chemopreventive potential of finasteride by evaluating its effect on the prostate gland of men with elevated serum prostate-specific antigen (PSA). Fifty-two men with elevated PSA and prostate sextant biopsies negative for cancer were randomized to receive finasteride 5 mg day(-1) (27 patients) or no medication (25 patients) for 12 months and were rebiopsied at 12 months. The biopsies were evaluated for the presence of cancer, the proportion of glandular and hyperplastic tissue, and the presence of high-grade prostatic intraepithelial neoplasia (PIN). Epithelial proliferation was assessed in the prestudy and 12-month biopsies by immunohistochemistry using antibody to proliferating cell nuclear antigen (PCNA). Serum blood samples were drawn at baseline and after 1, 3, 6 and 12 months of study. In the control group, serum levels of PSA and T were unchanged throughout the 12 months. In the finasteride group, PSA decreased 48% (P < 0.001), DHT decreased 67% (P < 0.001) and T increased 21% (P < 0.001). Histological evaluation of prestudy and 12-month biopsy specimens revealed that the finasteride group had a 30% reduction in the percentage of hyperplastic epithelial tissue (P = 0.002), although this decrease was not statistically significantly different between the finasteride and control groups (P = 0.11). In patients with PIN on prestudy biopsy, no change occurred in the PIN lesions with finasteride treatment. Finasteride also had no effect on the proliferation index of prostatic epithelial cells. Of the 27 patients treated with finasteride, eight (30%) had adenocarcinoma of the prostate detected on the 12-month biopsy, compared with one (4%) of the control patients (P = 0.025). In the treatment group, six cancers occurred in the eight patients with PIN on the prestudy biopsy; in the observation group no cancers were detected in the five patients with PIN on the prestudy biopsy (P = 0.021). Two cancers occurred in the 19 men in the treatment group with no evidence of PIN on the prestudy biopsy, compared with one cancer in the 20 men in the observation group with no evidence of PIN on the prestudy biopsy (P = 0.60). This study, using a novel model for evaluating short-term efficacy of chemopreventive or therapeutic agents in men at high risk of prostate cancer, provides little evidence that finasteride is an effective chemopreventive agent for prostate cancer in men with elevated PSA.

Adenocarcinoma↗

Finasteride inhibits 5 alpha-reductase activity in human dermal fibroblasts: prediction of its therapeutic application in androgen-related skin diseases.

BACKGROUND: The potential role of finasteride in treating androgen related skin disorders was investigated. METHODS: Pooled human dermal fibroblasts were used to assess the effect of finasteride on the 5 alpha-reductase activity in skin tissue. Vmax and Km were estimated in the presence of 0, 10, and 200 nM finasteride. RESULTS: Vmax values remain constant near 1.20 pmol/mg protein/h in the presence of increasing concentrations of finasteride; however, apparent Km increases from 0.27 nM at 0 nM finasteride to 0.31 nM and 0.44 nM at 10 nM and 200 nM finasteride, respectively. This suggests that finasteride competes with testosterone and has a high affinity for same binding site of the 5 alpha-reductase enzyme. Apparent Ki was estimated at 282 nM, indicating that a high concentration of finasteride is required to significantly suppress the enzyme activity. CONCLUSIONS: This study confirms that finasteride inhibits the conversion of testosterone to dihydrotestosterone in human reticular dermal fibroblasts. Finasteride may have therapeutic potential in treating skin disorders influenced by the action of dihydrotestosterone.

Androgen Antagonists↗

Sustained-release alfuzosin, finasteride and the combination of both in the treatment of benign prostatic hyperplasia. European ALFIN Study Group.

OBJECTIVES: To assess the additive benefit of combining an alpha1-blocker and a 5alpha-reductase inhibitor. METHODS: This European, randomized, double-blind, multicenter trial involved 1.051 patients with lower urinary tract symptoms related to benign prostatic hyperplasia. Patients received sustained release (SR) alfuzosin (n = 358), a selective alpha1-blocker given at a dose of 5 mg twice daily without dose titration; finasteride (n = 344), 5 mg once daily, or both drugs (n = 349), for 6 months. Primary efficacy criteria were symptomatic improvement (International Prostate Symptom Score: I-PSS) and maximum flow rate (Qmax). Safety was assessed by monitoring adverse events. RESULTS: Symptomatic improvement was significantly higher from the 1st month of treatment with SR alfuzosin, alone or in combination; mean changes in I-PSS versus baseline at end-point were -6.3 and -6.1, respectively, compared with -5.2 with finasteride alone (SR alfuzosin vs. finasteride, p = 0.01; combination vs. finasteride, p = 0.03). The percentages of patients with a decrease in I-PSS of at least 50% were 43, 42 and 33% for SR alfuzosin, the combination and finasteride, respectively (SR alfuzosin vs. finasteride, p = 0.008; combination vs. finasteride, p = 0.009). In the overall population, increases in Qmax were greater with SR alfuzosin and the combination, compared with finasteride alone after 1 month of therapy, but changes at end-point were similar in the three treatment groups. In those 47% of patients likely to be obstructed (baseline Qmax <10 ml/s), however, mean increases in Qmax were significantly higher with SR alfuzosin, alone or in combination, whatever the visit. Finasteride, alone or in combination, significantly impaired sexual function. The incidence of postural symptoms was low and similar in the three treatment groups. CONCLUSION: In this 6-month trial, SR alfuzosin was more effective than finasteride, with no additional benefit in combining both drugs.

5-alpha Reductase Inhibitors↗

The effectiveness of reducing the daily dose of finasteride in men with benign prostatic hyperplasia.

BACKGROUND: Finasteride, a 5 alpha reductase inhibitor, is an established treatment for benign prostatic hyperplasia. The recommended dosage is 5 mg a day, however case reports have show effectiveness with lower doses. The objective of the current study was to determine in men with benign prostatic hyperplasia, previously treated for at least one year with finasteride 5 mg daily, if they will maintain subjective and objective improvements in urinary obstruction when treated with 2.5 mg of finasteride daily for one year. METHODS: In an open label, prospective study, 40 men with benign prostatic hyperplasia, previously treated for at least one year with 5 mg of finasteride, took 2.5 mg of finasteride daily for one year. Measurements included AUA symptom score, maximum flow rate, voided volume and PSA. RESULTS: There were no significant changes in maximum flow rate, voided volume, or AUA symptom score after one year of finasteride 2.5 mg daily therapy. PSA increased significantly, p <.01, after one year of finasteride 2.5 mg daily, 2.0 +1.4 ng/ml, when compared to finasteride 5 mg daily, 1.4+ 1.0 ng/ml. CONCLUSIONS: The daily dose of finasteride can be reduced to 2.5 mg daily without significant effect on subjective and objective measures of urinary obstruction. Although statistically significant increases in PSA are noted when reducing the daily finasteride dose from 5 mg to 2.5 mg, the clinical significance of a mean.6 ng/ml increase in PSA is questionable.

Finasteride↗

Chronic treatment with finasteride daily does not affect spermatogenesis or semen production in young men.

PURPOSE: Finasteride, an oral type 2, 5alpha-reductase inhibitor, is used in 1 mg. daily doses for the treatment of male pattern hair loss. A dose of 5 mg. finasteride daily reduces ejaculate volume by approximately 25%, and reduces prostate volume by approximately 20% and serum prostate specific antigen (PSA) by approximately 50% in men with benign prostatic hyperplasia. To our knowledge no data exist on the effect of 1 mg. finasteride daily on ejaculate volume or other semen parameters, or on the prostate in young men. Therefore, we studied the potential effect and reversibility of effect of 1 mg. finasteride daily on spermatogenesis, semen production, the prostate and serum PSA in young men. MATERIALS AND METHODS: In this double-blind, placebo controlled multicenter study 181 men 19 to 41 years old were randomized to receive 1 mg. finasteride or placebo for 48 weeks followed by a 60-week off-drug period. Of the 181 men 79 were included in a subset for the collection and analysis of sequential semen samples. RESULTS: There were no significant effects of 1 mg. finasteride on sperm concentration, total sperm per ejaculate, sperm motility or morphology. Ejaculate volume in subjects on finasteride decreased 0.3 ml. (-11%) compared to a decrease of 0.2 ml. (-8%) for placebo, with a median between treatment group difference of -0.03 ml. (1%, 90% confidence interval -10.4 to 13.1, p = 0.915). There were significant but small decreases in prostate volume (-2.6%) and serum PSA (-0.2 ng./ml.) in the finasteride group, which reversed on discontinuation of the drug. CONCLUSIONS: Treatment with 1 mg. finasteride daily for 48 weeks did not affect spermatogenesis or semen production in young men. The effects of 1 mg. finasteride daily on prostate volume and serum PSA in young men without benign prostatic hyperplasia were small and reversible on discontinuation of the drug.

Adult↗