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Biomedical subjects

B Candas

Publications and source records attributed to B Candas.

At least 19 recordsLinked to original sources

Effect of dehydroepiandrosterone and the antiestrogen EM-800 on growth of human ZR-75-1 breast cancer xenografts.

BACKGROUND: In the mammary gland, androgens are formed from the precursor steroid dehydroepiandrosterone (DHEA). Clinical evidence indicates that androgens have inhibitory effects on breast cancer. Estrogens, on the other hand, stimulate the development and growth of breast cancer. We studied the effect of DHEA alone or in combination with the newly described pure antiestrogen EM-800 on the growth of subcutaneous tumor xenografts formed by the human breast cancer cell line ZR-75-1 in ovariectomized nude mice. METHODS: Immediately after ovariectomy, mice received daily subcutaneous injections of 0.5 microg estrone (E1) (an estrogenic hormone). EM-800 (15, 50, or 100 microg) was given orally once daily. DHEA was administered percutaneously twice daily (total dose of 0.3, 1.0, or 3.0 mg) to the dorsal skin either alone or in combination with a 15-microg daily oral dose of EM-800. Changes in tumor size in response to the treatments (in relation to measurements made on the first day of treatment) were assessed periodically. At the end of the experiments, tumors were dissected and weighed. RESULTS: A 9.4-fold increase in tumor size in 9.5 months was observed in ovariectomized mice receiving E1 alone. Administration of 15, 50, or 100 microg EM-800 in E1-supplemented mice led to inhibitions of 87.5%, 93.5%, and 94.0% in tumor size, respectively. DHEA, on the other hand, at doses of 0.3, 1.0, or 3.0 mg inhibited terminal tumor size by 50.4%, 76.8%, and 80.0%, respectively. Comparable inhibitions in tumor size were obtained with a daily 15-microg oral dose of EM-800 with or without different doses of percutaneous DHEA. CONCLUSIONS: DHEA and EM-800 independently suppressed the growth of E1-stimulated ZR-75-1 xenograft tumors in nude mice. Administration of DHEA at the defined doses did not alter the inhibitory effect of EM-800.

Administration, Cutaneous

Comparison of the effects of the antiestrogens EM-800 and tamoxifen on the growth of human breast ZR-75-1 cancer xenografts in nude mice.

Although estrone supplementation in ovariectomized (OVX) nude mice bearing ZR-75-1 xenografts caused a 365% increase in average tumor size during the 4-month treatment period, administration of the antiestrogen EM-800 at the daily oral doses of 50, 150, or 400 microg completely prevented estrogen-stimulated tumor growth. At the same doses of tamoxifen, tumor size was inhibited to 189, 117, and 120% above pretreatment values. However, when EM-800 (150 microg/day) was added to the daily 150- and 400-microg doses of tamoxifen, final tumor size was decreased further to 12 and 38% above pretreatment values, respectively. EM-800 (400 microg daily) administered to estrone-supplemented OVX mice caused complete, partial, and stable responses in 11, 22, and 49% of estrone-stimulated tumors, respectively, whereas 19% (7 of 37) progressed. At the same dose of tamoxifen, the corresponding responses were 3% (complete response), 3% (partial response), and 25% (no change), whereas 69% (22 of 32) of tumors progressed. In the absence of estrone supplementation, tamoxifen (400 microg) alone administered to OVX mice stimulated tumor growth to 161% compared with initial size whereas the same dose of EM-800 reduced tumor size by 55%, a value superimposable to that observed in OVX control animals. The agonistic effect of tamoxifen is thus illustrated by the observation that 73% of tumors progressed when tamoxifen was administered alone to OVX animals whereas no tumor progressed with EM-800. The present data strongly suggest that at least part of the initial lack of response and resistance to tamoxifen during tamoxifen treatment in women is due to the estrogenic activity of this compound, whereas the new antiestrogen EM-800 exerts pure antagonistic action.

Analysis of Variance

Comparison of the effects of the new orally active antiestrogen EM-800 with ICI 182 780 and toremifene on estrogen-sensitive parameters in the ovariectomized mouse.

The nonsteroidal antiestrogen EM-800 is approximately 10-fold more potent than ICI 182 780, the most potent known steroidal antiestrogen, at inhibiting estrone-stimulated uterine weight in ovariectomized mice (half-maximal inhibitory daily s.c. doses of 0.2 and 2.0 microg, respectively). At maximal doses, however, both compounds lead to a similar maximal 90% inhibition of estrone-stimulated uterine weight. A 10-fold higher activity of EM-800 compared with ICI 182 780 was also observed on estrone-stimulated vaginal weight, with maximal inhibitions of 96% and 90%, respectively, achieved by the two compounds. In addition, EM-800 injected s.c. or administered orally led to a marked loss of uterine and vaginal estrogen receptor levels measured by binding assay, whereas ICI 182 780 exerted no inhibitory effect on this parameter under the experimental conditions used. Comparable effects were observed when estrogen receptor protein levels were measured by enzyme immunoassay. After oral administration, EM-800 exerted maximal 83% and 88% inhibitions of uterine and vaginal weight, respectively, whereas maximal inhibitions limited to 51% and 67% were achieved with toremifene. This limited inhibition by toremifene of the stimulatory effect of estrone on uterine and vaginal weight is probably due to the intrinsic estrogenic activity of the compound. The present data also show that the steroidal antiestrogen ICI 182 780 has less than 3% the activity of EM-800 when administered by the oral route. In fact, EM-800 administered orally is 2- to 3-fold more potent than ICI 182 780 injected s.c.

Animals

Beneficial effect of combination hormonal therapy administered prior and following external beam radiation therapy in localized prostate cancer.

PURPOSE: The aim of the present study is to investigate whether combined androgen blockade associated with radiation therapy for localized prostate cancer decreases at 12 and 24 months the rate of positive follow-up biopsies and serum PSA compared to radiation therapy alone. This is the report of an interim analysis. METHODS AND MATERIALS: One hundred and twenty patients with clinical Stage B1-T2a, B2-T2b/T2c, and C-T3/T4, adenocarcinoma of the prostate were entered in a prospective randomized study. After written informed consent, the subjects were randomly allocated between external beam radiation therapy (EBRT) alone (group 1), 3 months of neoadjuvant combination therapy (LHRH-agonist + Flutamide) prior to EBRT (group 2), and a third group receiving combination therapy 3 months before, during, and 6 months after EBRT. There is no significant difference between the three groups concerning age, stage of disease, grade of tumor, and pretreatment PSA levels. Control transrectal ultrasound (TRUS)-guided needle biopsies (one core was taken from the initial cancer site regardless of the presence or absence of TRUS abnormalities) were done 12 and 24 months after the end of EBRT. Serum PSA measurements were done on schedule visits. RESULTS: Ninety-two and 68 patients underwent biopsies at 12 and 24 months, respectively, after the end of radiation therapy. While 62% of control patients at 12 months in Group 1 disclosed residual neoplasm, only 30% and 4% showed residual disease in groups 2 and 3, respectively (p = 0.00005). When looking at 24 months, 65, 28, and 5% showed residual cancer for groups 1, 2, and 3, respectively (p = 0.00001). The PSA measurements indicate also at 12 months a difference between the three groups (p < 0.0001), except at 24 months, the difference between the group 2 and 3 is no longer significant. CONCLUSION: The preliminary analysis of this clinical trial indicates that patients treated with radiation therapy alone show a significantly higher rate of positive biopsies at 12 and 24 months after the end of radiation therapy as compared with those treated with total antiandrogen blockade (TAB) and radiation therapy. When analyzing the median PSA serum levels, we found the same advantage at 12 months, but, at the time of the analysis at 24 months, the PSA levels are not different between groups 2 and 3.

Aged

Neoadjuvant hormonal therapy: the Canadian experience.

OBJECTIVE: To assess the effect of neoadjuvant combination therapy with the antiandrogen flutamide and a luteinizing-hormone-releasing hormone (LHRH) agonist administered for 3 months before radical prostatectomy, compared with surgery alone in early stage prostate cancer on histopathologic findings at surgery and serum prostate-specific antigen (PSA). METHODS: A sample of 161 randomly screened patients diagnosed as having stage B (134 patients) or C (27 patients) prostate cancer were randomly assigned to radical prostatectomy alone or to 3 months of neoadjuvant combination therapy with the antiandrogen flutamide and an LHRH agonist before radical prostatectomy. RESULTS: Neoadjuvant combination therapy before radical prostatectomy decreased cancer-positive surgical margins from 33.8% in the control group to only 7.8%, thus leaving 92.2% of patients with negative margins at surgery. A net 54% improvement of staging was observed in favor of combination therapy. Organ-confined disease, on the other hand, increased from 49.3% to 77.8% of patients after 3 months of combination therapy, for a 57.8% increase in the incidence of organ-confined disease. No cancer was found in 6 (6.7%) prostatectomy specimens from the treated group. A close correlation was found between serum PSA at diagnosis and the stage of the disease at surgery. Upstaging increased from 30% at serum PSA values of 0 to 3.0 ng/mL up to 100% at serum PSA values above 15 ng/mL. CONCLUSIONS: Although long-term follow-up of these patients is required to determine the impact on survival, the marked influence of neoadjuvant combination therapy on the stage of the disease suggests the possibility of a major improvement in the morbidity and mortality from prostate cancer.

Adenocarcinoma

Daily dosing with flutamide or Casodex exerts maximal antiandrogenic activity.

OBJECTIVES: Because the large increase in luteinizing hormone secretion induced by flutamide in the intact rat is not found in men, we have used castrated rats and mice supplemented with androstenedione (4-dione) instead of intact animals to measure the activity of the pure antiandrogens flutamide and Casodex. METHODS: We first compared the effect of different schedules of administration of various doses of the two antiandrogens on prostate and seminal vesicle weights in the castrated rat and mice models. RESULTS: For both flutamide and Casodex, no consistent difference was found between the effects of once daily and thrice daily oral dosing in the rat. It was observed, however, that flutamide, especially at the high and therapeutically more effective doses, is about three times more potent than Casodex under both schedules of dosing. When flutamide was administered subcutaneously three times a day, twice a day, once a day, or once every second day in rats and mice, no difference was observed in the degree of inhibition achieved on prostate and seminal vesicle weights. CONCLUSIONS: The present data show that Casodex is about three times less potent than flutamide on the well-recognized parameters of androgen responsiveness in the rat, namely prostate and seminal vesicle weights. Another finding is that once daily dosing with flutamide exhibits an effectiveness comparable to thrice daily dosing; such data may have potential significance in facilitating compliance by administration of flutamide once daily instead of the current thrice daily schedule in men. Moreover, these data, if obtained in a reliable in vivo model, should be helpful in determining the choice of an appropriate dose of Casodex for the treatment of prostate cancer.

Androgen Antagonists

Effect of 12-month dehydroepiandrosterone replacement therapy on bone, vagina, and endometrium in postmenopausal women.

The effect of 12-month dehydroepiandrosterone (DHEA) replacement therapy has been evaluated in 14 60- to 70-yr-old women who received daily applications of a 10% DHEA cream. Vaginal epithelium maturation was stimulated by DHEA administration in 8 of 10 women who had a maturation value of zero at the onset of therapy, whereas a stimulatory effect was also seen in all three women who had an intermediate vaginal maturation index before therapy. The estrogenic effect of DHEA observed in the vagina was not observed in the endometrium, which remained atrophic in all women. Most interesting, the bone mineral density significantly increased at the hip from 0.744 +/- 0.021 to 0.759 +/- 0.025 g/cm2 after 12 months of treatment (P < 0.05). These changes in bone mineral density were associated with a significant 20.0% decrease (P < 0.01) in plasma bone alkaline phosphatase and a 28% decrease in the urinary hydroxyproline/creatinine ratio. A 2.1-fold increase over the control value (P < 0.01) in plasma osteocalcin was concomitantly observed. The present data describe for the first time a series of medically important beneficial effects of DHEA therapy in postmenopausal women through transformation of the precursor steroid DHEA into androgens and/or estrogens in specific peripheral intracrine tissues without significant adverse effects. The stimulatory effect on the vaginal epithelium in the absence of stimulation of the endometrium is of particular interest because it eliminates the need for progestin replacement therapy. On the other hand, the stimulatory effect on bone mineral density accompanied by an increase in serum osteocalcin, a marker of bone formation, suggests stimulation of bone formation by the androgenic action of DHEA, a finding of particular interest for both the prevention and treatment of osteoporosis.

Aged

Marked decline in serum concentrations of adrenal C19 sex steroid precursors and conjugated androgen metabolites during aging.

The present data show a dramatic decline in the circulating levels of dehydroepiandrosterone (DHEA), DHEA-sulfate (DHEA-S), androst-5-ene-3 beta,17 beta-diol (5-diol), 5-diol-sulfate, 5-diol-fatty acid esters, and androstenedione in both men and women between the ages of 20-80 yr. In the 50- to 60-yr-old group, serum DHEA decreased by 74% and 70% from its peak values in 20- to 30-yr-old men and women, respectively. the serum concentrations of the conjugated metabolites of dihydrotestosterone (DHT), namely androsterone (ADT)-G, androstane-3 alpha,17 beta-diol (3 alpha-diol-G), androstane-3 beta,17 beta-diol (3 beta-diol-G), and ADT-sulfate are the most reliable parameters of the total androgen pool in both men and women, whereas serum testosterone and DHT can be used as markers of testicular secretion in men and interstitial ovarian secretion in women. The serum concentration of these various conjugated androgen metabolites decreased by 40.8% to 72.8% between the 20- to 30-yr-old and 70- to 80-yr-old age groups in men and women, respectively, thus suggesting a parallel decrease in the total androgen pool with age. As estimated by measurement of the circulating levels of these conjugated metabolites of DHT, it is noteworthy that women produce approximately 66% of the total androgens found in men. In women, most of these androgens originate from the transformation of DHEA and DHEA-S into testosterone and DHT in peripheral intracrine tissues, whereas in men the testes and DHEA and DHEA-S provide approximately equal amounts of androgens at the age of 50-60 yr. An additional potentially highly significant observation is that the majority of the marked decline in circulating adrenal C19 steroids and their resulting androgen metabolites takes place between the age groups of 20- to 30-yr olds and 50- to 60-yr-olds, with smaller changes are observed after the age of 60 yr.

17-Hydroxysteroid Dehydrogenases

Physiological changes in dehydroepiandrosterone are not reflected by serum levels of active androgens and estrogens but of their metabolites: intracrinology.

This study analyzes in detail the serum concentration of the active androgens and estrogens, as well as a series of free and conjugated forms of their precursors and metabolites, after daily application for 2 weeks of 10 mL 20% dehydroepiandrosterone (DHEA) solution on the skin to avoid first passage through the liver. In men, DHEA administration caused 175%, 90%, 200% and 120% increases in the circulating levels of DHEA and its sulfate (DHEA-S), DHEA-fatty acid esters, and androst-5-ene-3 beta,17 beta-diol, respectively, with a return to basal values 7 days after cessation of the 14-day treatment. Serum androstenedione increased by approximately 80%, whereas serum testosterone and dihydrotestosterone (DHT) remained unchanged. In parallel with the changes in serum DHEA, the concentrations of the conjugated metabolites of DHT, namely androsterone glucuronide, androstane-3 alpha,17 beta-diol-G, and androstane-3 beta,17 beta-diol-G increased by about 75%, 50%, and 75%, respectively, whereas androsterone-sulfate increased 115%. No consistent change was observed in serum estrone (E1) or estradiol (E2) in men receiving DHEA, whereas serum E1-sulfate and E2-sulfate were slightly and inconsistently increased by about 20%, and serum cortisol and aldosterone concentrations were unaffected by DHEA administration. Almost superimposable results were obtained in women for most steroids except testosterone, which was about 50% increased during DHEA treatment. This increase corresponded to about 0.8 nM testosterone, an effect undetectable in men because they already have much higher (approximately 15 nM) basal testosterone levels. In women, the serum levels of the conjugated metabolites of DHT, namely androsterone glucuronide, androstane-3 alpha,17 beta-diol-G, androstane-3 beta,17 beta-diol-G, and androsterone-sulfate were increased by 125%, 140%, 120% and 150%, respectively. The present study demonstrates that the serum concentrations of testosterone, DHT, E1, and E2 are poor indicators of total androgenic and estrogenic activity. However, the esterified metabolites of DHT appear as reliable markers of the total androgen pool, because they directly reflect the intracrine formation of androgens in the tissues possessing the steroidogenic enzymes required to transform the inactive precursors DHEA and DHEA-S into DHT. As well demonstrated in women, who synthesize almost all their androgens from DHEA and DHEA-S, supplementation with physiological amounts of exogeneous DHEA permits the biosynthesis of androgens limited to the appropriate target tissues without leakage of significant amounts of active androgens into the circulation. This local or intracrine biosynthesis and action of androgens eliminates the inappropriate exposure of other tissues to androgens and thus minimizes the risks of undesirable masculinizing or other androgen-related side effects of DHEA.

Administration, Cutaneous

Diagnosis of advanced or noncurable prostate cancer can be practically eliminated by prostate-specific antigen.

OBJECTIVES: To determine the percentage of localized and potentially curable prostate cancers diagnosed at follow-up screening visits compared with the first screening visit. METHODS: Within the context of a prospective screening study performed in randomly chosen men aged between 45 and 80 years, up to 6-year follow-up screening visits have been performed with serum prostate-specific antigen (PSA) measurement and digital rectal examination (DRE) followed by transrectal ultrasonography of the prostate when PSA or DRE is abnormal. RESULTS: Of the 117 prostate cancers diagnosed at 14,554 annual follow-up visits, only 1 cancer (0.9%) was metastatic compared with 8% (26/322) at 8029 first visits. Moreover, 97% of the cancers detected at follow-up visits could be identified by PSA alone compared with 86% at first visit. The incidence of 0.8% per year during 15 years of screening between the ages of 55 and 70 years would diagnose localized prostate cancer in 12% of the population, a value not too different from the 10% diagnosed with prostate cancer during life-time in the absence of screening. CONCLUSIONS: The present data show that annual screening with PSA diagnoses clinically localized prostate cancer in more than 95% of cases, thus almost completely eliminating the diagnosis of metastatic prostate cancer. Moreover, the number of prostate cancers diagnosed is not significantly increased by screening.

Aged

Effect of neoadjuvant endocrine therapy (combined androgen blockade) on normal prostate and prostatic carcinoma. A randomized study.

The morphologic changes induced by neoadjuvant combination endocrine therapy were evaluated in prostatectomy specimens from patients diagnosed with localized prostate cancer. These patients participated in a prospective, randomized clinical trial investigating the effect of 3 months of combination therapy with flutamide and an LHRH agonist prior to radical prostatectomy versus radical prostatectomy alone. Ninety-six radical prostatectomy specimens processed according to the same protocol were evaluated without knowledge of prior treatment. Forty-seven patients were randomly assigned to the neoadjuvant combination therapy group and 49 to the control arm. Compared with the control group, several changes were strongly and significantly associated with exposure to neoadjuvant combination therapy. The nonmalignant prostatic tissue showed strong prominence and hyperplasia of the basal cell layer, accompanied by epithelial cell vacuolization and markedly reduced occurrence of prostatic intraepithelial neoplasia (p < 0.001) after combination therapy. Prostate cancer tissue, on the other hand, showed smaller nucleoli (p < 0.001), cell vacuolization (p < 0.001), rare intraluminal crystalloids (p < 0.001), higher Gleason grade (p < 0.001), lower prevalence of capsular penetration (p < 0.001), and less frequent invasion of the perineural spaces (p < 0.001) and surgical margins (p = 0.002). Tumor volume, was also reduced by more than 40% in the treated group (p = 0.007). The present findings show that preoperative endocrine combination therapy induces highly characteristic changes in both nonmalignant and cancerous prostatic tissue. Furthermore, following endocrine treatment, the surgical margins are less likely to be involved by cancer and capsular penetration is reduced.

Adult

Equilibrium model in an in vitro poly(ADP-ribose) turnover system.

Poly(ADP-ribose) metabolism plays an important role in numerous DNA-related functions. This homopolymer is synthesized by poly(ADP-ribose) polymerase and is degraded mainly by the poly(ADP-ribose) glycohydrolase. The activities of these two enzymes in the nucleus are closely coordinated. To better understand the interactions between these enzymes, we designed an in vitro system in which both enzymes are present at the same time. In this work, we report a model describing the synthesis and degradation of the poly(ADP-ribose) in turnover conditions. Because the half-life of the polymer in the cell is close to 1 min, we studied the very early kinetic interactions of these two enzymes.

Adenosine Diphosphate Ribose

Combination of screening and preoperative endocrine therapy: the potential for an important decrease in prostate cancer mortality.

Prostate cancer is the second cause of cancer death in men in the Western world; its medical and social impact is comparable to that of breast cancer in women. Although it is well recognized that early treatment is the only possibility for reducing the high rate of death from prostate cancer, screening and even early treatment are controversial issues due mainly to arguments based upon old literature and lack of awareness of the significant advances recently made in this field. As it is well known that surgical removal of organ-confined prostate cancer cures the disease, and it has been demonstrated that annual screening with prostate-specific antigen coupled with digital rectal examination followed, when indicated, by transrectal ultrasonography of the prostate more than doubles the proportion of organ-confined disease, screening alone offers the possibility of at least doubling the number of patients curable from prostate cancer or the potential for a cure to an estimated 45% of prostate cancer patients compared to a maximum of 20% in the absence of screening. It is important to mention that screening does not detect small and insignificant cancers, especially when random biopsies are not performed routinely. The critical volume of prostate cancer is estimated at 0.3 cm or a tumor 7.5 mm in diameter, if spherical. Such a tumor should increase serum prostate-specific antigen by 0.5 ng/mL. Contrary to the belief that screening detects cancers that are too small, the fact is that screening detects prostate cancer too late or nonorgan- or nonspecimen-confined cancer in 35-50% of cases. There is, thus, a narrow window when prostate cancer can be detected at a curable stage, and even the best available screening techniques cannot succeed in all cases. It should be mentioned that the recent improvements of the technique of radical prostatectomy have markedly improved the acceptability of surgery. Concerning the recent publicity related to watchful waiting, it is essential to indicate that all such reports support the notion that prostate cancer grows slowly, but steadily and irremediably, with increasing malignancy and risk of distant metastases and death if sufficient time is allowed. Another serious limitation of watchful waiting is that the available prognostic factors have a large margin of error and cannot predict with certainty the rate of progression of the tumor.(ABSTRACT TRUNCATED AT 400 WORDS)

Androgen Antagonists

Downstaging by combination therapy with flutamide and an LHRH agonist before radical prostatectomy.

A total of 161 patients diagnosed as having stage B (134 patients) or C (27 patients) prostate cancer were randomly assigned to radical prostatectomy alone or to 3 months of neoadjuvant combination therapy with the anti-androgen flutamide and an LHRH agonist before radical prostatectomy. Neoadjuvant combination therapy before radical prostatectomy decreased cancer positive surgical margins from 33.8% in the control group to only 7.8%, thus leaving 92.2% of patients with negative margins at surgery for a 39.2% increase in specimen confined disease. Although on average the final stage determined at histopathological examination of the surgical specimen was more advanced than predicted at initial diagnosis in 33.8% of control patients, an opposite observation was made in the group of men who received the 3 month neoadjuvant combination therapy where the final stage, instead of being more advanced, was less advanced than at diagnosis in an average of 21.1% of men for a net 54.9% improvement of staging in favour of combination therapy. On the other hand, organ confined disease increased from 49.3% to 77.8% of patients after 3 months of combination therapy, for a 57.9% increase in the incidence of organ confined disease. Although long term follow up of these patients is required to determine the impact on survival, the marked influence of neoadjuvant combination therapy on the stage of the disease suggests the possibility of a major improvement in the morbidity and mortality from prostate cancer.

Aged

An adaptive plasma glucose controller based on a nonlinear insulin/glucose model.

The design of plasma glucose controllers traditionally relies on linear approaches. The implementation of an appropriate nonlinear model of the insulin/glucose regulatory system into an adaptive controller should predict the insulin-dependent glucose removal more reliably and hence provide better control over a wide spectrum of insulin signals. A discretized form of the model leads to a two-step procedure. First, the measured plasma glucose levels associated with the exogenous glucose infusion rates are used in the estimation of the past removal rates which, in turn, can be expressed as a weighted sum of past insulin inputs and previous values of the removal rate. Parameters of the sum are adjusted on-line by a recursive method of estimation which features a prefiltering of data to account for a corrupting coloured process noise. The same equation is in turn used to predict the time course of the insulin-dependent fractional rate of glucose removal. The performance of the controller, tested in vivo in three pigs, is presented for various intravenous or subcutaneous rapid injections and staircase infusions of insulin. Plasma glucose is maintained at an average level of 99.9 +/- 8.7% of the target value (% set point +/- coefficient of variation). The controller reacts promptly to large and rapid variations in insulin action. Although control improves with the number of glucose measurements, the prediction of glucose removal allows for some flexibility in the monitoring of the plasma glucose. Sampling frequency varied from a 2 min interval during transient periods to 7 min as steady states were reached.

Algorithms

Changes in serum concentrations of conjugated and unconjugated steroids in 40- to 80-year-old men.

It is well recognized that aging in men is accompanied by a decline in the serum levels of some adrenal and testicular steroids, but little or no attention has focused on the multiple steroid metabolites that are formed by steroid-converting enzymes in target tissues. In the present study, we have examined in detail the serum concentrations of a large series of adrenal and testicular steroids and their most significant metabolites produced in intracrine peripheral tissues. The serum concentrations of 26 conjugated and unconjugated C21-, C19-, and C18-steroids were measured in 2423 men aged 40-80 yr. The serum concentrations of the major circulating adrenal C19-steroids, namely dehydroepiandrosterone (DHEA) and its sulfate (DHEA-S), androst-5-ene-3 beta, 17 beta-diol and its sulfate, and androstenedione, decreased by about 60% between the ages of 40-80 yr. The small decrease in the serum concentrations of progesterone and pregnenolone in the presence of increased levels of cortisol and markedly decreased levels of DHEA, androst-5-ene-3 beta, 17 beta-diol, and their polar metabolites suggests that adrenal 17,20-lyase is particularly affected by aging. In addition to a marked decline in the serum concentrations of adrenal C19-steroids, a smaller, but significant, decrease occurred in serum testosterone. However, serum dihydrotestosterone levels remained constant, but the glucuronidated derivatives of dihydrotestosterone metabolites (androstane-3 alpha, 17 beta-diol glucuronide, androstane-3 beta, 17 beta-diol glucuronide, and androsterone glucuronide) were reduced by 45-50%, suggesting that 5 alpha-reductase activity in peripheral tissues may show a compensatory increase during aging. Analysis of the fatty acid esters of DHEA (DHEA-FA) also revealed that these nonpolar steroids markedly decrease between 40-80 yr of age, although such a decrease in DHEA-FA levels was smaller than that in DHEA and DHEA-S, suggesting that the formation of DHEA-FA may be specifically increased during aging. In summary, the present study suggests that in contrast to the marked decline in activity of steroidogenic enzymes in the adrenals and the small decrease in the testis, the activity of the steroid-converting enzymes present in peripheral tissues does not decrease during aging. In fact, the marked decrease in DHEA formation by the adrenals leads to a decrease of about 50% in total androgens in men between the ages of 40-80 yr. Such a decrease probably affects many physiological processes during aging.

Adrenal Glands

Optimized strategy for detection of early stage, curable prostate cancer: role of prescreening with prostate-specific antigen.

In 1,002 men aged 45-80 y, 81% of the cancers detectable by serum prostate-specific antigen (PSA), digital rectal examination (DRE), and transrectal ultrasonography (TRUS) were present in a subpopulation (19% of total) identified by serum PSA above the threshold value of 3.0 micrograms/L. This study was extended to 7,350 men using serum PSA and DRE as first approach, followed by TRUS only when 1 of these 2 tests was abnormal. Because the aim of prostate cancer detection is to find cancers at an early, potentially curable stage, it is of major interest that 71.8% of evaluable cancers were clinical stage B; 8.4% and 10.7% were stages C1 and C2, respectively; only 9.2% were stage D (metastatic) at first visit while none was at stage D at follow-up visits. This study, the first performed in an unselected, unscreened population, shows that serum PSA is the most sensitive technique to identify men at high risk of having prostate cancer and that 12% more cancers can be found at first visit by doing DRE in addition to PSA. Follow-ups can be done every second year using serum PSA alone, as 97% of the cancers detected at annual follow-up by DRE + PSA were PSA+. Cancers are discovered by the present approach at an estimated cost of $2,665 per cancer. Such cancers are potentially curable in at least 80% of cases detected at first visit and in 97% of cases at follow-up. This strategy offers the possibility to improve markedly morbidity and mortality from prostate cancer, presently the second leading cause of cancer death in North American men.

Aged