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Biomedical subjects

E Gentzschein

Publications and source records attributed to E Gentzschein.

12 recordsLinked to original sources

Endothelin levels decrease after oral and nonoral estrogen in postmenopausal women with increased cardiovascular risk factors.

OBJECTIVE: To establish levels of plasma endothelin-1 in postmenopausal women with increased CV risk as compared with healthy premenopausal women and to measure the effects of different forms of estrogen replacement on plasma endothelin-1. DESIGN: Prospective randomized study. SETTING: University of Southern California Medical Center. PATIENT(S): We studied 18 postmenopausal women (mean age 53.4 +/- 4.9 years) with total cholesterol levels > 240 mg/dL divided into those with and without hypertension as well as in 10 healthy premenopausal women. INTERVENTION(S): The postmenopausal women were randomized to receive oral estrone sulfate, transdermal E2, or placebo for 30 days. MAIN OUTCOME MEASURE(S): We measured the endothelin-1 levels and total cholesterol at baseline and after 30 days of estrogen treatment. RESULT(S): In the postmenopausal women, endothelin-1 was higher (4.58 +/- 0.46 pg/mL) compared with premenopausal levels (2.80 +/- 0.46 pg/mL). In hypertensive postmenopausal women, endothelin-1 was 5.56 +/- 0.44 pg/mL. After estrogen, plasma endothelin-1 values decreased from 5.38 +/- 0.66 to 4.82 +/- 0.9 pg/mL with oral estrone sulfate, 4.84 +/- 0.25 to 4.54 +/- 0.49 pg/mL with transdermal E2, and did not change after placebo 4.76 +/- 0.71 to 4.81 +/- 0.46 pg/mL. In evaluating hypertensive women alone with estrogen therapy, plasma endothelin-1 showed the greatest decrement from 5.39 +/- 0.49 to 4.4 +/- 0.59 pg/mL (18.4%). The decrease in endothelin-1 with estrogen, which was statistically significant for the entire group, did appear to be influenced by the route of administration. Baseline plasma endothelin-1 levels were correlated positively to plasma cholesterol levels with a correlation coefficient of 0.632. CONCLUSION(S): These data provide another potential mechanism explaining the cardioprotective effects of hormone replacement therapy.

Administration, Cutaneous

A pilot study of urinary estrogen metabolites (16alpha-OHE1 and 2-OHE1) in postmenopausal women with and without breast cancer.

The two main pathways for metabolizing estrogen are via 16alpha-hydroxylation and 2-hydroxylation. The 16alpha-hydroxy metabolites are biologically active; the 2-hydroxy metabolites are not. It is suggested that women who metabolize a larger proportion of their endogenous estrogen via the 16alpha-hydroxy pathway may be at significantly elevated risk of breast cancer compared with women who metabolize proportionally more estrogen via the 2-hydroxy pathway. In particular, it is suggested that the ratio of urinary 2-hydroxyestrone (2-OHE1) to 16alpha-hydroxyestrone (16alpha-OHE1) is an index of reduced breast cancer risk. This pilot study compared this ratio in postmenopausal women diagnosed with breast cancer to those of healthy controls. Urinary concentrations of estrone (E1), 17beta-estradiol (E2) and estriol (E3) were also quantified. White women who were subjects in a previous breast cancer case-control study at our institution were eligible for inclusion. All participants provided a sample of their first morning urine. The results from the first 25 cases and 23 controls are presented here. The ratio of 2-OHE1 to 16alpha-OHE1 was 12% lower in the cases (p=0.58). However, urinary E1 was 30% higher (p=0.10), E2 was 58% higher (p=0.07), E3 was 15% higher (p=0.48), and the sum of E1, E2, and E3 was 22% higher (p=0.16) in the cases. These preliminary results do not support the hypothesis that the ratio of the two hydroxylation metabolites (2-OHE1/16alpha-OHE1) is an important risk factor for breast cancer or that it is a better predictor of breast cancer risk than levels of E1, E2 and E3 measured in urine.

Breast Neoplasms

Urinary progesterone and pregnanediol. Use for monitoring progesterone treatment.

OBJECTIVE: To compare progesterone (P) and pregnanediol glucuronide (PDG) levels in urine with respect to their potential use for monitoring luteal activity and P treatment. STUDY DESIGN: Two different experiments were carried out. In the first experiment, each of seven normal, ovulatory women collected first morning urines daily throughout an entire menstrual cycle. The day of ovulation was determined by transvaginal ultrasound scanning. P, PDG, estrone glucuronide, luteinizing hormone and creatinine were measured in each urine specimen. In the second experiment, each of three normal, ovulatory women was given a single oral dose of 200 mg of micronized P and, 2 days later, a single intramuscular injection of 25 mg of P during days 2-5 of the cycle. Blood and urine were collected prior to each treatment and 1, 4, 8, 12 and 24 hours after treatment. P was measured in both serum and urine; PDG was quantified only in urine. RESULTS: The mean initial rises and peak days, as well as the patterns of urinary excretion of P and PDG during the menstrual cycles, were similar; however, the variability of PDG was much greater. Concentrations of PDG were 1,000-4,000 times greater than those of P. A significant correlation was observed between urinary P and PDG. Following either intramuscular or oral P treatment, serum P levels rose rapidly and reached peak levels (7.0-11.8 ng/mL) by one hour. In contrast, both urinary P and PDG peaked considerably later (4-12 hours). Twenty-four hours after intramuscular treatment, serum and urinary P and urinary PDG were still elevated. Following oral treatment the levels of these compounds decreased after peaking and were 10- to 20- fold lower at 24 hours. Also, after oral P treatment, urinary PDG levels were considerably higher and more variable as compared to urinary P levels. CONCLUSION: Urinary P appears to be as good a clinical marker of luteal activity and therapeutic P administration as PDG and may be measured in place of this metabolite. There appears to be greater variability in urinary PDG as compared to urinary P when P is administered.

Adult

Biologic effects of 17 alpha-dihydroequilin sulfate.

OBJECTIVE: To determine the independent biologic effects of 17 alpha-dihydroequilin sulfate. DESIGN: Prospective randomized study. SETTING: University of Southern California Medical Center. PATIENTS(S): Twenty-one postmenopausal women, mean age 50 +/- 2 (+/-SEM) years, and mean body mass index 27 +/- 2. INTERVENTION(S): Women were randomized to receive daily oral doses of either 1.25 mg of estrone sulfate (E1S), 0.2 mg of 17 alpha-dihydroequilin sulfate, or a combination. Three blood and urine samples were obtained before and after 30 and 90 days of treatment. RESULT(S): After 30 and 90 days of treatment, E1S alone increased sex hormone-binding globulin (SHBG) levels significantly, 19.7% +/- 6.0% and 61.3% +/- 13.0%, whereas 17 alpha-dihydroequilin sulfate reduced SHBG levels, 20.8% +/- 68% and 12.4% +/- 7.5%, respectively. Nevertheless, the combination of E1S and 17 alpha-dihydroequilin sulfate significantly increased SHBG levels, 103% +/- 27.9% and 98.2% +/- 19.1%, compared with baseline at 30 and 90 days. Fewer changes were evident with corticosteroid-binding globulin (CBG). After 90 days of treatment, CBG levels significantly increased 30.9% +/- 5.5% with E1S, decreased by 7.2% +/- 5.0% with 17 alpha-dihydroequilin sulfate, and, with the combination, significantly increased by 10.5% +/- 2.4% compared with baseline. Changes in lipids and lipoproteins were more variable. However, high-density-lipoprotein cholesterol increased significantly with E1S at 30 and 90 days compared with baseline, 96.5% +/- 39% and 91.5% +/- 22.6%, and with the combination increased 66.4% +/- 13.3% and 79.2% +/- 24.4%, respectively. Fewer changes were evident with 17 alpha-dihydroequilin sulfate alone, decreasing 4.4% +/- 22% and 2.6% +/- 21.3%. Urinary ratios of bone collagen equivalents-creatinine and calcium-creatinine decreased in all three groups. However, the combination group resulted in a significantly greater percentage decrease in bone collagen equivalents-creatinine than with E1S alone. CONCLUSIONS(S): 17 alpha-Dihydroequilin sulfate could modify some of the first-pass effects of conjugated equine estrogens and act synergistically with other conjugated equine estrogens to reduce bone resorption.

Calcium

Substrate dependency of C19 conjugates in hirsute hyperandrogenic women and the influence of adrenal androgen.

Serum C19 conjugates, specifically 3 alpha-androstanediol glucuronide (3 alpha G), reflect peripheral androgen action through the action of 5 alpha-reductase activity. The origin of 5 alpha-reduced C19 conjugates has been controversial and it has been suggested that they are derived primarily from adrenal androgens. We examined concentrations of 3 alpha G, 3 alpha-androstanediol sulphate (3 alpha S), androsterone glucuronide (AoG) and androsterone sulphate (AoS) in 40 hirsute hyperandrogenic women. These patients were divided into four groups based upon individual, combined or normal concentrations of the adrenal androgens dehydroepiandrosterone (DHEAS) and 11 beta-hydroxy-androstenedione. Testosterone, unbound testosterone and androstenedione were similar in these groups. Serum 3 alpha G was equally high in all groups and was correlated significantly with hirsutism, while the other conjugates were not. Androsterone glucuronide was raised in all groups but was higher in patients with raised DHEAS. Serum 3 alpha S was raised in all groups and was higher where both adrenal androgens were raised. Serum AoS was highly correlated with DHEAS. Serum 3 alpha G was correlated with unbound testosterone and androstenedione but not with the adrenal androgens. The glucuronide conjugates were correlated with one another as were the sulphate conjugates but glucuronides and sulphates were not correlated. These data confirm ovarian and adrenal dependency of C19 conjugates. Serum 3 alpha G appears to reflect hirsutism most accurately and is least dependent on adrenal androgens in patients with mixed hyperandrogenism.

Adrenal Glands

Alterations in androgen conjugate levels in women and men with alopecia.

OBJECTIVE: To assess levels of androgen metabolites thought to reflect, at least in part, peripheral androgen activity in women with androgenic alopecia and men with premature balding in an effort to determine if a common abnormality exists. DESIGN: Prospective study in various groups of women and men. SETTING: Reproductive Endocrine Clinic at our university medical center. PATIENTS: Ten normal ovulatory female controls and 50 hyperandrogenic women divided on the basis of hirsutism and alopecia as follows: [1] 8 hirsute women with androgenic alopecia; [2] 12 nonhirsute women with androgenic alopecia; [3] 18 hirsute women without androgenic alopecia; and [4] 12 nonhirsute women without androgenic alopecia. Ten normal men and 10 young premature balding men matched for age and weight also were compared. INTERVENTION: Blood was obtained from all subjects. MAIN OUTCOME MEASURE: Comparison of blood hormone levels in the various groups. RESULTS: Serum T, androstenedione, and DHEAS were similarly elevated in hyperandrogenic women with and without alopecia, compared with controls. The female groups were then divided on the basis of hirsutism. Hirsute groups with and without alopecia had similarly elevated levels of unconjugated 3 alpha-androstanediol, 3 alpha-androstanediol glucuronide, 3 alpha-androstanediol sulfate, androsterone glucuronide, and androsterone sulfate compared with controls. In the nonhirsute groups, androgenic alopecia patients were compared with hyperandrogenic females and cycling controls. The androgenic alopecia patients had elevated levels of 3 alpha androstanediol (0.75 +/- 0.12 versus 0.46 +/- 0.1 and 0.41 +/- 0.1 nmol/L), 3 alpha-androstanediol sulfate (200 +/- 31 versus 79.6 +/- 6 and 67.0 +/- 4.0 nmol/L), elevated ratios of 3 alpha-androstanediol sulfate:3 alpha-androstanediol (267 +/- 49 versus 170 +/- 20 and 164 +/- 49 nmol/L), elevated ratios of 3 alpha-androstanediol sulfate:3 alpha-androstanediol glucuronide (32.2 +/- 6 versus 10.8 +/- 1 and 10.0 +/- 1) and lower ratios of 3 alpha-androstanediol glucuronide:3 alpha-androstanediol glucuronide (8.3 +/- 1.8 versus 17 +/- 1.7 and 15.2 +/- 1.6 nmol/L). In men the premature balding group had lower levels of 3 alpha-androstanediol glucuronide compared with the male controls (29.8 +/- 4.4 versus 15.2 +/- 1.6 nmol/L). Also, the ratio of 3 alpha-androstanediol glucuronide:3 alpha-androstanediol was significantly decreased, whereas the ratio of 3 alpha-androstanediol sulfate:3 alpha-androstanediol glucuronide was elevated. CONCLUSIONS: These data provided evidence confirming that enhanced 5 alpha-reductase activity occurs in androgenic alopecia but also suggests that a disorder of androgen conjugation, favoring sulfurylation over glucuronidation, may be a characteristic feature of scalp hair loss.

Adolescent

Cutaneous application of an androstenedione gel as an in vivo test of 5 alpha-reductase activity in women.

OBJECTIVE: Assessment of an in vivo test for 5 alpha-reductase activity using serum markers, 5 alpha-androstane-3 alpha,17 beta-diol glucuronide and androsterone glucuronide, after the cutaneous application of androstenedione (A). DESIGN: An A gel was applied for 6 days to the skin of normal women, male volunteers, and hirsute and nonhirsute patients with polycystic ovarian syndrome (PCOS). Blood samples were obtained at baseline and on day 6 of the A gel application. Blood samples were assayed for A, 5 alpha-androstane-3 alpha,17 beta-diol glucuronide, and androsterone glucuronide. In three hirsute women, the protocol was followed before and after receiving an oral contraceptive (OC) and spironolactone 200 mg/d for 3 months. SETTING: The study was performed in the outpatient clinic of the Division of Reproductive Endocrinology and Infertility, Women's Hospital of the Los Angeles County and University of Southern California Medical Center in Los Angeles, California. PATIENTS, PARTICIPANTS: A total of eight nonhirsute patients with PCOS, seven hirsute patients with PCOS, and six male volunteers were enrolled in the study. Five normal women served as a control group. MAIN OUTCOME MEASURE: Serum A increased after 6 days by a similar magnitude in all groups. Serum androsterone glucuronide showed a significant increase from baseline only in the hirsute group (P < 0.03), whereas the increase in 5 alpha-androstane-3 alpha,17 beta-diol glucuronide was not statistically significant. RESULTS: The ratio of the increases in serum androsterone glucuronide over serum A was significantly higher in the hirsute group (P < 0.02). In the three hirsute patients who were placed on an OC and spironolactone, serum 5 alpha-androstane-3 alpha,17 beta-diol glucuronide and androsterone glucuronide decreased after 3 months and did not increase with application of the gel for another 6 days. CONCLUSION: The cutaneous application of A provides a useful assessment of in vivo 5 alpha-reductase activity. However, because we found that A absorption varied considerably (30% to 62%), we suggest that this in vivo test may not provide more information than baseline determinations of 5 alpha-androstane-3 alpha,17 beta-diol glucuronide and androsterone glucuronide. It may, however, be useful as a parameter for assessing the effectiveness of various treatment regimens for hirsutism.

Administration, Cutaneous

Androstenedione is an important precursor of dihydrotestosterone in the genital skin of women and is metabolized via 5 alpha-androstanedione.

Androgen action is largely determined by the formation of dihydrotestosterone in target tissues. In women, androstenedione is the major precursor of dihydrotestosterone production in female genital skin. The present study was initiated to determine whether androstenedione is converted to dihydrotestosterone primarily via testosterone or 5 alpha-androstane-3,17-dione (5 alpha-androstanedione), and to examine the pathway of androstenedione metabolism in genital skin. Genital skin was obtained from 9 normal premenopausal women and 2 normal men. Each tissue was incubated with [3H]androstenedione in RPMI-1640 medium for 1 h at 37 degrees C in 95% O2/5% CO2. The metabolites were separated and purified by paper partition and thin-layer chromatography. The conversions of androstenedione to 5 alpha-androstanedione and to androsterone were similar (10.45 +/- 1.46 and 11.04 +/- 2.04%/200 mg tissue), and were approx. 12, 8 and 23 times higher than the conversion of androstenedione to testosterone, dihydrotestosterone and 5 alpha-androstane-3 alpha,17 beta-diol, respectively. The male samples showed a similar pattern of metabolism. These data indicate that 5 alpha-androstanedione is the most important intermediate in the conversion of androstenedione to dihydrotestosterone. The data also confirm the importance of 5 alpha-reductase activity over that of 17 beta-hydroxysteroid oxidoreductase activity in the expression of androgen action in women.

Adult

Dehydroepiandrosterone and dehydroepiandrosterone sulfate metabolism in human genital skin.

Genital skin samples were obtained from normal women and men to determine the extent of conversion of dehydroepiandrosterone (DHEA) to dihydrotestosterone (DHT) and other androgen metabolites and to assess sulfatase activity. The skin samples were minced and incubated with 3H-DHEA or 3H-dehydroepiandrosterone sulfate (3H-DHEAS) in medium for 1 hour at 37 degrees C. The following metabolites of DHEA were isolated after extraction and chromatography: 5-androstene-3 beta,17 beta-diol (delta 5-diol), 5 alpha-androstane-3,17-dione (5 alpha-delta 4A), testosterone, DHT, androsterone (A), and 5 alpha-androstane-3 alpha,17 beta-diol. Although the conversion of DHEA to all the metabolites was low, the conversions were higher in men than in women. In women, conversions of DHEA to delta 5-diol and androstenedione (delta 4A) were highest, followed by conversions of DHEA to DHT and 5 alpha-delta 4A, whereas in men the formation of delta 4A and 5 alpha-delta 4A was highest, followed by delta 5-diol and A. There was a significant conversion of DHEAS to DHEA in both women and men, although the sulfatase activity was approximately six times higher in men. We conclude that despite the low conversion of DHEA to DHT, significant androgenecity may result from pathological levels of DHEAS.

Adult

Production of 3 alpha-androstanediol glucuronide in human genital skin.

3 alpha-Androstanediol glucuronide (3 alpha diol-G) is produced extrasplanchnically and is a good clinical marker of androgen action in peripheral tissues. However, the direct formation of androgen glucuronides in peripheral sites such as skin has not been determined in man. Genital skin from 21 premenopausal women and 8 men and foreskin from 6 neonates were incubated with either [14C]testosterone [14C]dihydrotestosterone (DHT) to determine the production of DHT glucuronide and 3 alpha diol-G in skin. After hydrolysis of incubation medium with glucuronidase, followed by extraction and sequential chromatography, constant 3H to 14C ratios of 3 alpha diol confirmed the production of DHT glucuronide and 3 alpha diol-g. The conversion of DHT to 3 alpha diol-G was higher than the conversion from testosterone (P less than 0.05), and conversion was higher in men than in women. These data provide evidence for the direct formation of C19 steroid glucuronides by human skin.

Adult

Clinical and endocrinologic study of continuous levonorgestrel administration from subcutaneous solid polydimethylsiloxane rods.

Three solid polydimethylsiloxane (Silastic) rods containing levonorgestrel were inserted into the subcutaneous tissue of the volar aspect of the forearm of 8 women. Serum samples were drawn three times a week for 2 months and weekly thereafter for 2 years in 3 of the subjects. The other subjects had serum drawn during the twelfth and last treatment months. Levonorgestrel, estradiol and progesterone were measured in all samples. The subject kept a bleeding record. In comparison to an earlier clinical trial in which 6 hollow capsules of Silastic filled with levonorgestrel were used, the 3 solid levonorgestrel-containing rods provided higher serum levels of levonorgestrel, fewer serum estradiol peaks, only a single episode of ovulation and better bleeding performance.

Adult