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S E Shideler

Publications and source records attributed to S E Shideler.

11 recordsLinked to original sources

Simple extraction and enzyme immunoassays for estrogen and progesterone metabolites in the feces of Macaca fascicularis during non-conceptive and conceptive ovarian cycles.

A simple method for extracting ovarian steroids from feces is presented, together with enzyme immunoassay systems for measuring estrogen and progesterone metabolites. Small amounts of feces were combined in a 1:10 proportion with a modified phosphate buffer, shaken for 24 h, centrifuged, and decanted; the supernatant was directly measured for estrogen and progesterone metabolites by enzyme immunoassays. Serum estradiol and progesterone profiles were compared to urinary and fecal profiles in the same animals to determine the degree to which each reflected the ovarian events detectable in serum. The correlation coefficients for the relationship between serum, urinary, and fecal hormones for individual animal cycles were found to be statistically significant in every case but one, where the relationship between serum estradiol and urinary estrone conjugates was not significant. Urinary and fecal measurements were used to determine whether estrogen and progesterone metabolism and excretion varied within and between animals. Variation in unconjugated estrogen and progesterone metabolites was observed in the follicular phase, the luteal phase, and early pregnancy.

Animals

Enzyme immunoassays for ovarian steroid metabolites in the urine of Macaca fascicularis.

In vivo studies using carbon 14 labeled estradiol (E2) and progesterone (Po) were performed to characterize the time course and metabolic fate of circulating E2 and Po. Co-chromatography of human, orangutan, and macaque luteal phase urine samples demonstrated the presence of a steroid conjugate peak in all three species that was identified as being androsterone and etiocholanolone glucuronides. An enzyme immunoassay for urinary metabolites of Po was developed subsequently for Macaca spp. using a monoclonal antibody that cross-reacted with both C-19 and C-21 metabolites.

Animals

A prototype for ovulation detection: pros and cons.

A noninstrumented enzyme immunoassay for urinary estrone conjugates was adapted from an instrumented microtiter plate enzyme immunoassay assay. The end point of the assay was a color change from green to clear, which was visible to the unaided eye. The visible color change was adjusted to allow 80 ng/ml estrone conjugates (on the basis of a sample size of 6.5 microliters urine) to be distinguished from an infinite dilution without instrumentation. The evaluation of human urine collected from ovulatory ovarian cycles demonstrated that early follicular phase concentrations (35.9 +/- 6.8 to 79.4 +/- 14.7 ng/ml, n = 10) produced a dark-green color, whereas late follicular phase concentrations (162.9 +/- 20.1 ng/ml, n = 10) produced no color. Daily urine samples throughout 10 ovulatory ovarian cycles produced parallel profiles when compared to measurements of estradiol in paired blood samples. Complete analysis of the data indicated that ovarian follicular dynamics can be accurately monitored through the noninstrumented analysis of daily estrone conjugates in urine samples.

Adult

Oestrous cycle of the North American bison (Bison bison) characterized by urinary pregnanediol-3-glucuronide.

An enzyme immunoassay for urinary pregnanediol-3 alpha-glucuronide (PdG) was evaluated for the indirect measurement of progesterone metabolites during the oestrous cycle and early pregnancy of uncaptured North American bison. Comparisons between plasma progesterone and urinary PdG, dose-response parallelism between the standard curve and diluted urine samples and high-performance liquid cochromatography revealed that PdG was a primary immunoreactive urinary metabolite of progesterone in bison. Urine samples were collected directly from the soil from 29 bison cows during the August rutting season and analysed for PdG. Eight bison cows demonstrated complete oestrous cycles ranging from 19 to 26 days (mean cycle length = 23.12 +/- 0.76 days) and behavioural oestrus among four of these cows correlated with PdG nadirs. Mean PdG nadirs were 63.62 +/- 21.61 ng/mg urinary creatinine (Cr) and mean peak midluteal values were 546.01 +/- 130.73 ng/mg Cr. Seven of eight became pregnant, indicating that bison exhibit a second seasonal oestrus. Eighteen other bison cows were pregnant prior to the beginning of the study and demonstrated non-cyclic increased PdG concentrations (greater than 200 ng/mg Cr) during the 30-day course of collection. Three cows ovulated and became pregnant during the 30-day collection period and then exhibited increasing urinary PdG concentrations. This report demonstrates that ovarian function in uncaptured bison can be monitored by means of urinary PdG and that both ovulatory cycles and early pregnancy can be detected.

Animals

Ovarian-pituitary hormone interactions during the perimenopause.

To describe the hormone changes that occur at the onset of the perimenopause, daily urine and random blood samples were collected from 5 peri-menopausal women for 3 or 4 consecutive cycles. Estrone conjugate and pregnanediol-3-glucoronide concentrations were determined for urine samples. Circulating luteinizing hormone, follicle stimulating hormone, progesterone, estradiol and estrone concentrations were determined in serum samples. Two of the 5 women experienced irregular menstrual intervals during the study period. One of these subjects experienced a prolonged intermenstrual interval. Three other women exhibited apparently regular ovulatory menstrual cycles. The prolonged intermenstrual interval of one women exhibiting irregular menstrual intervals was associated with low urinary estrogen levels in the early follicular phase of the affected cycle, followed by increased gonadotrophin levels and increased estrogen levels that rose to exceed normal cycle concentrations by 2- or 3-fold. Increased estrogen levels were followed by declining gonadotrophin levels, minimal progesterone production, and, ultimately, vaginal bleeding. These data suggest that there are some forms of menstrual variability at the time of the perimenopause associated with lowered early follicular phase estrogen levels. Reduced negative feedback and subsequently increased gonadotrophin levels may have stimulated estrogen production which may have suppressed gonadotrophin secretion and lowered estrogen excretion, resulting in the observed oscillations between episodes of hypo- and hyperestrogenism.

Adult

Comparison of serum estradiol to urinary estrone conjugates in the rhesus macaque (Macaca mulatta).

Paired urine and serum samples were collected daily during fourteen nonconceptive (7 females) and ten conceptive (9 females) ovarian cycles from a total of 12 female rhesus monkeys (Macaca mulatta). Daily urine samples were analyzed for concentrations of estrone conjugates (Ei Conj). Serum samples were evaluated for concentrations of estradiol (E2) and progesterone (P) by radioimmunoassay (RIA), and bioactive luteinizing hormone (bLH) and monkey chorionic gonadotropin (mCG) were analyzed by a mouse Leydig cell bioassay. Linear correlation (r) between urinary E1 Conj and serum E2 (r range = -0.176-0.948) during nonconceptive cycles aligned by the preovulatory E1 Conj peak (Day 0) improved when daily hormone values were realigned to account for an approximately 24-h delay in the excretion of hormonal metabolites in urine (r range = 0.465-0.967). Similarly, correlation between urinary E1 Conj and serum E2 during conceptive cycles aligned by Day 0 (r range = 0.300-0.824) improved when values were offset by 24 h (r range = 0.408-0.876). When conceptive cycles were compared to nonconceptive cycles, serum P levels were significantly elevated over nonconceptive levels by Day +12 (p less than 0.001), and urinary E1 Conj levels by Day +13 (p less than 0.02), whereas serum E2 and bLH were both significantly elevated by Day +14 (p less than 0.0006 and p less than 0.01, respectively). In both nonconceptive and conceptive cycles, urinary E1 Conj paralleled serum E2 and demonstrated incremental increases above baseline levels, which were greater than for serum E2.

Animals

Monitoring gonadotropin-releasing hormone administration by measurement of urinary steroid conjugates.

The use of measuring urinary steroid conjugates in nontimed, randomly collected morning urine samples expressed as a function of creatinine concentration was assessed to monitor ovarian response to pulsatile administration of gonadotropin-releasing hormone in ambulatory patients. This method of evaluating ovarian steroid production provided a convenient, inexpensive, and noninvasive means of monitoring responses to gonadotropin-releasing hormone treatments and documents that clomiphene-resistant amenorrheic patients can be induced to ovulate with appropriate gonadotropin-releasing hormone therapy. Different ovarian responses in the same woman to similar doses and frequencies of gonadotropin-releasing hormone indicate that discrete adjustments of individual doses may be required to facilitate consistent ovulatory responses. The strategy presented here allows for subsequent gonadotropin-releasing hormone therapy in the individual patient to be determined by an objective and quantifiable ovarian response to an initial treatment.

Adult

Monitoring ovulation and implantation in the cynomolgus macaque (Macaca fascicularis) through evaluations of urinary estrone conjugates and progesterone metabolites: a technique for the routine evaluation of reproductive parameters.

Investigations were undertaken to determine the applicability of recently reported specific radioimmunoassays for urinary estrone conjugates and progesterone metabolites for monitoring ovarian function in the cynomolgus macaque (Macaca fasciularis) and other macaque species. Mean estrone conjugate measurements appear to accurately reflect the preovulatory estrogen peak in both conceptive (n = 5) and nonconceptive (n = 6) cycles, as well as to indicate early pregnancy through increases which are significantly elevated by Day + 15 (p less than 0.049) post estrone conjugates peak. The mean luteal phase levels of these progesterone metabolites are significantly elevated by Day + 14 (p less than 0.012) in conceptive cycles when compared to the mean values for nonconceptive cycles.

Animals

Estrogen-behavior correlates in the reproductive physiology and behavior of the ruffed lemur (Lemur variegatus).

The animal subjects of this study consisted of seven male-female pairs, living an open-air, off-exhibit area of the San Diego Zoo. Daily urinary estrogen levels in each of five females were measured and daily behavioral observations of the seven pairs were made. Behavioral patterns aligned by objectively determined, discrete physiologic events were analyzed to determine their temporal correlation to changes in estrogen excretion. The data indicate that approximately one-sixth of the female behaviors and one-third of the male behaviors sampled were significantly correlated to urinary estrogen levels in the females (P less than 0.05-0.005). In addition, both attractivity and receptivity were distinguishable and their component behaviors in males and females were found to be related to the estrogen profile. Proceptivity, however, was only weakly identified and its description in this sample population was ambiguous. Mating was observed to occur exclusively on 1 day, presumably the day of ovulation.

Animals

Urinary estrogens during pregnancy of the ruffed lemur (Lemur variegatus).

Pregnancy in the ruffed lemur (Lemur variegatus) was monitored by analyses of urinary estrogens. Urine samples were collected weekly throughout pregnancy (gestation: 100 +/- 1.6 days) from ten females analyzed for total immunoreactive estrogen (Et) and indexed by creatinine (Cr). Maternal urinary total estrogen excretion remained low until the last half of gestation at which time excretion increased steadily, reaching values 1000 times greater than those observed at estrus. Chromatographic separation after enzyme hydrolysis of lemur urine indicates that estrone is the major estrogenic component of pregnancy in the ruffed lemur, with the remaining components consisting of equal amounts of estradiol-17 alpha and -17 beta.

Animals

Monitoring ovulation and implantation in the lion-tailed macaque (Macaca silenus) through urinary estrone conjugate evaluations.

Urine samples were collected daily during ten nonfertile and four fertile ovarian cycles of four adult female lion-tailed macaques (Macaca silenus). Urine was analyzed for concentrations of total immunoreactive estrogen (Et), estrone conjugates, and bioactive luteinizing hormones (LH). The estrone conjugates of selected samples were separated by high-performance liquid chromatography (HPLC) to evaluate the relative proportions of estrone glucuronide (E1 G) to estrone sulfate (E1 S) contributing to the sum total of the conjugate measured in the samples. The estrone conjugate profile was found to accurately reflect the preovulatory estrogen peak in both nonfertile and fertile cycles as well as the early pregnancy increase which was found to be statistically significant on Day + 14 postovulation (P = 0.003). Estrone conjugate levels rose in the early follicular phase from 126.00 +/- 24.07 (SEM) ng/mg creatinine to a preovulatory peak of 471.90 +/- 62.95 ng/mg creatinine. Fertile cycles exhibited a postovulatory climb to a peak of 515.00 +/- 38.00 ng/mg creatinine on Day + 19, in contrast to the secondary rise observed in nonfertile cycles that peaked at 148.11 +/- 13.80 ng/mg creatinine on Day + 10. Bioactive LH evaluations confirmed ovulation and, in the fertile cycles, reflected the subsequent elevation of chorionic gonadotropin on Day + 18. The estrone conjugate profile of fertile cycles and early pregnancy compared favorably to the Et profile: both showed the same time course and increases in estrogen excretion.

Animals