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Biomedical subjects

R A Dailey

Publications and source records attributed to R A Dailey.

At least 91 records · Page 5Linked to original sources

Distribution of visible follicles on the ovarian surface in ewes.

Two studies were conducted to determine the distribution of follicles on the ovarian surface in ewes. In Exp. 1, the effect of the corpus luteum on the distribution of follicles was investigated on d 9, 12 and 14 postestrus in unilaterally ovulating ewes. Follicles (greater than or equal to 2 mm diameter) were inventoried by size and distance from the center of the corpus luteum or corpus albicans. There were more small follicles (less than or equal to 4 mm diameter) on d 9 than on d 12 and 14, Although the ovary bearing the corpus luteum had a greater number of large follicles, no positive relationship of the corpus luteum to the diameter of the closest follicle or the distance of the largest follicle was found. In Exp. 2, follicles were inventoried on ovaries from ewes during the estrous cycle, postpartum anestrus, seasonal anestrus and the peripuberal period. During the estrous cycle, two apparent waves of follicular growth were noted. In addition, during the luteal phase the luteal ovary consistently had a larger follicle than the nonluteal ovary. When estimates were made of the effects of size of follicle on distance of the follicle from the reference structure and of distance on size of follicle, presence of luteal tissue, and day of estrous cycle were found to influence the variances. In addition the interaction of these characteristics affected the variation of size or distance. Weighting the distribution of ovarian structures for relative ovarian mass allowed an examination of localization of structures to standardized ovarian areas. More follicles and corpora lutea were found in the middle of the ovary than on the ends. Although the numbers of follicles in a standardized area were correlated with ovarian mass, occurrence of corpora lutea in a standardized area was not significantly correlated with ovarian mass. Collectively, these results are indicative of a local effect by the corpus luteum on the diameter of the largest follicle and a systemic effect on the number of follicles. In addition, because specific regions appear to be more favorable for follicular activity and ovulation, a precise local effect of the corpus luteum is difficult to determine.

Animals↗

Increased LH secretory response to LHRH after hypophyseal stalk-transection of monkeys.

Luteinizing hormone-releasing hormone (LHRH) will evoke large increases of circulating LH in all species tested except for the rhesus monkey. Indeed, in the present study we found that an intravenous injection of a relatively large dose of LHRH (20 micrograms) evoked only a small (2.2-fold) increase in plasma LH levels, as measured by the dispersed interstitial cell bioassay in 4 intact follicular phase monkeys. In contrast, 4 stalk-transected animals exhibited a significantly greater (19.9-fold) increase in plasma LH levels when treated with 20 micrograms of LHRH within 1 week after surgery. Qualitatively similar differences in responsiveness also existed between the two treatment groups with respect to FSH secretion. 2 stalk-transected monkeys treated with LHRH at weekly intervals for the first 4 weeks after surgery showed progressive declines in the LH secretory response approaching, eventually, that observed in intact animals. In 3 additional monkeys, initiation of estrogen maintenance therapy within 3 h of stalk transection, to achieve mid-follicular phase plasma levels of estradiol, totally abolished hyperresponsiveness to LHRH. Thus, the results of this study demonstrate that a transient increase in pituitary responsiveness to LHRH occurs after hypophyseal stalk transection in rhesus monkeys. Although the results indicate that this phenomenon can be accounted for, in large part, by the absence of estrogen feedback, they do not preclude the possibility that factors other than LHRH and gonadal steroids regulate gonadotropin secretion in monkeys.

Animals↗

Immunoreactive LH-like substances in serum of hypophysectomized and prepubertal monkeys: inactive in an in vitro LH bioassay.

Serum LH levels in rhesus monkeys are commonly measured by a radioimmunoassay (RIA) utilizing ovine LH as the radioligand and a novel antiserum to ovine LH. Although meeting most criteria of validity, this RIA cross-reacts with serum from demonstrably hypophysectomized monkeys as well as serum from pre-pubertal monkeys. We have utilized the recently developed rat interstitial cell-testosterone assay (RICT) for measurement of serum LH in rhesus monkeys during various endocrine states and have compared the results with those obtained by RIA. The RICT in vitro bioassay was as sensitive, precise, and accurate as the RIA. Partially purified pituitary monkey LH preparations, varying by as much as 100-fold in purity, had similar potency estimates by both assays. The expected biphasic pattern of serum LH levels during the menstrual cycle as well as the usual increase in serum LH levels after ovariectomy was observed with both assays. In each case, however, basal serum LH levels were overestimated by the RIA and peak serum LH levels were underestimated by the RIA as compared to results obtained by the RICT bioassay. The most striking differences between the two assays were observed with serum from hypophysectomized and prepubertal monkeys. Whereas LH-like activity in such samples was high when measured by the RIA, it was undetectable by the RICT bioassay. The ratios of serum LH (RIA/RICT) varied from greater than 7.2 to greater than 17.4 in such sera. These results demonstrate the serious limitations of the ovine LH RIA for measurement of serum LH in rhesus monkeys. It appears that the RICT bioassay may be a suitable alternative method, especially in circumstances other than the menstrual cycle and after ovariectomy.

Animals↗