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J D Neill

Publications and source records attributed to J D Neill.

At least 127 records · Page 7Linked to original sources

Prolactin: the initial luteotropic stimulus of pseudopregnancy in the rat.

The luteotropic stimuli necessary to transform the corpus luteum of the estrous cycle into a corpus luteum of psuedopregnancy on the morning of diestrus-2 (Day 2), as reflected by a dramatic divergence in progesterone secretion, were studied (Day 1 was taken as the first day of diestrus of pseudopregnancy). The requirement of prolactin (PRL) as a luteotropic stimulus was determined by inhibiting the diurnal and nocturnal PRL surges that occur immediately before and during the divergence in progesterone. Following cervical stimulation, 1 mg of 2-Br-alpha-ergocryptine (EC) was injected at 1100 and 2300 h on Day 1 (lights on 0600-1800 h), and the animals were decapitated at 2-4 h intervals from 1100 h on Day 1 to 1700 h on Day 2. In the control animals, the PRL surges on Day 1 and Day 2 were associated with an increase in progesterone secretion on Day 2. However, the regimen of EC treatment resulted in an inhibition of PRL surges, prolactin remaining at baseline values from 1100 h on Day 1 to 1700 h on Day 2. The inhibition of PRL secretion was associated with a fall in progesterone concentration to reach baseline values by 1700h on Day 2. Furthermore, a group of animals similarly treated with EC returned to vaginal estrus 2 days later. LH concentrations did not differ in control and EC-treated animals. The effect of EC on corpus luteum function could be completely reversed by the simultaneous administration of PRL. In addition, if PRL was administered at 1100 h and 2300 h on diestrus-1 of the estrous cycle, in an attempt to mimic the surges os pseudopregnancy, regression of the corpora lutea did not occur. Progesterone levels increased to reach values comparable to those observed in pseudopregnancy on diestrus-2. The role of LH was studied by administering a dose of LH antiserum at 110 and 2300 h on Day 1 of pseudopregnancy. This treatment failed to inhibit the increase in progesterone observed on Day 2. These results demonstrate that the surges of plasma PRL initiated by cervical stimulation are responsible for transforming a corpus luteum of the estrous cycle into a corpus luteum of pseudopregnancy, as reflected by an increase in progesterone secretion of Day 2. LH seems to have a minor role in maintaining corpus luteum function beyond that observed during the estrous cycle.

Animals↗

Ovarian regulation of postcoital gonadotropin release in the rabbit: reexamination of a functional role for 20 alphadihydroprogesterone.

In the rabbit, it has proposed that an ovarian progestin, 20 alpha-dihydroprogesterone (20alphaP), released at mating, is essential for a normal postcoital LH surge. However, we measured plasma levels of LH and 20alphaP after mating in rabbits and observed that the frequency, magnitude and time-course of changes in circulating levels of 20alphaP seemed inappropiate to account for the rapid and major surge of LH secretion. This prompted us to re-evalute the role of the ovary in regulating postcoital LH secretion. In chronically ovariectomized (greater than 30 days) does pretreated with estrogen, mating induced a normal LH surge in only 1 of 10 animals, indicating that an ovarian product in addition to estrogen is required for a normal postcoital LH surge. However, when 20alphaP was injected soon after mating in chronically ovariectomized does pretreated with estrogen, only 2 of 9 displayed normal LH surges; this proportion is not different from that (1/10) observed with estrogen treatment alone. To demonstrate that the estrogen treatment, which produced supraphysiologic plasma estradiol levels, did not itself block LH release, 6 intact anestrus females were treated with the same estrogen regimen. Estrus was induced in 5 and each displayed a large post-coital LH surge and ovulated. As a final test of the 20alphaP hypothesis, 5 spontaneously estrous does were ovariectomized within 15 min post coitum to abolish acute increases in circulating ovarian hormones. Three animals released LH in amounts and temporal pattern indistinguishable from intact estrous does. A fourth released smaller amounts of LH. Two of 4 sham-operated does also had normal LH surges. These findings indicate that ovarian hormones are required before mating to support the capacity of the LH secretory mechanism to respond to coitus. Chronic alteration in the hormonal milieu by ovariectomy appears to produce a change in the hypothalamo-hypophysial complex that is not reversed by estrogen, alone. More importantly, these results demonstrate clearly that neither 20alphaP nor any other ovarian hormone is required post coitum, at least after 15 min, for normal LH release.

20-alpha-Dihydroprogesterone↗

The control of progesterone secretion during the estrous cycle and early pseudopregnancy in the rat: prolactin, gonadotropin and steroid levels associated with rescue of the corpus luteum of pseudopregnancy.

The hormonal factors associated with converting a corpus luteum of estrous cycle into a corpus luteum of pseudopregnancy were studied by measuring LH and FSH prolactin, estradiol and progesterone levels in decapitated rats during the 4-day estrous cycle and a comparable time of pseudopregnancy (lights on 0600-0800 hr.). During the estrous cycle, prolactin, LH and FSH remained low and unchanging except on the afternoon of proestrus, when typical proestrous surges were observed. In contrast, estradiol levels began to increase on D-1, from baseline values of 7 pg/ml to approximately 15-20 pg/ml. These levels were maintained until the afternoon of D-2 when estradiol further increased to reach peak levels of 40-50 pg/ml by 0900 hr on proestrus. Estradiol then declined in relation to the increase in LH secreation and had returned to baseline by estrus. Progesterone secretion by the corpora lutea of the cycle also increased on the afternoon of D-1 and reached a maximum value of 25-30 ng/ml early on the morning of D-2. At this time, a precipitious fall in progesterone occurred, returning to baseline values of 5-1- ng/ml by 0700 on D-2 signifying the regression of the corpora lutea of the cycle. Progesterone remained low thereafter until the afternoon of proestrus when levels increased in response to the proestrus when levels increased in response to the proestrous surge of LH. Following cervical stimulation at 1900 hr on proestrus, no differences were noted, with respect to the estrous cycle, in LH, FSH or estradiol secreation through the afternoon of D-2. Surprisingly, progesterone levels did not differ in the cycle and pseudopregnancy until the early morning of D-29 instead of progesterone levels falling to baseline as they had during the cycle, the corpora lutea of pseudopregnancy were rescused, progesterone increasing dramatically to reach levels of 45-50 ng/ml by 1700 hr on that same day. The only difference in hormone secretion that was noted which could account for this marked divergence in progesterone secretion was the pattern of prolactin secretion following cervical stimulation. In contrast to the low levels seen during the estrous cycle, biphasio surges of prolactin secretion occured each day, one being nocturnal (0100-0900 hr) and the other diurnal (1500-2100 hr). The rescue of the corpus luteum occured in association with the nocturnal surge on D-2. These results suggest that nocturnal surge on D-2, PROLACTIN IS THE MAJOR Luteotropic stimulus which transforms and estrous cycle into pseudopregnancy by prolonging progesterone secretion from the corpus luteum. Moreover, if LH is important for progesterone secretion, no changes were observed in the pattern of LH secretion which can account for the rescue of the corpus luteum.

Animals↗