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1.
In a number of assay ssytems, some 17-phenyl-trinor prostaglandins were similar in activity and potency to the corresponding parent prostaglandin. In others, the 17-phenyl analogs appeared several times more potent. In the hamster antifertility assay, which is considered to measure luteolytic activity, 17-phenyl-18,19,20-trinor prostaglandin F was about 90-times PGF in potency.Rat blood pressure responses to 17-phenyl analogs were significant. The 17-phenyl-trinor PGF pressor potency was 5 times that of PGF. The 17-phenyl-trinor PGE2 blood pressure response was atypical since a pressor rebound phenomenon followed the expected depressor response. Lastly, 17-phenyl-trinor PGF was more potent than PGF in synchronizing the estrous cycle in beef cows.  相似文献   

2.
Conflicting reports exist regarding the source of luteolytic PGF in the rat ovary. To assess the quantities of different PGs, measurements of PGF, PGE and PGB were performed by radioimmunoassay in the adult pseudopregnant rat ovary throughout the luteal lifespan. Ovaries of 84 rats were separated by dissection into two compartments, corpora lutea of pseudopregnancy and remainder of ovary. Tissue samples were homogenized and prostaglandins extracted and determined by radioimmunoassay. During the mid-luteal and late-luteal phases, levels of PGs were significantly higher in the corpora lutea of pseudopregnancy than in the remainder of ovary. An increase of PGF-content in the corpus luteum was registered with peak-levels of 53.9 ± 8.5 (mean ± SEM, N=18) ng/g tissue wet weight at day 13 of pseudopregnancy. PGE-levels reached peak-values at day 11 of pseudopregnancy (271.6 ± 28.4 ng/g w w, mean ± SEM, N=12). PGB-levels were below detection limits in all compartments for all ages studied. The present study demonstrates increased availability of PGF in the corpus luteum during the luteolytic period, and points toward either increased luteal synthesis or luteal binding of PGF during the luteolytic period.  相似文献   

3.
The mechanism of stimulatory and inhibitory action of PGF on ovarian steroidogenesis both under and conditions has been studied in the pseudo-pregnant rabbits. Short term incubation of the ovaries with PGF (2.82 × 10−5M) resulted in an increased synthesis of progesterone and 20α-OH P. The addition of PGF in the medium and further incubation of the ovaries obtained from rabbits that had been constantly infused with PGF (0.5 μg/min.) for two hours resulted in increased synthesis of these progestins. The ratio of progesterone to 20α -OH P was also enhanced under these conditions and thus supported the luteotropic action of small doses of PGF under short term incubations. However, as the amount of PGF infused was increased to 5 μg/min., the addition of PGF under conditions strikingly decreased the production of these progestins. The ratio of progesterone to 20α -OH P was also decreased and thus was indicative of luteolytic action of higher doses of PGF. High doses of PGF (5.64 × 10−4M) failed to I cause any significant change in the progestin synthesis under short term incubation. These results thus suggest that the luteotropic and luteolytic action of PGF in the luteinized rabbit ovary is dose and time dependent.  相似文献   

4.
Five guinea-pigs actively immunised against a PGF-bovine serum albumin conjugate showed elongated cycles, whereas 5 control animals injected with a mixture of PGF and bovine serum albumin showed no change in cycle length. These results are compatible with the hypothesis that the uterine luteolytic hormone in the guinea-pig is PGF.  相似文献   

5.
The effect of prostaglandin F(PGF) on endocrine and ovarian function during the early luteal phase of the domestic cat was investigated. Queens were induced to ovulate and then injected subcutaneously with 0.5–5.0 mg PGF/kg body weight. The greatest dose was found to approach toxicity. Concentrations of progesterone were similar in cats following treatment with PGF compared to values of controls. Development and regression of corpora lutea as determined by serial laparoscopy were similar in all groups. These data indicate that PGF at the tested dosages, given during the early luteal phase is not luteolytic in this species and suggest that these regimens would be ineffective for the premature termination of pseudopregnancy.  相似文献   

6.
The effects of PGF infusion in a dose of 25 μg/min for 5 hours on serum levels of estradiol-17β, progesterone, LH, FSH, TSH and prolactin, and on the pituitary hormone responsiveness to LRH and TRH were studied in 10 apparently healthy cycling women in the mid-luteal phase. No systematic alteration was seen in the pituitary and ovarian hormone levels during PGF infusion, and the pituitary hormone responses to releasing hormones were unaffected. Ovarian steroid production increased in response to increased gonadotropin levels after LRH injection during PGF administration. These results confirm that PGF is not luteolytic in humans and no apparent relationship between PGF and pituitary hormone secretion exists.  相似文献   

7.
MDL-646, 11,15-dihydroxy-16-methyl-16-methoxy-9-oxo-prost-13-en-1--oic acid methyl ester, is one of the most active members of a new class of PGE1 analogues with potent gastric cytoprotective and antisecretory activity. The potential luteolytic activities of MDL-646 and its corresponding PGE2 derivative, L 14224 were assessed from their ability to terminated pregnancy and to reduce plasma progesterone levels in the hamster. PGE1 and PGE2 were used as reference compounds. The biological and biochemical data clearly demonstrate that these 16-methyl-16-methoxy PGE derivatives, given s.c. or p.o. either once or for 3 days, have no luteolytic effects up to a daily dose of 2–2.5 mg/kg, and are therefore at most to as luteolytic as the parent natural PGEs. The dissociation between gastroprotective and luteolytic activity was interpreted to indicate that these new PGE derivatives have a specific action.  相似文献   

8.
The relative binding affinities for both the prostaglandin (PG)E1 and PGF specific bovine luteal binding sites were determined for five PGE and fourteen PGF derivatives and analogs. Relative binding affinity was determined using membranes prepared from bovine corpora luteal (CL) obtained from the slaughterhouse. The parent structure of the analog was a dominant feature in determining the affinity for the respective PG binding site. Luteolysis was determined in cattle following intramuscular injection of various doses of prostaglandin once between days 6 and 14 after estrus and measuring CL regression by ovarian palpation per rectum, interval between injection and return to estrus and duration of the subsequent estrous cycle. A dose which was luteolytic was established for each of eight PGF-type compounds, and a dose which was not luteolytic was also established. There appeared to be limited association between the relative affinity for the PGF specific site and the estimated luteolytic dose range of these PGF analogs when tested in cattle. Differences in luteolytic potency for the compounds tested could not be explained by differences in binding affinity. Differences in metabolism and absorption may also be important in the determination of potency.  相似文献   

9.
Intravaginal administration of 15-methyl-PGF-methyl ester in the form of suppositories terminated pregnancy in 70 percent of the cases whose last menstrual periods ranged from 35 to 56 days. The use of these suppositories in 49 patients, between 57 to 80 days of gestation, dilated the cervix by 10 mm or more, in one hundred percent of the cases. A decrease in circulating levels of estradiol-17β and progesterone was observed following 15-methyl-PGF administration. The mean estradiol-17β levels declined by about 55.9 percent at 9 hours whereas, the corresponding fall in progesterone was 32.7 percent. This was indicative of a direct action of 15-methyl-PGF on the corpus luteum. The vaginal use of 15-methyl-PGF-methyl ester suppositories thus appears to be a promising method for the termination of early pregnancy and for pre-operative cervical dilatation. The termination of early pregnancy appears to be partly due to the luteolytic effect of 15-methyl-PGF besides stimulating uterine contractions.  相似文献   

10.
Intrauterine insertion of a 0.5 cm long Silastic-PVP tube containing 750 μg PGE2 (lyophilized sodium salt) caused midterm abortion in hamsters within 48 hours. An earlier study using a similar Silastic-PVP tube delivery system showed that 200 μg of PGF (Tham) was sufficient to induce abortion in 100% of pregnant hamsters (18). Prostaglandin E2 is, therefore, about 3.5–4 times less potent than PGF as an abortifacient in the hamster. The release of 3H-PGE2 from Silastic-PVP tube and is also described. It is suggested that an increase in LH release might be one of the factors leading to luteolysis; and that either PGE2 exerts a direct luteolytic effect or this effect is manifested after its being converted to PGF.  相似文献   

11.
The ability of human chorionic gonadotropin (HCG) to reduce the luteolytic effect of prostaglandin (PGF2α) was demonstrated in cycling ewes. As expected, treatment with 10 mg of PGF2α alone on Day 10 of the estrous cycle exerted a potent negative effect on the function and structure of corpus luteum (CL) as indicated by reduced plasma progesterone, CL progesterone, and CL weight. However, the identical PGF2α treatment failed to significantly reduce either luteal function or luteal weight when administered to ewes that were also treated with HCG on Days 9 and 10 of the estrous cycle. Treatment with HCG alone had a positive effect on CL as indicated by increased plasma progesterone, CL progesterone, and CL weight. Treatment with HCG did not render the CL totally insensitive to the negative effects of PGF2α because plasma progesterone was reduced when the dose of PGF2α was doubled. Whether CL regressed or continued to function after treatment with both HCG and PGF2α appeared to depend upon a balance between the positive and negative effects of the two hormones.  相似文献   

12.
When ovine large luteal cells are placed in culture and exposed to PGF, there is a rapid and sustained increase in the concentration of free intracellular calcium which is believed to play a major role in the luteolytic and cytotoxic effects of PGF. Since administration of exogenous PGE2 can prevent spontaneous and PGF-induced luteolysis in vivo, and the cytotoxic effects of PGF on large luteal cells in vitro, the objective of this study was to determine if one mechanism by which PGE2 acts is to attenuate increases in free intracellular calcium induced by PGF. At concentrations of 10 nM or greater, PGF caused a significant and sustained increase in free intracellular calcium in large luteal cells. Similarly, PGE2 also induced increases in free intracellular calcium but required doses 20-fold greater than PGF. When PGE2 (1, 10 or 100 nM) was incubated with PGF (100 nM) increases in free intracellular calcium induced by PGF were attenuated (P<0.05) when measured 5 min, but not at 30 min, after initiation of treatment. The observed decrease in the concentration of free intracellular calcium at 5 min in response to PGF was the result of fewer cells responding to PGF. In addition, the concentrations of free intracellular calcium attained in the cells that did respond was reduced 25% compared to cells treated with PGF alone. Thus, part of the luteal protective actions of PGE2 appears to involve an inhibition of the early (5 min) increase in free intracellular calcium induced by PGF.  相似文献   

13.
Two experiments were conducted to determine whether the increased serum LH which occurs within 12 hr after a luteolytic dose of PGF is dependent upon changes in progesterone or estradiol secretion. In the first experiment, exogenous progesterone abolished the increase in serum LH caused by a subcutaneous injection of 25 mg PGF in diestrous heifers, but not in ovariectomized heifers. In the second experiment, progesterone pessaries were removed at 6 hr after a subcutaneous injection of 25 mg PGF. LH remained at pre-PGF values while the pessaries were in place, but began to increase within 1 hr after they were removed. Blood estradiol also remained at pre-PGF values until the pessaries were removed, and began to increase at 2 hr after pessary removal. We conclude that the increase in serum LH within 12 hr after PGF treatment in diestrous cattle is dependent upon withdrawal of progesterone; it is not due to increased serum estradiol.  相似文献   

14.
The effects of a luteolytic dose of prostaglandin F on follicular development within the ovary of pregnant mice were studied and vitro. The results showed that 1) PGF reduced the number of growing primary follicles both and , 2) , progesterone and LH/FSH override this effect of PGF and 3) progesterone suppresses the rate at which primary and preantral follicles grow. It is concluded that in the ovary of the pregnant mouse, progesterone regulates the number of primary follicles which start to grow; while gonadotropins and intraovarian progesterone levels control the rate at which primary and preantral follicles develop.  相似文献   

15.
The results of the present study establish that 1.5 mg PGE2 (lyophilized sodium salt) incorporated in one cm long open-ended Silastic-polyvinylpyrrolidone (PVP) tube when inserted into 10 day pregnant rats induced abortion within 70–72 hours in all the treated rats. A combined treatment of PGE2 and 17β-estradiol failed to increase the abortion inducing effect of a Silastic-PVP-PGE2 tube. It is observed that PGE2 is about 4 times less potent than PGF in inducing midterm abortion in rats. It is suggested that either PGE2 exerts luteolytic effect after being converted to PGF, although how it occurs is not clear; or PGE2 causes expulsion of the fetuses by its uterine stimulating property. 17β- estradiol increases the uterine synthesis of PGF as described earlier but seems not affecting the production of PGE2 by the uterus. The release rate of 3H-PGE2 from Silastic-PVP tube and is also described.  相似文献   

16.
17.
Estrus induction in cycling sows with exogenous prostaglandin is hindered by the extended refractory period and resistance of swine to the luteolytic action of PG's. The luteolytic potency of a novel PGF analogue, Schering ZK 71677, was assessed at four different dosages in chronically cannulated cycling swine. Dosages totalling 1, 1.5, 3 and 10 mg of ZK 71677 were split into two injections given intramuscularly on day 13 of the estrous cycle. Onset of behavioural estrus and serum levels of progesterone and PGF metabolite were monitored. The three lowest doses did not advance estrus but did cause a transitory decline in serum progesterone concentration on day 13. The 10 mg level advanced estrus in three of four sows although the overall mean cycle length did not differ from pretreatment cycles (18.5 ± 1.3 vs 21.3 ± 0.6 days). Progesterone values droppd steadily in all four sows in the 10 mg treatment group. No level of ZK 71677 affected serum levels of PGF metabolite. The highest level tested of PGF analogue ZK 71677 elicited an uninterrupted decline in serum progesterone concentrations but was inconsistent in its ability to promote early onset of behavioural estrus in swine.  相似文献   

18.
One evidence for a luteolytic role for prostaglandin F2α in the human is the increase in luteal PGF at times corresponding to luteolysis as reported earlier by us and other groups. There have been other contradictory reports on this point. In the present experiments we have measured the concentrations of PGE and PGF in 16 more human corpora lutea and have determined the capacity of those tissues to form PGE and PGF in vitro. PGF concentrations were highest in the mid luteal phase but were accompanied by high PGE concentrations. On the other hand, in the late luteal phase PGF concentrations, lower than in mid luteal but generally higher than in early luteal phase, were significantly higher than PGE concentrations. This pattern in PGE and PGF concentrations was also evident in the capacity of these tissues to form these compounds in vitro. In view of the known capacity of PGE2 to counteract the luteolytic effect of PGF2α, these variations in the relative concentrations of PGE and PGF during the luteal phase may be of significance in the process of luteolysis in the human.  相似文献   

19.
O.J. Ginther  M.A. Beg 《Theriogenology》2009,72(8):1111-1119
The temporal relationships between a pulse of 13,14-dihydro-15-keto-PGF (PGFM) and the concentrations of circulating hormones during the luteolytic period were studied for 11 pulses in 11 mares (Equus caballus) using samples collected hourly. Mean PGFM pulses encompassed 4 h before to 4 h after the peak, and hormone data were normalized to the PGFM peak (Hour 0). Concentration of progesterone decreased (P < 0.05) between Hours –4 and –3 and continued to decrease linearly throughout the PGFM pulse. The concentrations of cortisol and prolactin increased (P < 0.004) during Hours –4 to 0 and decreased (P < 0.002) during Hours 0 to 4. Estradiol concentration increased (P < 0.02) during Hours –4 to 0 but did not change significantly after Hour 0. Concentrations of follicle-stimulating hormone and luteinizing hormone did not change significantly during the PGFM pulse, and the oxytocin results were equivocal. Percentage of corpus luteum area with color-Doppler signals of blood flow did not change significantly between Hours –4 and 0 and first began to decrease (P < 0.004) between Hours 0 and 2. Results demonstrated that concentrations of progesterone decreased linearly during a PGFM pulse, and cortisol, prolactin, and estradiol increased during the ascending portion of the pulse. The progesterone and gonadotropin results supported the hypothesis that the initial progesterone and gonadotropin increases that have been reported to occur in response to a single bolus luteolytic treatment with prostaglandin F do not occur in response to the natural secretion of prostaglandin F.  相似文献   

20.
A series of experiments were conducted to evaluate the effects of mode and frequency of administration and estrous cycle stage on the response of the cycling ewe to PGF. The effects of dexamethasone, arachadonic acid and prostaglandin synthetase inhibitors on estrous cycle length and plasma progesterone levels were also determined.Intramuscular administration of 5 or 10 mg of PGF, on days 8 and 9 after estrus (5 ewes/group), significantly (p<.01) shortened the mean length of the estrous cycle and the interval from the end of treatment to estrus. Mean plasma progesterone levels, 24 hours after initial injection, were significantly (p<.01) lowered. When administered on day 8 only, these doses were considerably less effective in shortening estrous cycle length or lowering plasma progesterone levels. Intravaginal administration of PGF, by polyurethane tampon, was also largely ineffective.Treatment of ewes with 10 mg of PGF i.m., on days 3 and 4 of the estrous cycle, resulted in a return to estrus in 2 days in 25% of the treated animals. Plasma progesterone levels of PGF-treated ewes were significantly lower than controls on the second, third and fourth days after the start of dosing. It would appear that PGF exerts a retarding effect on developing CL functionality.The prostaglandin synthetase inhibitors, aspirin, flufenamic acid and 1-p-chlorobenzylidene-2-methyl-5-methoxy-3-indenylacetic acid, were administered orally or parenterally for 16 days beginning on day 8 of the estrous cycle. These compounds failed to prolong estrous cycle length. Parenteral administration of dexamethasone did not result in PGF release in the cycling ewe, at least not in quantities sufficient to induce luteolysis. The prostaglandin precursor, arachadonic acid, also was not luteolytic when given parenterally to cycling ewes.  相似文献   

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