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A M Dharmarajan

Publications and source records attributed to A M Dharmarajan.

At least 19 recordsLinked to original sources

DDC-4, an apoptosis-associated gene, is a secreted frizzled relative.

The differential display method has been used in our laboratory as a coincidence analysis to isolate genes expressed in common in each of three different rat tissues undergoing physiological apoptosis: mammary gland, ovarian corpus luteum and ventral prostate. The most interesting of these isolates, DDC-4, shows a clear association with apoptosis, its expression being confined to these three organs, and only during their involution. Using DDC-4 as probe, we screened a rat ovarian cDNA library to obtain full-length isolates. One isolate, Y81 clone 40, gives rise to a protein of approximately 40 kDa with coupled in vitro transcription/translation. Sequencing of this clone indicates an open reading frame of 1044 nucleotides encoding a protein of 39.7 kDa with a putative signal sequence. This clone exhibits a high homology with the cysteine-rich domain, i.e. the ligand-binding domain, of the fizzled gene family originally defined as tissue polarity genes in Drosophila. The homology of Y81 clone 40 is most extensive with the newly described secreted frizzled relatives, the frzb subfamily.

Amino Acid Sequence

The role of insulin-like growth factor-I (IGF-I) and estradiol in rabbit corpus luteum progesterone production.

To determine whether insulin-like growth factor-I (IGF-I) plays a role in rabbit corpus luteum (CL) physiology the authors examined: IGF-I expression, the effect of IGF-I on progesterone (P) production in vitro, and the interaction of IGF-I with estradiol, the primary luteotropin in the rabbit. Northern blot analysis revealed that IGF-I mRNA is present in the rabbit CL throughout pseudopregnanacy. An intact ovarian in vitro perfusion model and dispersed luteal cell culture were used to determine effects of IGF-I on P production and interactions with estradiol. IGF-I significantly stimulated P production compared to control medium by the isolated, intact perfused rabbit ovary and by dispersed, cultured luteal cells. Estradiol alone did not stimulate P production in vitro. Estradiol did augment IGF-I stimulated P production in the intact perfused ovary and in luteal cell culture. These findings support a role for IGF-I in rabbit CL P production.

Animals

Nitric oxide modulates human chorionic gonadotropin-induced ovulation in the rabbit.

OBJECTIVE: To examine the potential role of the L-arginine:nitric oxide pathway in hCG-induced ovulation in the rabbit. DESIGN: Randomized, controlled animal study. SETTING: University research laboratory. INTERVENTION(S): Nitric oxide synthase, the enzyme that produces nitric oxide (NO), was immunohistochemically localized in the ovary. NG-nitro-L-arginine methyl ester (L-NAME), an analogue of L-arginine, which inhibits the enzyme NO synthase, and the inactive D-enantiomer were administered in vivo and/or in vitro via an isolated, perfused ovary preparation during the periovulatory period. MAIN OUTCOME MEASURE(S): Rate of follicular rupture (ovulatory efficiency). RESULT(S): Immunohistochemical staining for NO synthase was localized specifically to the granulosa cell layer of the follicle and the endothelium and adventitia of ovarian blood vessels. In vivo administration of L-NAME significantly reduced the percentage of large follicles that ovulated in response to hCG (treated 24.6%, control 68.1%). Similarly, exposure of the in vitro-perfused ovary to L-NAME significantly reduced follicular rupture (treated 32.8%, control 64.2%). In contrast, addition of an equimolar concentration of D-NAME to the perfusion medium had no significant effect on the rate of ovulation (treated 83.3%, control 61.3%). CONCLUSION(S): The stereospecific inhibition of follicular rupture by the arginine analogue suggests that NO production by the ovary is an important feature of the normal physiologic processes of the periovulatory period.

Animals

Dietary carrot results in diminished ovarian progesterone secretion, whereas a metabolite, retinoic acid, stimulates progesterone secretion in the in vitro perfused rabbit ovary.

OBJECTIVE: To determine the effects of dietary carrots and retinoic acid on P secretion in the in vitro perfused rabbit ovary. DESIGN: Controlled experiment. SETTING: Laboratory. SUBJECTS: Sexually mature New Zealand white rabbits. INTERVENTION(S): Experiments were done in vitro using an isolated rabbit ovarian perfusion system after acute feeding of carrots or with in vitro exposure to retinoic acid. MAIN OUTCOME MEASURE(S): Progesterone and E2 were measured in aliquots taken from arterial and venous cannulas. RESULT(S): Progesterone secretion during the in vitro perfusion of six ovaries is significantly diminished after the acute feeding of carrots. Human chorionic gonadotropin-induced P secretion also is significantly reduced. Progesterone secretion during in vitro perfusion on day 1 of pseudopregnancy was significantly increased in the perfusate samples from ovaries taken from rabbits not acutely fed carrots but that were exposed to retinoic acid. Progesterone secretion was increased but only marginally significant on day 11 of pseudopregnancy in perfusate samples from ovaries exposed to retinoic acid. CONCLUSION(S): Rabbit ovarian P secretion may be modified by carrots and carotene metabolites. This effect on steroid secretion may contribute to the relationship between hypercarotenemia and alterations in menstrual function.

Animals

Effects of acetylsalicylic acid (aspirin) and naproxen sodium (naproxen) on ovulation, prostaglandin, and progesterone production in the rabbit.

OBJECTIVE: To determine the effects of acetylsalicylic acid (aspirin) and naproxen sodium (naproxen) on ovulation, ovarian prostaglandins (PG), and P production in the rabbit via in vivo and in vitro studies. DESIGN: Aspirin and naproxen were administered i.v. 6.5 and 7 hours, respectively, after hCG administration to New Zealand White adult female rabbits. Laparotomy was performed 24 hours after hCG administration. For in vitro experiments, control animals underwent laparotomy 6.5 (aspirin) and 7 hours (naproxen) after hCG administration. The treated animal received aspirin and naproxen; laparotomy was performed 1 hour later. One ovary was perfused for 6 hours with aspirin or naproxen whereas the contralateral ovary served as a control and was perfused with control medium (M199; GIBCO, Grand Island, New York). Perfusate samples were collected at 1-hour intervals for PG and P determination. SETTING: A conventional laboratory setting. INTERVENTIONS: In vivo experiments used i.v. administration of 100 mg/kg aspirin and 10 and 50 mg/kg naproxen. In vitro perfusion was also carried out with 100 micrograms/mL aspirin and 10 and 50 micrograms/mL naproxen added to the perfusate. MAIN OUTCOME MEASURES: Ovulatory efficiency (no. of ovulations/no mature follicles) and ovarian vein PG and P concentration were determined. RESULTS: Ovulatory efficiency was 88% for control, 41% for in vivo aspirin-treated, and 40% (10 mg/kg) and 0% (50 mg/kg) for naproxen-treated rabbits. Aspirin and naproxen were associated with decreased ovulatory efficiency when administered in vitro to both in vivo control and in vivo treated ovaries (control-medium = 70%; control-aspirin = 14%; aspirin-medium = 34%; aspirin-aspirin = 0%; control-naproxen = 25%; naproxen-medium = 38%; naproxen = 0% with 10 microgram/mL, and control-naproxen = 13%; naproxen-medium = 0%; naproxen = 0% with 50 micrograms/mL). Prostaglandin F2 alpha was undetectable in the perfusate of those ovaries perfused of those ovaries perfused either with aspirin or naproxen. Ovarian venous concentration of P in the perfusate was similar in all groups. CONCLUSIONS: Aspirin and naproxen significantly reduced ovulatory efficiency and PG production both in vivo and in vitro in hCG-treated rabbits. A critical period of 6.5 and 7 hours after hCG administration was established.

Animals

Effects of a gonadotropin-releasing hormone analog on rabbit ovarian function.

This study was undertaken to elucidate the effects of a GnRH analog (GnRH-a) on rabbit ovulation, oocyte maturation, and steroidogenesis, and to verify whether treatment with a GnRH-a interferes with ovarian response to exogenous gonadotropin (hCG), both in vivo and in vitro. Three approaches were used. In the first, adult New Zealand White (NZW) rabbits were divided into two groups. Both received PMSG and hCG administered 72 h after PMSG. In the test group a GnRH-a, leuprolide acetate (LA; 20 microg/kg) was administered s.c. every 24 h. Treated rabbits showed a significant decrease in ovulatory efficiency (control = 88%; treated = 72%), and an increase in degeneration rate of preimplantation embryos (control = 30% vs. treated = 40%). For the second approach, in vitro perfusion experiments were designed to compare the direct effects of LA (10.000 ng/ml) and hCG (50 IU) on ovarian function and to verify whether the presence of a GnRH-a in the perfusate modifies the actions of hCG. LA reduced the ovulatory efficiency of hCG-treated ovaries perfused in vitro (hCG-treated = 87%; hCG-treated LA-perfused = 70%), reduced the potential for preimplantation development (morula stage: hCG-treated = 53%; hCG-treated LA-perfused = 31%; LA-perfused = 12%), and increased the degeneration rate of early embryos (21%, 48%, and 56% respectively). In the third approach, the direct effect of LA (Group I: control, Group II:1.000 ng/ml, and Group III:10.000 ng/ml) on the in vitro maturation of denuded rabbit oocytes was evaluated. LA induced meiotic maturation, but increased oocyte degeneration rate. The potential for preimplantation development was reduced (Morula stage: control = 16%, Group II = 8%, and Group III = 6%), and degeneration rate was increased (38%, 65%, 63% respectively). This study suggests that pharmacological doses of LA may exert a negative effect on oocyte function by direct action on the oocyte, indirectly via alteration of the intrafollicular environment and/or through interference with gonadotropin-induced biological effects within the ovary.

Animals

Induction of myometrial 11beta-hydroxysteroid dehydrogenase type 1 messenger ribonucleic acid and protein expression late in rat pregnancy.

Myometrial function in pregnancy is regulated by a range of hormonal stimuli, including glucocorticoids, particularly in the period leading up to parturition. Glucocorticoid hormone action is dependent not only on expression of glucocorticoid receptor (GR) within target cells, but also on local expression of the enzyme 11beta-hydroxysteroid dehydrogenase (11betaHSD). Therefore, this study examined changes in myometrial 11betaHSD bioactivity and expression (messenger RNA and protein) of the 11betaHSD-1 isoform and whether 11betaHSD-1 and GR are colocalized to myometrial cells. Myometrial 11-oxoreductase activity (conversion of [3H]11-dehydrocorticosterone to [3H]corticosterone) was only just detectable (<6%) at the postestrus stage of the cycle and on days 5 and 10 of pregnancy, but then increased markedly by day 16 (45 +/- 2%). This activity increased further to maximal levels on day 22 of pregnancy (55 +/- 3%) and remained high on day 23 (term; 34 +/- 3%) before decreasing by 24 h postpartum (9 +/- 2%). High 11beta-dehydrogenase activity was evident before (87 +/- 1%) and during the first half (day 5,91 +/- 1%; day 10, 88 +/- 2%) of pregnancy, was lower on days 16 (55 +/- 2%), 22 (39 +/- 3%), and 23 (58 +/- 1%), then returned to prepregnancy levels 24 h postpartum (86 +/- 1%). The marked induction of 11-oxoreductase activity late in pregnancy was strongly and positively correlated with both 11betaHSD-1 messenger RNA expression (by Northern analysis) and protein (by Western analysis; r = 0.96 and 0.98, respectively; P < 0.001). Moreover, 11betaHSD-1 and GR immunoreactivity were colocalized to the smooth muscle cells of the myometrium and the uterine epithelium late in pregnancy. Collectively, these data demonstrate that a marked induction of 11betaHSD-1 expression occurs in the rat myometrium near term, and this is associated with increased 11-oxoreductase bioactivity. As GR is coexpressed in the myometrium, we suggest that the induction 11betaHSD-1 serves to enhance local glucocorticoid actions and thus facilitate parturition.

11-beta-Hydroxysteroid Dehydrogenases

RU486 inhibits ovulation, fertilization and early embryonic development in rabbits: in vivo and in vitro studies.

OBJECTIVE: To clarify the role of P in ovulation, fertilization, and early embryonic development using RU486, a potent P receptor blocker. DESIGN: Ovulatory efficiency, IVF, and early embryonic development were evaluated after RU486 administration in vivo and in vitro. SETTING: Research laboratory of a university hospital. PARTICIPANTS: Mature male and female New Zealand white rabbits. INTERVENTIONS: Animals were treated with RU486 or vehicle for 3 days before hCG-induced ovulation. Ovaries treated with hCG to induce ovulation were perfused for 6 hours in vitro with RU486 or vehicle. In vitro fertilization was performed in the presence or absence of RU486. MAIN OUTCOME MEASURES: The percentage of mature follicles ovulating (ovulatory efficiency) was determined after in vivo and in vitro treatment. Fertilization, morula, and blastocyst development were evaluated every 24 hours for 120 hours. RESULTS: RU486 significantly inhibited ovulation, fertilization, and early embryonic development. CONCLUSIONS: Progesterone plays a significant role in ovulation, fertilization, and preimplantation embryonic development.

Animals

Postischemic cerebral blood flow recovery in the female: effect of 17 beta-estradiol.

Female reproductive hormones are considered to be protective agents in atherosclerotic vascular disease and stroke. The present study determined if there are unique cerebrovascular responses in female animals to global cerebral ischemia and if 17 beta-estradiol is important to postischemic outcome in brain. Three groups of anesthetized, sexually mature rabbits were treated with normotensive four-vessel occlusion (6 min) and 3 h of reperfusion: females chronically instrumented with 17 beta-estradiol implants (EFEM; n = 8, plasma estradiol level = 365 +/- 48 pg/ml), untreated females (FEM; n = 8, estradiol = 13 +/- 3 pg/ml), and untreated males (M; n = 8, estradiol < limit of radioimmunoassay). CBF (microspheres) and somatosensory evoked potential (SEP) amplitude were measured during ischemia/reperfusion. Baseline hemispheric blood flow and regional flow distribution were not altered by chronic estradiol treatment. Hemispheric blood flow was equivalently reduced during ischemia in FEM and M (6 +/- 1 and 9 +/- 2 ml min-1 100 g-1, respectively); however postischemic hyperemia was greater in FEM than M (CBF = 257 +/- 27 and 183 +/- 27 ml min-1 100 g-1. However, EFEM experienced higher CBF during ischemia (e.g., 13 +/- 2 ml min-1 100 g-1) and less hyperemia (134 +/- 4 ml min-1 100 g-1 in hemispheres) in numerous brain regions than FEM. CBF at 3 h reperfusion was not different among the groups. Recovery of SEPs was incomplete and similar in all groups. We conclude that chronic exogenous 17 beta-estradiol treatment increases CBF during global incomplete ischemia and ameliorates postischemic hyperemia in the female animal.

Animals

Role of calcium/calmodulin-dependent protein kinase II in gonadotrophin-induced ovulation in in vitro perfused rabbit ovaries.

The objectives of these experiments were to determine (i) the role of calcium/calmodulin-dependent protein kinase II-mediated signal transduction in hCG-induced ovulation and (ii) whether there is an association between arachidonic acid metabolites, nitric oxide and calcium/calmodulin-dependent protein kinase II in the overall scheme of ovulation induction. Ovarian arteries were cannulated in situ, and the ovaries were excised and perfused in vitro. Ovulatory efficiency ([number of ovulated follicles/number of mature follicles > 1.5 mm] x 100) was calculated for each experiment. Calcium/calmodulin-dependent protein kinase II substrate induced ovulation in the absence of gonadotrophin (calcium/calmodulin-dependent protein kinase II substrate: 66.3%; control: 0%). In the next experiment, perfusion medium of the experimental ovary was supplemented with KN 62, a potent inhibitor of calcium/calmodulin-dependent protein kinase II, while the contralateral ovary served as control. Ovulations were induced in both ovaries with hCG (50 iu (150 ml)-1) and perfusion was continued for 8 h. In the third experiment, ovaries were perfused with prostaglandin F2 alpha (PGF2 alpha) with and without KN 62, while the contralateral ovary was perfused with medium alone. KN 62 reduced the ovulatory efficiency of hCG-treated ovaries in vitro during perfusion (hCG + 10(-7) mol KN 62 l-1: 32.9%; hCG: 80.9%). Furthermore, it significantly reduced the ovulatory efficiency of PGF2 alpha-treated ovaries (PGF2 alpha + KN 62 = 21.5%; PGF2 alpha = 59.9%).(ABSTRACT TRUNCATED AT 250 WORDS)

1-(5-Isoquinolinesulfonyl)-2-Methylpiperazine

Effect of exogenous oestrogen on blood flow and quantitative histology of the corpora lutea of pseudopregnant rabbits.

The effect of exogenous oestrogen on blood flow and quantitative histology of the corpus luteum were studied in pseudopregnant rabbits. Pseudopregnancy was induced with human chorionic gonadotrophin and an oestradiol capsule was implanted on day 0 of pseudopregnancy. Regression of the corpus luteum was initiated in the mid-luteal phase by removal of the capsule. Thirty-two New Zealand white rabbits were randomly allocated to four groups (eight rabbits per group) for studies of blood flow--control: oestradiol capsule not removed: -24 h: oestradiol capsule removed 24 h before blood flow measurements; -48 h: oestradiol capsule removed for 48 h; and -48 h/+48 h: oestradiol capsule removed for 48 h and then reimplanted for an additional 48 h. All blood flow studies were performed on day 11 of pseudopregnancy with radioactive microspheres. Quantitative histology was performed on a separate group of 16 rabbits allocated to the same groups as above (four rabbits per group). Blood flow to the corpus luteum was unchanged in the -24 h group, but declined by 44% in the -48 h group. Blood flow returned to control values in the -48 h/+48 h group. Quantitative histology revealed no changes in the -24 h group, but a significant decrease in volume of the corpus luteum and volume of the luteal cell cytoplasm in the -48 h group. Corpus luteum volume was fully restored and luteal cell cytoplasm volume was partially restored in the -48 h/+48 h group. In contrast, the number of luteal cells, vessel space volume and capillary surface area did not change with oestrogen withdrawal.(ABSTRACT TRUNCATED AT 250 WORDS)

Animals

Effect of interleukin-1 beta on ovulation in the in vitro perfused rabbit ovary.

Interleukin-1 (IL-1), a prominent 17-kilodalton member of a group of immune mediators referred to as cytokines, is secreted by a variety of immuno- and nonimmunocompetent cells. As IL-1 is an established mediator of inflammation, and ovulation may constitute an inflammatory-like reaction, consideration may be given to the possibility that IL-1 may play an intermediary role in the ovulatory process. Such a hypothesis is supported by the recent demonstration of the gonadotropin-dependent preovulatory induction of IL-1 transcripts at the level of the murine and human ovary. To date, however, the direct effect of IL-1 beta on the ovulatory process has not been examined. The objective of this study was to investigate the potential role of IL-1 beta in ovulation, oocyte maturation (nuclear and cytoplasmic), and subsequent fertilizability of in vitro ovulated oocytes. Rabbit ovaries perfused in vitro were used for these experiments. Ovarian arteries were cannulated in situ, and the ovaries were excised and perfused in vitro with or without IL-1 beta (18 ng/ml). The ovulatory efficiency of 18 ng/ml IL-1 beta-treated ovaries was 73.1%, similar to that of hCG (71.2%). Recovered oocytes were examined for their maturation and were inseminated in vitro to investigate fertilization, cleavage, and embryonic development. The fertilization rates of the 18 ng/ml IL-1 beta-treated and hCG-treated groups were 65.8% and 95.8% (P < 0.01), respectively. Cleavage rates of the IL-1 beta-treated and hCG-treated groups were 50% and 83.3% (P < 0.01), respectively. Most of the cleaved embryos from the IL-1 beta-treated group arrested at the four-cell stage, and only 2.6% of the fertilized embryos developed into the morula stage, whereas 54.2% of the hCG-treated group developed to the morula stage (P < 0.01). A cytotoxic effect of IL-1 beta is unlikely in this model. A more likely explanation is the induction of other factors by IL-1 beta, which may inhibit cytoplasmic maturation. Taken together, our findings demonstrate that in the absence of an ovulatory gonadotropic trigger, IL-1 beta can induce ovulation and oocyte maturation, facilitate fertilization, and influence subsequent embryonic development. Although fertilization and embryonic development occurred after IL-1 beta treatment, these rates were lower than those after hCG treatment. These observations give credence to the possibility that IL-1 may play an intermediary role in the ovulatory process.

Animals

Inhibition of gonadotrophin-induced ovulation in rabbits by perfusion with dibutyryl cAMP via reduction of ovarian prostaglandin production.

The role of cAMP in ovulation, oocyte maturation and prostaglandin production was assessed using a rabbit ovary preparation perfused in vitro. Dibutyryl cAMP (10(-3), 10(-4) or 10(-5) mol l-1) was added to the perfusate of one ovary. The contralateral, control ovary was perfused with medium alone. Thirty minutes after the onset of perfusion, 50 iu hCG was added to the perfusate of all ovaries. Dibutyryl cAMP inhibited hCG-induced ovulation in a dose-related fashion. No difference in ovum maturity or degeneration was found between control ovaries and ovaries treated with dibutyryl cAMP. Ovarian progesterone production was not affected by exposure to dibutyryl cAMP. The concentrations of 6-keto PGF1 alpha (the stable metabolite of prostacyclin) and PGF2 alpha in the perfusate of ovaries treated with dibutyryl cAMP were 49.6% and 32.0% of the control values, respectively, 12 h after hCG administration. Inhibition of 6-keto PGF1 alpha production by dibutyryl cAMP was dose related. Production of PGE2 was unaffected by dibutyryl cAMP. These data raise the possibility that continuous exposure to dibutyryl cAMP may inhibit hCG-induced ovulation in the perfused rabbit ovary via a reduction in PGF2 alpha and prostacyclin production.

6-Ketoprostaglandin F1 alpha

Changes in rabbit corpus luteum progesterone secretion and cellular morphology following unilateral luteectomy or ovariectomy.

The objective of this study was to determine whether removal of corpora lutea (CL) from one ovary (unilateral luteectomy; ULL) or removal of the entire ovary (unilateral ovariectomy; ULO) of pseudopregnant rabbits would cause compensatory growth and progesterone production by the contralateral ovary. Pseudopregnancy was induced in rabbits with hCG (Day 0). On the first day of pseudopregnancy, one group of rabbits received a sham operation (controls), another group underwent ULL, and a third group underwent ULO. On Day 11 of pseudopregnancy, each rabbit underwent laparotomy, the ovarian artery and vein were cannulated, and the ovary(ies) was removed and perfused in vitro for 6 h. The mean CL weight increased by 33% in the ULL group and by 28% in the ULO group as compared to sham-operated controls. Peripheral estradiol and progesterone levels in sham-operated control, ULL, and ULO groups were similar. Ovarian venous estradiol levels were similar in the control and ULL groups, but were significantly increased in the remaining ovary of the ULO group. Both ovarian venous progesterone in vivo and progesterone secretion in vitro increased significantly in contralateral ovaries from ULL and ULO rabbits as compared to sham-operated controls. Progesterone secretion by ovaries perfused in vitro increased significantly in the contralateral ovary of the ULL and ULO groups. Mean number of luteal cells per CL increased significantly in the ULL group, but not in the ULO group. In contrast, luteal cell volume increased significantly in the ULO, but not in the ULL group. The stimuli responsible for increased progesterone production following ULL and ULO result in morphological changes in the remaining CL.(ABSTRACT TRUNCATED AT 250 WORDS)

Animals

Epidermal growth factor inhibits follicular response to human chorionic gonadotropin: possible role of cell to cell communication in the response to gonadotropin.

Epidermal growth factor (EGF) affects follicular steroidogenesis and expression of gonadotropin receptors. The effects of EGF on hCG-induced estradiol and progesterone secretion and ovulation were examined in the in vitro perfused rabbit ovary. We also examined the effects of EGF on hCG-induced progesterone secretion by isolated granulosa cells. In addition, distribution of hCG within the follicle was probed by immunohistochemical means 30 min after its administration to the in vitro perfused ovary. EGF significantly (P less than 0.05) reduced hCG-induced secretion of estradiol (control, 117 +/- 12 pg/min.follicle; 10 ng/ml EGF, 55 +/- 10) and progesterone (control, 18.2 +/- 1.2 ng/min.follicle; 10 ng/ml EGF, 11.9 +/- 0.8) by the perfused ovary. In contrast, EGF did not inhibit hCG-induced progesterone secretion by isolated granulosa cells. Ovulatory efficiency (number of ovulated ova per number of mature follicles x 100) when EGF was given 30 min before hCG was reduced dose-dependently from 58.2% with no EGF to 8.3% with 10 ng/ml EGF (P less than 0.001). Ovulation was not inhibited by EGF when it was given 30 min after hCG. Distribution of hCG in the preovulatory follicle was confined to the basement membrane, thecal cell layer, and a small fraction of the outer granulosa cell layer. These observations suggest that gonadotropin stimulates the follicle through the release of a secondary signal(s) from ligand-bound granulosa cells near the follicle wall to unexposed cells of the inner avascular area. EGF may inhibit the follicular response to hCG by attenuation of this cell to cell communication.

Animals

Interleukin-1 is both morphogenic and cytotoxic to cultured rat ovarian cells: obligatory role for heterologous, contact-independent cell-cell interaction.

An increasing body of information now suggests that intraovarian interleukin-1 (IL-1) may play an intermediary role in the ovulatory process. Given that follicular rupture inevitably requires marked tissue remodeling and possibly cell death, we set out to examine the morphogenic potential of IL-1 under in vitro circumstances. Treatment of freshly plated whole ovarian dispersates from immature rats with any one of several batches of IL-1 (10 ng/ml) for up to 96 h produced marked time-dependent morphological alterations, including cellular retraction, rounding, clumping, aggregation, blebbing, swelling, and, ultimately, irreversible detachment. Evidence of (asynchronous) cell death consisted of reduced total cell number, diminished cellular protein content, enhanced cellular release of lactic dehydrogenase, failure to exclude trypan blue, and attenuated reduction of the tetrazolium dye 3-[4,5-dimethylthiazol-2-y]2,5-diphenyltetrazolium bromide to spectrophotometrically detectable formazan. Comparable results were obtained when using established day 4 cultures, arguing against a possible critical action of IL-1 at the time of plating. Dose-response curves revealed IL-1 beta (EC50, 0.2-0.4 ng/ml) to be substantially more potent than IL-1 alpha (EC50, 2.7-2.8 ng/ml). Importantly, the concurrent provision of an IL-1 beta-directed polyclonal antibody yielded complete immunoneutralization of the IL-1 beta effect, arguing against the possible involvement of a non-IL-1 contaminant. An unrelated polyclonal antiserum raised against insulin-like growth factor-I was without effect. IL-1 action proved relatively specific, in that tumor necrosis factor-alpha (10 ng/ml), a putative cytotoxic principle, as well as IL-1-inducible ILs (IL-2 and -6; 100 U/ml) were without effect. Although minimally effective at the level of the isolated granulosa or theca-interstitial cell, IL-1 proved highly potent in heterologous (but not homologous), contact-dependent and independent cocultures of these somatic cell types, strongly suggesting obligatory cell-cell cooperation. These observations further indicate that IL-1 action is indirect and may require the induction of an intermediary soluble principle to serve as the final effector. Taken together, these findings indicate that relatively low concentrations of IL-1 (beta >> alpha), possible of somatic ovarian cell or resident ovarian macrophage origin, are capable of exerting specific dose- and time-dependent (immunoneutralizable) morphogenic as well as cytotoxic effects at the level of ovarian cells.(ABSTRACT TRUNCATED AT 400 WORDS)

Animals

The role of protein kinase-C in gonadotropin-induced ovulation in the in vitro perfused rabbit ovary.

Tumor-promoting phorbol esters are believed to affect ovarian granulosa cell progesterone and prostaglandin (PG) production and possibly ovulation by activating protein kinase-C (PKC). The effects of phorbol esters and PKC inhibitors on ovulation, progesterone, and PG production were examined in an in vitro perfused rabbit ovary. The effect of tranexamic acid, an inhibitor of the conversion of plasminogen activator to plasmin, on phorbol ester-induced ovulation was also examined. Phorbol 12,13-dibutyrate (PdBU), a PKC stimulator, induced ovulation in a dose-related manner in the absence of gonadotropins (56%, 200 nM PdBU; 0%, 0 nM PdBU; P < 0.05). Perfusate progesterone levels were increased only after 600 nM PdBU treatment, and perfusate PGF2 alpha, PGE2, and 6-keto-PGF1 alpha were increased in a dose-dependent fashion (P < 0.05). Staurosporine, a potent inhibitor of the catalytic domain of PKC, and calphostin-C, a specific inhibitor of the diacylglycerol-binding region, inhibited hCG-induced ovulation in a dose-related manner. Gonadotropin-induced ovulation decreased from 73% without staurosporine to 19% with 1.0 microM staurosporine (P < 0.01). Calphostin-C reduced ovulatory efficiency from 60% to 24% (P < 0.01). However, neither inhibitor decreased progesterone or PGF2 alpha production by ovaries exposed to hCG. hCG-induced oocyte maturation was also unaffected by exposure to either staurosporine or calphostin-C. Tranexamic acid reduced phorbol ester-induced ovulatory efficiency from 67% to 37% (P < 0.05). These findings demonstrate that the calcium-dependent PKC pathway is instrumental in gonadotropin-mediated follicular rupture in the rabbit. Although PGs may play an important role in ovulation, they do not appear to be directly responsible for PKC-mediated follicular rupture.

Animals

Superoxide dismutase activity, lipid peroxide production and corpus luteum steroidogenesis during natural luteolysis and regression induced by oestradiol deprivation of the ovary in pseudopregnant rabbits.

The relationship of oxygen free radicals to corpus luteum function in rabbits was explored during various stages of pseudopregnancy, including natural and induced luteal regression. Induced luteolysis was achieved during mid-pseudopregnancy by removal of an oestradiol capsule placed at the onset of pseudopregnancy, which suppressed ovarian oestradiol production. Activity of manganese superoxide dismutase (Mn SOD) was significantly and positively correlated with ovarian progesterone production (P < 0.01) throughout pseudopregnancy and during natural regression. Oestradiol deprivation for 12, 24 or 72 h resulted in declines in Mn SOD activity and progesterone secretion, although Mn SOD rose and corpus luteum steroidogenesis was restored to normal when the capsule was replaced for 48 h before assessment, having been removed for 24 h. Lipid peroxide and progesterone concentrations were not correlated, although a significant rise in lipid peroxides in the luteal tissue was detected after deprivation of oestradiol for 72 h. Changes in progesterone production and Mn SOD activity were not associated with alterations in concentration of prostaglandin F metabolite. These data suggest that Mn SOD may be involved in regulating function of the corpus luteum during pseudopregnancy in rabbits and that oxygen free radicals may play a role in regression of corpus luteum in this species.

Animals