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Biomedical subjects

P V Holmes

Publications and source records attributed to P V Holmes.

At least 19 recordsLinked to original sources

Angiotensin II rapidly modulates the renal peripheral benzodiazepine receptor.

The effects of acute exposure to angiotensin II (AII) on the renal peripheral benzodiazepine receptor were studied in rats. As little as 37.5 micrograms of AII injected s.c. over an 80 min period caused immediate reductions in [3H]Ro5-4864 binding. Scatchard analysis revealed that the reduction in [3H]Ro5-4864 binding induced by AII was due to a drop in receptor density or Bmax. The influence of AII on the peripheral benzodiazepine receptor is similar to that of stress.

Angiotensin II

Impact of psychological dynamics of stress on the peripheral benzodiazepine receptor.

In an attempt to dissociate the relative impact of psychological vs. physiological concomitants of stress on the peripheral benzodiazepine receptor (PBR), the influence of stressor controllability and predictability was investigated in rats. In addition, the effect of a purely psychological stressor, contextually conditioned fear, was examined. The response of the PBR in rats confronted with a naturalistic threat, a cat, was also tested. Various peripheral and CNS tissues were analyzed. Specific binding of [3H]Ro 5-4864 was significantly reduced in the kidneys of subjects receiving either controllable or uncontrollable shock. Similar changes were seen in the kidneys of subjects receiving either predictable or unpredictable shock. Mean [3H]Ro 5-4864 binding in lung was reduced following both predictable and unpredictable shock, but only the reduction in the predictable shock group reached significance. Controllability appeared to protect against the stress-induced reduction in [3H]Ro 5-4864 binding in lung. Contextually conditioned fear only affected PBR in the olfactory bulb, and exposure to a cat was without effect. These data suggest that the PBR responds only to potent stressors, and psychological influences on the PBR are tissue specific.

Animals

Differential effects of anxiogenic central and peripheral benzodiazepine receptor ligands in tests of learning and memory.

Previous research has demonstrated that low doses of anxiogenic central benzodiazepine receptor (CBR) ligands, the beta-carbolines, improve performance in various learning and memory tests in animals if administered prior to training. The present experiments compared the effect of a beta-carboline (FG 7142) with that of a pharmacologically distinct anxiogenic compound, a peripheral benzodiazepine receptor (PBR) ligand, 4'-chlorodiazepam (Ro5-4864), in two tests of learning and memory in rats. As expected, FG 7142 significantly improved performance in a passive avoidance test. Ro5-4864 was without effect. In a shuttlebox escape test, Ro5-4864 significantly impaired performance while FG 7142 had no effect. The effect of Ro5-4864 was antagonized by the specific peripheral benzodiazepine receptor antagonist, PK 11195. These results indicate that the differential impact of CBR and PBR anxiogenic ligands on performance in aversively-motivated learning tests may be a reflection of their distinct pharmacologies.

Animals

Sexual dimorphism of stress-induced changes in renal peripheral benzodiazepine receptors in rat.

Adult male and female rats were exposed to either inescapable shock or no treatment. In vitro [3H]Ro 5-4864 (4'-chlorodiazepam) binding (1 nM) to peripheral benzodiazepine receptors (PRB) in both CNS and peripheral tissues indicated no gender differences in olfactory bulb, heart, lung or adrenal gland but a significant effect was observed in renal tissue. Female rats showed an attenuated stress-induced reduction (23%) in PBR in comparison to males (55%). This difference was shown to be an alteration of Bmax and not kD by Scatchard analysis. These data are the first demonstration of a sexual dimorphism in environmentally-induced alterations in PBR.

Animals

Central and peripheral benzodiazepine receptors: involvement in an organism's response to physical and psychological stress.

The present review discusses the current knowledge of the molecular pharmacology and neuroanatomical and subcellular localization of both the central benzodiazepine/GABA-chloride ionophore receptor complex and the peripheral benzodiazepine receptor. It then reviews all of the literature to date on how these two receptor sites are modulated by environmental stress. The possible role of these sites in learning and memory is also discussed. Finally, a theoretical model is presented which examines the differential, and perhaps complementary, alterations of these two sites in an organism's response to stress.

Animals

Interleukin-1 alpha modulates luteinizing hormone stimulated cyclic AMP and progesterone release from human granulosa cells in vitro.

This study examines the possible direct effect of interleukin-1 alpha (IL-1 alpha) upon human granulosa cells. The cells were isolated from follicles of stimulated cycles in women undergoing oocyte retrieval for in-vitro fertilization. Purified cell preparations were cultured for different time periods in the presence of IL-1 alpha and human luteinizing hormone (LH) or follicle stimulating hormone. IL-1 alpha stimulated basal as well as LH-induced progesterone accumulation. The response in terms of cyclic AMP was more complex, there was no effect of IL-1 alpha on basal cyclic AMP accumulation. However, at the highest concentration tested (50 IU/ml), IL-1 alpha enhanced cyclic AMP accumulation over that seen with LH alone. At a lower concentration, IL-1 alpha either had no effect or was slightly inhibitory to the LH-induced cyclic AMP accumulation, depending on the culture period. Our results, taken together with other findings, are compatible with the view that IL-1 alpha has a potential regulatory role in the granulosa-luteal cell transition in the human ovary.

Cells, Cultured

Platelet-derived growth factor is detected in human blastocyst culture medium but not in human follicular fluid--a preliminary report.

The content of PDGF in human blastocyst culture medium (n = 8), serum (n = 12), and FF (n = 17) from natural IVF cycles was determined by an RIA specific for PDGF B-chain. The blastocysts were cultured under serum-free conditions throughout development. The findings show that PDGF B-chain is released into the culture medium of human blastocysts and that serum is positive, whereas FF is negative for PDGF.

Blastocyst

Pentobarbital blocks the stress-induced decrease in [3H]Ro 5-4864 binding in rat kidney.

Exposure to environmental stress causes changes in the binding of [3H]Ro 5-4864 to peripheral benzodiazepine receptors (PBRs). The influence of the central nervous system (CNS) in these stress-induced modifications is unclear. The present study examined whether pretreatment with a dose-response regimen of sodium pentobarbital would impact the stress-induced reduction in renal PBR. Administration of either a sedative/ataxic (20 mg/kg) or hypnotic (60 mg/kg) dose of pentobarbital prior to stress blocks the stress-induced decrease of [3H]Ro 5-4864 binding to renal PBR in rat. These findings suggest that higher-order, supraspinal mechanisms play a critical role in marshalling the renal PBR changes in response to stress.

Animals

Prostaglandin-E2 released by pre-implantation human conceptuses.

This work investigates the production of prostaglandin E2 (PGE2), a well known modulator for the suppression of immune cells, by pre-implantation human conceptuses from the 4-cell stage to the hatched blastocyst and by cumulus oophorus cells, these being obtained from an IVF/ET program. Cumulus cell complexes cultured for 48 h produced considerable amounts of PGE2, necessitating complete removal of their influence on the conceptus cultures. All stages of the human conceptus studied produced PGE2 during 48-h cultures, the greatest amounts from late blastocysts, and from those cultured in media containing bovine serum albumin rather than human donor serum. Indomethacin-treated control blastocysts confirmed the synthesis and release from the human conceptuses. The production of PGF2a from human blastocysts could not be demonstrated.

Blastocyst

Inhibitors of lipoxygenase increase the ovulation rate in the in-vitro perfused luteinizing hormone-stimulated rabbit ovary.

In order to determine whether leukotrienes, products of the lipoxygenase pathway, are involved in ovulation, pairs of rabbit ovaries were treated with the lipoxygenase inhibitors nordihydroguaiaretic acid (NDGA) and caffeic acid (CA) while being perfused in vitro. The control ovaries from each rabbit received luteinizing hormone (LH) (1.5-2.25 micrograms ml-1) while the contralateral ovaries were treated with LH + NDGA (100 microM) or LH + CA (100 microM). The numbers of ovulations from both the LH + NDGA- and LH + CA-treated ovaries were significantly higher (P less than 0.05) than from their respective LH-stimulated controls. Treatment with NDGA alone in the perfusate did not cause any ovulation, while CA alone caused one ovulation from one of six ovaries perfused. Ovarian tissue levels of prostaglandins after 7 h of perfusion with LH + NDGA or with LH alone showed that, in five of the six ovaries perfused in this group, the tissue levels of PGE2, 6-keto-PGF1 alpha and PGF2 alpha were higher in the presence of NDGA. The mean differences were significant (P less than 0.05) for prostacyclin but not significant (P greater than 0.05) for PGE2 and PGF2 alpha. Our interpretation of the findings is that, when used for blocking the lipoxygenase pathway, NDGA and CA increase the substrate availability for the cyclo-oxygenase pathway of arachidonic acid metabolism, resulting in a net increase in prostaglandins. The increased ovarian levels of prostaglandins, especially prostacyclin, may cause the observed increase in ovulation rate. Consequently, although the leukotrienes may be involved in the mechanism of ovulation in the rabbit, their effects appear to be less pronounced than those of prostaglandins.

Animals

Ovulation in the isolated perfused rat ovary as documented by intravital microscopy.

Surface cell changes at the apices of preovulatory follicles and ovulations were documented in isolated perfused ovaries from immature rats treated with pregnant mare serum gonadotropin (20 IU) and 48 h later with human chorionic gonadotropin (hCG) (10 IU). A video camera coupled to an inverted microscope and a video recorder captured the preovulatory and ovulatory events at a cellular level. At around 8 h post-hCG, the follicular apex changed from a smooth and optically homogeneous appearance into a rough surface with bleb formation and extrusions of single cells through minute perforations (early stigma formation). At approximately 10 h, a sticky material formed a basketlike structure with trapped cells (late stigma formation). At 12 to 15 h, ovulation took place at a constant speed and with no contractions of the follicular wall. This indicates that ovulation can occur with no visible circumfollicular muscular activity. Furthermore, the observations of a leakage of cells over an extended period of time indicates that the follicular wall is partly digested several hours before ovulation occurs.

Animals

Evidence that the establishment of pregnancy requires activation of lipoxygenase and phospholipase-A2.

The present work investigates the possibility that lipoxygenase products are involved in the biochemical mechanisms of blastocyst implantation by utilizing nordihydroguaiaretic acid (NDGA) and caffeic acid (CA), inhibitors of lipoxygenase enzymes, and quinacrine (QU), an inhibitor of phospholipase-A2. It has been shown previously that inhibition of cyclooxygenase results in blockade of implantation. The inhibitors were dissolved in a standard medium and 5 microliter of the solutions were micro-injected into the uterine horns of day-4 pregnant mice. The contralateral horns acted as controls and received only vehicle. A sham-operated group provided normal controls. In 14 NDGA-treated mice, the control horns contained 40 implantations while the treated horns contained only 6 small implantations and 8 resorbing sites. These control horns were comparable to the sham controls. In 14 CA-treated mice, treated horns contained 17 small implantations plus 4 resorptions, whereas the control horns contained 26 small implantations and 4 resorptions. Twelve QU-treated mice exhibited 7 small implantations and 4 resorptions in the treated horns, plus 24 small sites and no resorptions in the control horns. Fourteen sham-operated mice had 95 implantation sites and no resorptions in their 28 horns. The results provide evidence for the involvement of the lipoxygenase enzymes and phospholipase-A2 in the initial implantation process and in the subsequent development of early pregnancy.

Animals

Studies on the mechanism of ovulation using the model of the isolated ovary.

Using the isolated perfused rabbit and rat ovaries as experimental models, we have studied various biochemical aspects of the ovulatory process. In rabbits, ovulations were induced by injecting hCG prior to the perfusion or by adding LH directly to the medium. In PMSG-treated rats, ovulations were induced by adding LH to the perfusion system. Steroids and other metabolites were analyzed in the perfusate and in follicular fluid. Steroid levels in follicular fluid were high early in the preovulatory development, but declined to very low levels 4 hours after LH stimulation. Levels of prostaglandins E and F rose as ovulation approached. In both perfusion models, indomethacin blocked ovulation without affecting steroid release or oocyte maturation. In the rabbit, PGF2 alpha reversed the indomethacin-induced inhibition and was able to induce follicular rupture by itself. Manipulations of the follicular fluid content of progesterone and estradiol to supraphysiological levels did not affect follicular rupture or oocyte maturation in the rabbit model. When the initial increase in LH-induced steroidogenesis was blocked by a 3 beta-ol-dehydrogenase inhibitor, ovulation was not affected. In rats, inhibition of estradiol production by an aromatase blocker did not affect the ovulatory process. When the endogenous formation of cyclic AMP is increased by pretreatment with a phosphodiesterase inhibitor, the LH-induced ovulation frequency increases in rabbits. Furthermore, forskolin, which increased the adenylate cyclase activity, stimulated steroidogenesis and induced follicular rupture. Recent experiments in the rat indicate that cyclic AMP acts on the ovulatory process via an effect on prostaglandin synthesis.

Animals

Ultrastructure of the early human implantation in vitro.

Four hatched human blastocysts obtained after in-vitro fertilization and development were placed on monolayer cell cultures of human endometrial epithelium, and subsequently examined by transmission electron microscopy. All four blastocysts became adherent to the monolayer and three implanted and exhibited outgrowth of their trophoblastic cells. During implantation the blastocysts differentiated into mural and polar trophoblastic cells, and embryonic cells including endodermal cells. The endometrial cells were displaced and stacked into a multilayer at the periphery of the implantation sites, allowing the trophoblastic cells to come in contact with the culture dish. The endometrial cells displayed local exo- or endo-cytosis where they contacted the trophoblastic cells. The trophoblastic cells were not observed to be phagocytosing endometrial cells. These observations suggest that human blastocysts portray an intrusive type of implantation during the initial stages.

Blastocyst

The influence of prostaglandin E2 and indomethacin on progesterone production and ovulation in the rabbit ovary perfused in vitro.

The effects of prostaglandin E2 (PGE2) on the ovulation process were studied in a recirculating perfusion model using ovaries from virgin rabbits. Ovulation frequency, time of ovulation, and progesterone release from the ovaries were examined after the addition of PGE2, either alone or with luteinizing hormone (LH) in the presence or absence of indomethacin. The stimulatory effect of LH on ovulation was totally blocked if the ovaries were exposed to indomethacin at the same time. Ovaries treated with PGE2 alone did not ovulate, and PGE2 was unable to restore indomethacin-blocked ovulation. Conversely, the frequency of ovulation was reduced in ovaries treated with PGE2 and LH compared with controls receiving only LH. There was no measurable difference in the pattern of progesterone release between ovaries simultaneously treated with LH and indomethacin and LH-treated controls. Ovaries exposed to PGE2 alone showed only a slight increase of progesterone release in the medium, while those treated with PGE2 in combination with LH in the perfusate showed a smaller progesterone release than those treated with LH alone. The results confirm the blocking effect on ovulation by indomethacin. PGE2 could not reverse this effect, but instead reduced the number of LH-induced follicular ruptures. Indomethacin had no effect on progesterone levels, while PGE2 (which alone showed a slight stimulating effect on the steroid concentration) together with LH counteracted the effect of LH on progesterone release.

Animals

The role of cyclic adenosine 3',5'-monophosphate in the ovulatory process of the in vitro perfused rabbit ovary.

LH alters ovarian steroidogenesis via adenylate cyclase (AC) activation and cAMP production. Although LH also initiates ovarian follicle rupture, evidence is lacking for involvement of cAMP in this process. This work explores the involvement of cAMP in the ovulation of in vitro perfused rabbit ovaries by comparing LH stimulation of ovaries with that of LH plus 3-isobutyl-1-methyl-xanthine (IBMX), (an inhibitor of phosphodiesterase) and of forskolin (a nonreceptor-specific activator of AC). Venous perfusates were analyzed for cAMP, progesterone, 17 beta-estradiol, and testosterone, ovaries were analyzed for cAMP, and ovulations were noted. LH, LH plus IBMX, and forskolin all increased tissue cAMP levels significantly after 0.5 h, the perfusate levels increasing rapidly thereafter reaching plateau levels, while tissue levels returned to control levels after 2.4 h. LH plus IBMX and forskolin significantly increased cAMP release over LH controls, LH plus IBMX increasing and forskolin decreasing the number of ovulations. Forskolin significantly increased progesterone release over LH controls and, although no other significant steroid differences were seen, strong tendencies existed. Although forskolin could induce ovulations and could induce significantly higher release of cAMP than LH, it resulted in a lower ovulation rate than receptor-specific LH. LH plus IBMX also induced significantly higher cAMP release than LH, as did forskolin, and resulted in a higher ovulation rate than both LH and forskolin. These findings suggest, not only that cAMP production alone is sufficient for ovulation, but also that the receptor specificity of the cAMP production is important for the number of ovulations. Since tissue levels of cAMP peak several hours before ovulation, the cAMP is probably inducing a metabolic pathway leading to ovulation.

1-Methyl-3-isobutylxanthine

Effects of high and low preovulatory concentrations of progesterone on ovulation from the isolated perfused rabbit ovary.

Rabbit ovaries were isolated surgically before the ovulatory gonadotrophin stimulation and perfused in vitro. Untreated, control ovaries never ovulated. Ovaries treated in vitro with ovine LH ovulated 10-14 h later and the oocytes had undergone germinal vesicle breakdown (GVB). LH induced increases in progesterone secretion from the treated ovaries. A 3 beta-hydroxysteroid dehydrogenase blocker ('Compound A') effectively reduced progesterone secretion into the perfusate and follicular fluid to very low levels but had no effect on ovulation rate or on oocyte maturation. Excessively high progesterone levels were obtained artificially in perfusates by addition of exogenous steroid; the number of ovaries ovulating was markedly reduced but there was no effect on oocyte maturation. It is concluded that the rise in progesterone that normally occurs immediately after the LH surge is not a prerequisite for ovulation in the rabbit. However, progesterone may have a modifying effect on LH-induced follicle rupture when at a pharmacologically high level.

3-Hydroxysteroid Dehydrogenases