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Biomedical subjects

B Nock

Publications and source records attributed to B Nock.

At least 19 recordsLinked to original sources

Conformationally readdressed CCK-B/delta-opioid peptide ligands.

The sequence of a cholecystokinin (CCK) related peptide was modified to obtain analogues, which interact selectively either with CCK-B, or with delta-opioid receptors. Two kinds of peptides were designed, namely, the cyclic peptides of the H-Tyr-cyclo (D-Pen-Gly-Trp-L/D-3-transmercaptoproline)-Asp-Phe-NH2 sequence (compounds 1a and 1b, respectively), and the linear peptides of the H-Tyr-D-Val-Gly-Trp-L/D-3-trans-methylmercaptoproline-Asp-Phe- NH2 sequence (compounds 2a and 2b, respectively). The only difference between the chemical structures of the linear analogues compared to the cyclic ones is that one covalent bond has been eliminated and a sulfur atom is replaced by a methyl group. Molecular modeling showed that, among low-energy conformers of cyclic compounds 1, there are three-dimensional structures compatible to the model for delta-receptor-bound conformer, suggested earlier [G. V. Nikiforovich, V.J. Hruby, O. Prakash, and C.A. Gehrig (1991) Biopolymers, vol. 31, pp. 941-955]. Results of binding assays fully supported the rationale for the design of compounds 1 and 2. The cyclic analogue 1a has Ki values of 4.5 and > 5000 nM at delta- and mu-opioid receptors, respectively; and IC50 values of 1.6 and > 10,000 nM for CCK-A and CCK-B receptors, respectively. The results of this study demonstrate a possibility to redirect a peptide sequence that interacts with one type of receptors (CCK-B receptors) toward interaction with another type (delta-opioid receptors) belonging to a different physiological system. This redirection could be performed by changing the conformational properties of the peptide with very minimal changes in its chemical structure.

Amino Acid Sequence

Adverse effects of paternal opiate exposure on offspring development and sensitivity to morphine-induced analgesia.

We have shown previously that chronic morphine administration to adolescent male rats produced a number of gender specific deficits in their offspring. The purpose of the present studies was to extend our earlier observations by examining the acute, direct effects of morphine exposure to male rats on their fertility and the development of viable offspring. Sexually mature male rats were injected with a single dose of morphine (25 mg/kg) and 24 hr later were bred with drug-naive females. Fertility rates (vaginal plugs and pregnancies) were monitored throughout the breeding period as was the development of the offspring. Our results showed that a large, acute dose of morphine given to drug-naive male rats 24 hr before the initiation of breeding had no effect on fertility rates, but produced several adverse effects on fetal outcome. Litter sizes in morphine-derived offspring were considerably smaller than in controls and mortality rates were more than 6 times higher. Moreover, morphine-derived male, but not female, offspring had a significantly enhanced sensitivity to the antinociceptive effects of morphine. Collectively, these data suggest that acute paternal morphine exposure just before breeding with drug-naive females had no effect on fertility, but exerted negative effects on the viability and development of their offspring. These results represent the most compelling evidence to date that paternal opiate exposure can adversely affect fetal outcome and are particularly striking in that they were produced by a single injection of morphine. We are aware of no animal studies, clinical cases or anecdotal reports in humans in which such a phenomenon has been described.

Analgesia

Acute alcohol exposure markedly influences male fertility and fetal outcome in the male rat.

Although it is recognized that drugs ingested by pregnant females produce marked cognitive and physiological deficits in their offspring, the possibility that paternal exposure to drugs prior to mating may have adverse effects on fertility and fetal outcome has not received much attention. The purpose of the present studies was to examine whether a single, acute exposure to alcohol influences the subsequent ability of adult male rats to mate and produce healthy and viable litters. Our results showed that a relatively large dose of alcohol 24 hours prior to breeding had little effect on the mating behavior of male rats, but there were markedly fewer pregnancies in females mated with alcohol-exposed male rats than in controls. Of equal importance, we found that, even when conception occurred and live births were produced, there were striking differences in fetal outcome. Alcohol-treated males sired many fewer pups than control males and there was a markedly enhanced mortality rate in their offspring. Collectively, these data suggest that acute paternal alcohol administration 24 hours prior to breeding does not affect mating behavior, but results in a greatly diminished fertility rate and fewer and less viable offspring. These studies suggest that paternal alcohol use may be as important as maternal alcohol abuse as a negative variable in pregnancy and fetal outcome.

Animals

Acute paternal alcohol exposure impairs fertility and fetal outcome.

An acute injection of an intoxicating dose of alcohol to male rats 24 hours prior to breeding with drug-naive females produced no discernible effect on copulatory activity, as reflected in vaginal plugs, but resulted in markedly (> 50%) reduced pregnancy rates. Fetal outcome was also markedly affected in offspring sired by alcohol-treated males: litter sizes were appreciably smaller (30%) and fetal mortality was more than 2 times higher than in controls. These results suggest that paternal alcohol use, like maternal alcohol abuse, may adversely affect fertility and fetal outcome.

Alcoholic Intoxication

Chronic corticosterone treatment impairs spontaneous alternation behavior in rats.

The present study used behavioral and morphological measures to assess hippocampal integrity in adult male rats after 8 weeks of daily corticosterone (10 mg/kg) injections. Behavioral testing during the final week of treatment revealed that spontaneous alternation behavior, a behavioral marker of hippocampal damage, was reduced in experimental animals without influencing exploration. Physiological assessment indicated that steroid exposure produced functional changes characteristic of prolonged exposure to stress or elevated plasma corticosterone, i.e., lower body weight and thymic involution. However, hippocampal cell loss was not observed in experimental rats. The data suggest that prolonged elevation of plasma corticosterone may significantly disrupt a hippocampal-sensitive behavior without producing gross morphological changes.

Animals

Extracti-Gel D chromatography is a simple, efficient method for removing digitonin during receptor purification: application to the kappa 1 opioid receptor.

Digitonin is widely used for extracting active neurotransmitter receptors from membranes. However, its low critical micellar concentration has made its removal from samples problematic. Here we report that digitonin can be efficiently removed (> 90%) from solution using Extracti-Gel D, a detergent-absorbing matrix. Active kappa 1 opioid receptors solubilized from brain survive Extracti-Gel D chromatography with a recovery of 50-55% and 25% dilution by added volume. The loss of receptor and the dilution, however, are compensated for to a large extent by the disinhibition of binding that results from the removal of digitonin. Extracti-Gel D chromatography had little or no effect on the apparent equilibrium dissociation constant for [3H]U-69,593 binding to the kappa 1 receptor. We conclude that Extracti-Gel D column chromatography is a simple, highly efficient and practical method for markedly reducing the concentration of digitonin in biological samples. Application of the procedure should allow characterization of digitonin-solubilized receptors with minimal complications from bound digitonin and extend the usefulness of digitonin to studies going beyond the initial stages of receptor purification.

Absorption

Properties of the putative epsilon opioid receptor: identification in rat, guinea pig, cow, pig and chicken brain.

[3H]Ethylketocyclazocine, in the presence of mu, delta and kappa-1 blocking agents, labels a high-affinity, saturable binding site in rat brain which we previously concluded might be the beta-endorphin-selective epsilon opioid receptor. However, studies failing to establish clearly the existence of the site in species other than rat raised the possibility that it might be an artifact or a unique constituent of rat tissues. Neither appears to be the case. We report here that, like other types of receptors, the site is proteinaceous with a sulfhydryl group within the binding site itself. Furthermore, the site appears to exist in two interchangeable, GTP-gamma-S-sensitive states which are readily distinguished by beta-endorphin, but not (-)-[3H]ethylketocyclazocine, and which are likely to be the site coupled to and uncoupled from a G protein. The putative epsilon receptor is not a peculiarity of rat brain but is readily measurable in forebrain of guinea pig, cow, chicken and pig brain as well. In fact, in all of the species examined, it is more abundant than mu, delta or kappa-1 receptors, representing 38 to 55% of the total opioid receptor population. The binding selectivity profile for drugs and the structure-activity relationship for beta-endorphin analogs indicated that the pharmacological properties of the putative epsilon receptor in brain are remarkably correlated with those of the epsilon receptor that was first hypothesized to exist in rat vas deferens and of the epsilon receptor that has been hypothesized to mediate the supraspinal analgesic effects of beta-endorphin.

Animals

Naloxone does not reverse the inhibitory effect of morphine on luteinizing hormone secretion in prepubescent male rats.

Morphine and naloxone exert age-dependent effects on secretion of luteinizing hormone (LH) in the male rat. Morphine suppresses LH secretion at very early stages of development, well before puberty, whereas naloxone does not increase LH until after puberty. The mechanisms underlying these age-dependent effects of opiates on the hypothalamic-pituitary-gonadal axis in pre- and postpubertal rats are poorly understood at the present time. The purpose of the present studies was to examine one plausible explanation of these effects: that morphine and naloxone act through different receptors in the pubescent male rat than they do in adults to influence LH secretion. Specifically, we examined whether naloxone blocks the effects of morphine on LH in prepubescent and adult rats which would be anticipated if both drugs were exerting their effects on LH via the same opiate receptor. Surprisingly, we found that naloxone did not reverse the effects of morphine on serum LH levels in the prepubescent animal, although it fully reversed this effect in adults. This non-naloxone-reversible effect of morphine appeared to be specific to LH, since naloxone antagonized morphine's effects on several other hormones (e.g., prolactin and corticosterone) and completely attenuated morphine's antinociceptive activity in prepubescent rats. Additionally, naloxone precipitated a withdrawal syndrome in the prepubescent morphine-dependent animal that was quantitatively and qualitatively the same as in adults.(ABSTRACT TRUNCATED AT 250 WORDS)

Aging

Nitric oxide control of steroidogenesis: endocrine effects of NG-nitro-L-arginine and comparisons to alcohol.

Recent studies suggest that nitric oxide (NO) may regulate hormone biosynthesis and secretion. This was tested by treating male rats with NG-nitro-L-arginine methyl ester (NAME), a NO synthase inhibitor, and measuring serum and testicular interstitial fluid testosterone and serum corticosterone, luteinizing hormone (LH), and prolactin (PRL). The effect of NG-nitro-L-arginine (NA), a less-soluble form of the same NO synthase inhibitor, on the reproductive suppressant actions of alcohol was also examined. NAME increased testosterone and corticosterone secretion dose-dependently without affecting LH and PRL secretion. The alcohol-induced suppression of testosterone or LH secretion was not altered by treatment with NA. Although effects of NAME and NA on other systems may be involved, these results indicate that testicular and adrenal steroidogenesis are negatively regulated by endogenous NO and that NO does not regulate LH and PRL secretion or inhibit the testicular steroidogenic pathway in the same way as alcohol.

Analysis of Variance

A simple, highly sensitive assay for measurement of digitonin during receptor solubilization.

A simple and highly sensitive assay for measuring total digitonin in biological samples is described. The assay is based on the ability of digitonin to hemolyze red blood cells. The precision and reproducibility of the assay was excellent with intra- and inter-assay variabilities of less than 1% and 6%, respectively. The assay was used to evaluate several potential methods for removing digitonin from biological samples (digitonin extracts from guinea pig brain membranes). Dialysis and G-25 Sephadex chromatography were ineffective. However, protein and digitonin can be effectively separated by ammonium sulfate precipitation followed by dialysis. The kappa 1 opioid receptor survived these procedures with no change in affinity for [3H]U-69,593. In conclusion, the hemolytic assay for digitonin appears to provide a practical means for determining detergent concentrations during receptor purification and characterization and for evaluating potential methods for detergent removal. Although an in depth analysis of the assay was carried out only for digitonin, CHAPS and deoxycholate also caused 50% hemolysis at concentrations well below those commonly used for receptor solubilization and, therefore, the general assay procedures might have applicability for measurement of these and perhaps other detergents used in receptor solubilization as well.

Animals

Morphine suppresses the ovarian steroid hormone-dependent lordosis response of female guinea pigs: reversal by naloxone but not clonidine.

The opiate agonist morphine caused a dose- and time-dependent suppression of lordosis responding in ovariectomized guinea pigs treated with estradiol-17 beta and progesterone. The suppression of lordosis by morphine appears to be mediated by opiate receptors since the opiate antagonist naloxone blocked its effects both in terms of the percentage of animals showing lordosis and the duration of individual responses. Naloxone, when given alone, did not affect lordosis responding in estradiol-17 beta + progesterone-primed animals and did not induce lordosis in animals primed with estradiol-17 beta alone. Thus, endogenous opioids might not tonically inhibit lordosis under the physiological conditions examined. The alpha-noradrenergic agonist clonidine did not reverse the effects of morphine on lordosis. Thus, the inhibitory effects of morphine on this behavior might be independent of its presynaptic effects on norepinephrine release in brain.

Animals

Influence of morphine exposure during adolescence on the sexual maturation of male rats and the development of their offspring.

The effects of adolescent morphine exposure on the sexual maturation of male rats, their reproductive capacity and the development of their progeny were examined. Groups of prepubescent male rates (25-27 days of age) were implanted with morphine- or placebo-pellets (one on Day 1, then two pellets on Days 4, 7 and 10); the pellets were not removed to assure the sustained release of morphine for 3 to 4 weeks and to avoid the confounding effects of a precipitated withdrawal syndrome. Groups of animals were sacrificed at weekly intervals through adulthood for an assessment of reproductive endocrine function. A large group, however, was also bred with drug-naive primiparous females at 85 days of age (8 weeks after morphine or placebo pellet implantation), when the acute and chronic effects of morphine on reproductive endocrine parameters had dissipated; their fertility and the development of the male and female progeny was characterized. Our results indicated that morphine exposure during adolescence led to a pronounced inhibition of a number of indices of sexual maturation (e.g., serum testosterone and luteinizing hormone levels and reduced weights of the testes and seminal vesicles). Breeding morphine- and placebo-implanted male rats with drug-naive females resulted in smaller liters derived from morphine-treated fathers when compared to controls, but in all other respects the development of the offspring in the two groups were equivalent. However, upon reaching adulthood, a number of selective endocrine differences were detected in morphine-derived offspring when compared to controls.(ABSTRACT TRUNCATED AT 250 WORDS)

Animals

Muscarinic cholinergic receptors in the songbird and quail brain: a quantitative autoradiographic study.

In order to clarify the neuroanatomical basis for postulated muscarinic cholinergic control of a wide array of physiological processes in birds, the distribution of muscarinic cholinergic receptors in the brain of three avian species was investigated by quantitative autoradiography. The species consisted of two passerines (songbirds), the European starling (Sturnus vulgaris) and the song sparrow (Melospiza melodia), and one galliform, the Japanese quail (Coturnix coturnix japonica). [3H]N-methyl scopolamine (NMS), a muscarinic cholinergic antagonist was used as the ligand to label the receptors. Initial experiments demonstrated that the binding of this ligand in the three species is saturable in the nanomolar range and has a high affinity (Kd = +/- 0.6 nM). Displacement experiments revealed that three muscarinic ligands competed in an order of potency characteristic of the mammalian muscarinic receptor (i.e., atropine greater than oxotremorine greater than carbachol) for NMS binding in the avian brain. In all three species, portions of the basal ganglia, such as the parolfactory lobe and the paleostriatum augmentatum, exhibited the highest density of binding. On the other hand, the paleostriatum primitivum, the avian homologue of the mammalian globus pallidus, contained very few binding sites. Other telencephalic sites, such as the ventral and dorsal hyperstriatum, also revealed relatively high receptor density. However, the neostriatum and especially the ectostriatum showed much lower levels. In the hypothalamus, in all three species, specific binding could be observed in the ventromedial nucleus and adjacent areas. The paraventricular nucleus also showed moderate levels of binding density, especially in the two songbird taxa. At a more rostral level, the preoptic area showed low levels of binding. In the quail, the sexually dimorphic nucleus of the preoptic area was clearly outlined in the autoradiograms by the low level of binding sites compared to the surrounding areas. In the two passerine species, nuclei of the song system were identified by either high or low levels of NMS binding. High binding defined area X and the mesencephalic nucleus, intercollicularis (ICo). In contrast, the robust nucleus of the archistriatum and the magnocellular nucleus of the anterior neostriatum showed low levels of binding in comparison with the surrounding tissue. None of these nuclei were visible in the quail autoradiograms except for ICo, which appeared as in the passerines as a heavily labelled area surrounding the lightly labelled nucleus mesencephalicus lateralis pars dorsalis. In all three species, the hippocampal complex was devoid of NMS binding except for two lateral dark bands that were present along the entire rostral to caudal extent of the hippocampus.(ABSTRACT TRUNCATED AT 400 WORDS)

Animals

Affinity of drugs and peptides for U-69,593-sensitive and -insensitive kappa opiate binding sites: the U-69,593-insensitive site appears to be the beta endorphin-specific epsilon receptor.

In vitro competition studies with rat brain were performed to systematically define the characteristics of the [3H]U-69,593 binding site and of the site selectively labeled by [3H]EKC (in the presence of U-69,593 and mu and delta blocking agents). The [3H]U-69,593 site has a binding selectivity profile that corresponds to that of the kappa opiate receptor. That is, all kappa compounds, regardless of chemical class, and dynorphin A, the putative endogenous ligand for kappa receptors, bind to the site with high affinities, whereas mu and delta ligands and nonopiate compounds do not. The agonists U-69,593, ICI 197,067 and U-50,488 and antagonist nor-binaltorphimine were found to have a useful degree of selectivity for the site. The [3H]EKC site has opiate receptor characteristics and appears to be the most abundant opiate receptor in rat brain, but its binding selectivity profile is not that of a kappa receptor. Instead, this non-mu, non-delta, non-kappa site has the pharmacological properties that correspond to those of the beta-endorphin-specific, epsilon receptor that has been hypothesized to exist for some time. We could not identify any compound that is selective for the putative epsilon site. Of the more than 50 compounds tested, all were either equally potent at the [3H]U-69,593 and [3H]EKC sites or were more potent at the [3H]U-69,593 site.

Analgesics

Antagonist-induced up-regulation of the putative epsilon opioid receptor in rat brain: comparison with kappa, mu and delta opioid receptors.

We reported previously that in the presence of appropriate blocking agents [3H]ethylketocyclazocine selectively labels a non-mu, non-delta, non-kappa binding site with opioid receptor characteristics. We now report that chronic treatment with the opiate antagonist naltrexone dramatically increases the number of these binding sites in rat brain, as well as the number of mu, delta and kappa receptors. This finding further supports the concept that the [3H]ethylketocyclazocine site is an opioid receptor and previously reported evidence indicating that it might be the beta-endorphin-specific epsilon receptor that has been hypothesized to exist for some time. The affinity of naltrexone for the putative epsilon site in vivo appears to be similar to its affinity for mu and delta receptors, since a single 30-mg naltrexone pellet was sufficient to induce a maximal rate of up-regulation for all three types of sites. In contrast, a maximal rate of kappa receptor up-regulation requires at least four naltrexone pellets and, therefore, the affinity of naltrexone for this site in vivo appears to be considerably lower than for the other sites. Unexpectedly, we found that the naltrexone-induced increase in binding to all four types of receptors continued to increase through 60 days of naltrexone exposure, the longest treatment period examined, and that the increases in receptor binding were linear with exposure time. This finding is contradictory to the generally held view that antagonist-induced opioid receptor up-regulation in brain increases asymptotically, leveling off after a relatively brief treatment period.

Animals

Influence of chronic alcohol administration on representative indices of puberty and sexual maturation in male rats and the development of their progeny.

The effects of chronic alcohol administration on reproductive endocrinology in the developing male rat were examined. Prepubescent male rats (25 days of age) were maintained on an alcohol liquid diet or were pair-fed a control diet until early adulthood and selected indices of sexual maturation were examined at weekly intervals. To determine whether sexually immature animals were more sensitive to the effects of alcohol than adults, fully mature male animals were exposed to an identical period of alcohol exposure and comparisons were made between the two groups. The results demonstrated that alcohol significantly affected many of the primary indices of puberty and sexual maturation. The normal pubertal increases in serum testosterone levels, the weights of the testes and secondary sex organs and beta-endorphin levels in the hypothalamus were substantially reduced in alcohol-exposed animals compared with controls. In contrast to these results, the effects of alcohol on reproductive endocrinology in the fully mature animal were transitory and of considerably less magnitude. After a 2-week alcohol-free period, male rats exposed to alcohol during development were bred with drug-naive primiparous females. Although the same number of pregnancies resulted from matings between alcohol-exposed males and drug-naive females compared with controls, litter sizes were significantly smaller in alcohol-derived offspring than in controls. In all other respects, such as body weights, sex ratios, mortality rates and gross developmental features (eye opening, incisor eruption and testes descent), alcohol-derived offspring were identical with controls. Upon closer examination, however, significant disturbances were detected in alcohol-derived male offspring.(ABSTRACT TRUNCATED AT 250 WORDS)

Animals

Castration-induced changes in the response of the hypothalamic-pituitary axis to alcohol in the male rat.

In an attempt to determine the direct effects of alcohol on the hypothalamic-pituitary aspect of the hypothalamic-pituitary-gonadal axis, we examined the effects of alcohol on serum luteinizing hormone (LH) levels in the normal and testosterone-depleted castrated male rat. We found that within several days after castration (2-4 days) alcohol, at low to moderate doses, was only modestly effective in suppressing serum LH levels, whereas in sham-operated controls it was maximally effective at all doses tested. Surprisingly, at very high doses (4-6 g/kg), alcohol not only did not depress serum LH levels in long-term castrated rats, but elevated them by 2- to 4-fold when compared to saline-injected controls. The loss of sensitivity of the hypothalamic-pituitary axis to alcohol observed in castrated rats appeared to be selective, inasmuch as the mortality rate at high doses of alcohol was significantly (P less than .01) greater in castrated rats, when compared to sham-operated controls, and other measures of central nervous system impairment were equivalent in both groups. At the present time, it is difficult to explain this biphasic effect of alcohol on serum LH in the castrated animal, but our results are consistent with the hypothesis that the effects of alcohol on gonadotropin release may be dependent to a significant degree on the steroid milieu at the time of the experiments.

Aldehyde Dehydrogenase

Sex differences in cytosolic progestin receptors in microdissected regions of the hypothalamus/preoptic area of guinea pigs.

Cytosolic progestin receptors (CPRs) were measured in microdissected nuclei of the hypothalamus and preoptic area of male and female guinea pigs. Adult gonadectomized animals were given 3 daily injections of 20 micrograms/day estradiol benzoate (EB) or oil vehicle. 24 h later, animals were sacrificed and cytosolic progestin receptors were measured using the synthetic progestin 3H-R5020. CPR levels did not differ significantly between oil treated males and oil treated females in any brain areas examined. With EB treatment, males showed significant increases in CPRs in most of the brain areas in which females showed increases, i.e. in the medial preoptic area, the periventricular part of the preoptic area, the periventricular part of the anterior hypothalamus, the ventromedial nucleus of the hypothalamus, the periventricular part of the medial hypothalamus and the arcuate-median eminence. However, EB treated males showed significantly lower CPR levels than EB treated females in both the periventricular part of the preoptic area and the periventricular part of the medial hypothalamus.

Animals