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Biomedical subjects

H Simon

Publications and source records attributed to H Simon.

At least 73 records · Page 4Linked to original sources

Dose-dependent aversive and rewarding effects of amphetamine as revealed by a new place conditioning apparatus.

Amphetamine-induced place conditioning was evaluated in mice using a newly designed apparatus. It was demonstrated that this apparatus provides a neutral set of cues devoid of rewarding or aversive properties and can reveal place preference or aversion after pairings with drugs (amphetamine and morphine for preference and naloxone for aversion) known to produce such effects. Moreover, repeated pairings of environmental cues with either 2 or 3 mg/kg d-amphetamine resulted in significant conditioned place preference on a drug free test, whilst repeated pairings with a lower dose of the drug (1 mg/kg) resulted in significant conditioned place aversion. Finally, a small number of mice showed opposite responses in comparison with group means at low as well as at high doses of amphetamine. These results suggest that amphetamine may promote conditioned place preference or avoidance depending on dosage and individual susceptibility.

Amphetamine↗

Behavioral reactivity to novelty during youth as a predictive factor of stress-induced corticosterone secretion in the elderly--a life-span study in rats.

Inter- and intra-individual differences in hypothalamo-pituitary adrenal (HPA) axis activity and behavioral reactivity to novelty between young and old rats were evidenced in this longitudinal life-span study. Higher responders to novelty (HR) had a higher corticosterone secretion which showed a quicker increase with age than did the others (LR); the differences in response to novelty observed in youth were no longer apparent in the old rats. Response to novelty in youth is a predictive factor of accelerated aging of the HPA axis. These early changes, which precede the appearance of the memory deficits, may be a causal factor. Disappearance of behavioral and endocrinological inter-individual differences at 21 months highlights the importance of not restricting aging studies to old subjects.

Aging↗

Novelty-seeking in rats--biobehavioral characteristics and possible relationship with the sensation-seeking trait in man.

A behavioral trait in rats which resembles some of the features of high-sensation seekers in man has been characterized. Given that the response to novelty is the basis of the definition of sensation-seeking, individual differences in reactivity to novelty have been studied on behavioral and biological levels. Certain individuals labeled as high responders (HR) as opposed to low responders (LR) have been shown to be highly reactive when exposed to a novel environment. These groups were investigated for free-choice responses to novel environments differing in complexity and aversiveness, and to other kinds of reinforcement, i.e. food and a drug. The HR rats appeared to seek novelty, variety and emotional stimulation. Only HR individuals have been found to be predisposed to drug-taking: they develop amphetamine self-administration whereas LR individuals do not. They also exhibit a higher sensitivity to the reinforcing properties of food. On a biological level, compared to LR rats, HR animals have an enhanced level of dopaminergic activity in the nucleus accumbens both under basal conditions or following a tail-pinch stress. HR and LR rats differ in reactivity of the corticotropic axis: HR rats exposed to a novel environment have a prolonged secretion of corticosterone compared to LR rats. The association of novelty, drug and food seeking in the same individual suggests that these characteristics share common processes. Differences in dopaminergic activity between HR and LR rats are consistent with results implicating these dopaminergic neurons in response to novelty and in drug-taking behavior. Given that rats self-administer corticosterone and that HR rats are more sensitive to the reinforcing properties of corticosteroids, it could be speculated that HR rats seek novelty for the reinforcing action of corticosterone. These characteristics may be analogous to some for the features found in human high-sensation seekers and this animal model may be useful in determinating the biological basis of this human trait.

Animals↗

The antitumor agent cisplatin inhibits DNA gyrase and preferentially induces gyrB gene expression in Escherichia coli.

Cisplatin is a widely used anticancer agent that exerts its biological activity principally by damaging DNA. Although detailed knowledge exists concerning mechanisms that lead to cisplatin adducts in DNA, there are few insights into the processes that result in its antitumor action. To explore some of the cellular responses elicited by cisplatin treatment, we studied its influence on DNA supercoiling and DNA gyrase gene expression in E. coli. We found that cisplatin inhibits DNA gyrase in a concentration-dependent manner leading to a transient alteration of DNA supercoiling and to an induction of gyrase gene expression. The induction effect was asymmetrical, affecting gyrB stronger than gyrA. Furthermore, we studied the influence of cisplatin on the supercoiling activity of purified DNA gyrase in vitro and found that cisplatin was an efficient inhibitor of DNA gyrase in the standard assay. However, cisplatin was an excellent inhibitor when added to DNA gyrase before it could interact with its substrate. In this assay GyrB was also more affected by cisplatin than GyrA. This strongly suggests that cisplatin inhibits DNA gyrase primarily by direct interaction with the enzyme. The data from this work present evidence that further cellular responses following cisplatin treatment include DNA gyrase inhibition, altered DNA supercolling and enhanced DNA gyrase gene expression. This suggests an important role of DNA topology in the induction of defense mechanisms against the action of cisplatin in addition to the processes related to DNA damage and repair.

Antibodies↗

Intravascular ultrasound for evaluation of coronary arteries.

Intravascular ultrasound (IVUS) has emerged form a research tool to an intrinsic part of modern invasive cardiology. The main reason is the capability to obtain "in vivo" histology. For the first time it is possible to base decisions not only on lumenograms but also on vessel wall assessment. The capabilities of IVUS can be divided in its (a) diagnostic and (b) intervention associated potentials. Diagnostic strength of IVUS is the ability to monitor compensatory coronary artery enlargement as a response to arteriosclerosis, to assess intermediate lesions, to reveal occult left main stem disease, and angiographycally "silent" arteriosclerosis. The intervention associated potentials of IVUS are the ability to allow optimal device selection, i.e. rotablators in calcified lesions or atherectomy devices in large plaque burden. The effects of PTCA on vessel wall morphology can be studied in great detail and the effect on luminal gain can be assessed almost on-line. Several groups showed, that the residual plaque area even after angiographycally successful PTCA lies still in the range of 60%. A significant reduction of this number may influence longterm outcome after PTCA. Minimal luminal areas and residual plaque area after PTCA seem to be an indicator of restenosis, while the presence or absence of dissections seem to be less predictive. Intravascular monitoring of stent expansion led to high-pressure stent deployment with significant increase in post-procedural luminal diameters and finally the ability to withhold anticoagulation in patients with optimal stent deployment. In the future, integrated devices, like balloons on intravascular ultrasound catheters, steerable catheters, integrated flow and pressure transducers, tissue characterization, and 0.018 "intravascular ultrasound guide-wires will further enhance the usefulness of IVUS.

Angioplasty, Balloon, Coronary↗

Aberrant neural and cardiac development in mice lacking the ErbB4 neuregulin receptor.

Various in vitro studies have suggested that ErbB4 (HER4) is a receptor for the neuregulins, a family of closely related proteins implicated as regulators of neural and muscle development, and of the differentiation and oncogenic transformation of mammary epithelia. Here we demonstrate that ErbB4 is an essential in vivo regulator of both cardiac muscle differentiation and axon guidance in the central nervous system (CNS). Mice lacking ErbB4 die during mid-embryogenesis from the aborted development of myocardial trabeculae in the heart ventricle. They also display striking alterations in innervation of the hindbrain in the CNS that are consistent with the restricted expression of the ErbB4 gene in rhombomeres 3 and 5. Similarities in the cardiac phenotype of ErbB4 and neuregulin gene mutants suggest that ErbB4 functions as a neuregulin receptor in the heart; however, differences in the hindbrain phenotypes of these mutants are consistent with the action of a new ErbB4 ligand in the CNS.

Animals↗

Requirement for neuregulin receptor erbB2 in neural and cardiac development.

The receptor erbB2/neu is a member of the epidermal growth factor receptor (EGFR or erbB) family that also includes erbB3 and erbB4. Amplification of the erbB2/neu gene is found in many cancer types and its overexpression is correlated with a poor prognosis for breast and ovarian cancer patients. Investigation of the biology of erbB2 led to the identification of a family of ligands termed neuregulins which included the neu-differentiation factors, the heregulins, a ligand with acetylcholine-receptor-inducing activity and glial growth factor. Several lines of evidence suggest that heterodimerization of erbB2 with other erbB receptors is required for neuregulin signalling. Here we investigate the developmental role of erbB2 in mammalian development in mice carrying an erbB2 null allele. We find that mutant embryos die before E11, probably as a result of dysfunctions associated with a lack of cardiac trabeculae. Development of cranial neural-crest-derived sensory ganglia was markedly affected. DiI retrograde tracing revealed that the development of motor nerves was also compromised. Our results demonstrate the importance of erbB2 in neural and cardiac development.

Animals↗

Social stress increases the acquisition of cocaine self-administration in male and female rats.

The effect of social stress on the vulnerability to commence cocaine self-administration was examined in Sprague-Dawley rats repeatedly exposed to aggressive attack by a same-sex opponent. Both sexes were studied, since the factors influencing the acquisition of drug self-administration in females have not been defined. Male and female rats encountered an aggressive male or lactating female opponent on four separate occasions over the course of one week. Control male and female rats were not exposed to attack. All animals were implanted with jugular catheters, and six days later placed into the self-administration box, where a nose-poke in the designated 'active hole' resulted in a 20 microliters injection of cocaine (0.32 mg/kg). Nose-pokes in an 'inactive' hole had no effect. Male and female rats that had experienced social stress self-administered more cocaine than non-defeated controls. The difference between the stressed and non-stressed animals in the number of cocaine injections was not present during the first few days of exposure to cocaine, but became more pronounced over time. Social stress increased the number of responses for cocaine, but did not alter the number of non-specific responses. Sex differences in self-administration were not significant. Therefore, social status appears to be a potent influence in the onset of drug taking behavior in both male and female rats.

Aggression↗

Biochemical complementation studies in vitro of gyrase subunits from different species.

To investigate the functional equivalence of DNA gyrase subunits from different bacterial sources hybrid enzymes were formed using purified A and B subunits from three species of Streptomycetes, E. coli and B. subtilis. The activity of gyrase hybrids composed of heterologous gyr A and gyr B proteins and of the gyrases containing homologous subunits was characterized by binding studies and a cleavage assay with two different DNA fragments. Likewise the enzyme activity was monitored by the super-coiling and relaxation assay with pBR322 DNA. We found that cleavage reactions are largely determined by the source of the gyr B subunits whereas DNA supercoiling and relaxation reactions of pBR322 catalyzed by DNA gyrase are limited to a combination of homologous A and B subunits or of heterologous A and B subunits from the taxonomically related bacteria Streptomycetes.

Bacillus subtilis↗

Independent assignment of antero-posterior and dorso-ventral positional values in the developing chick hindbrain.

BACKGROUND: Cell patterning in the developing central nervous system seem to involve a coordinate system of positional information, in which specific fates are assigned to multipotent precursor cells by positional signals acting on the antero-posterior and dorso-ventral axes of the neural tube. Before neurons differentiate in the hindbrain, it becomes subdivided antero-posteriorly into a series of developmental compartments, the rhombomeres. When the rhombomeres are delineated from each other by interfaces at which cell mixing is transiently restricted, they are determined for expression of specific selector Hox genes that may encode aspects of their individual identity. To assess whether the phenotypic identities of the rhombomeres are also determined at this stage, we have analyzed the capacity of individual rhombomeres to realize specific neuronal fates when grafted heterotopically along both antero-posterior and dorso-ventral axes. RESULTS: When rhombomere 4 (r4) is grafted unilaterally to the r2 position, both facial motor neurons and contralateral vestibulo-acoustic efferent neurons differentiate, as normal, in the ventral region of the graft. These aspects of phenotypic identity therefore appear to have been determined at or before the time of grafting. When r4 is grafted to the r2 position with its dorso-ventral polarity inverted, both types of neuron again develop, but in the ventral region of the graft, in a position appropriate to the dorso-ventral pattern of the host, rather than their original dorso-ventral position. The change in fate of these cells is restricted, however, to the repertoire characteristic of the antero-posterior position of origin, in this case r4. CONCLUSIONS: Cells seem to 'know' details of their presumptive fate before more general features. At this stage of development, precursor cells in r4 seem to have been assigned an 'r4 fate', but remain multipotent in their choice of r4-specific cell type. Precursor cells seem to be committed to their fates according to position on an orthogonal grid, the coordinates of which are set (or read) independently and sequentially. Thus, at the 7-10 somite stage, dorso-ventral positional values are still labile, whereas antero-posterior values are already fixed.

Animals↗

Is there a need for guidelines for OB/GYN residents to use the laser?

BACKGROUND AND OBJECTIVE: With the developing technologies and the extensive use of different wavelength lasers for treatment of some gynecologic conditions, many residencies in the United States face pressure to give credentialing to residents wishing to utilize the laser(s). The objective of this study was to assess the need for credentialing. STUDY DESIGN/MATERIALS AND METHODS: A survey was sent to all U.S. program directors of obstetrics and gynecology. RESULTS: Of 281 surveys mailed, 138 responded (49.1%); 136 utilized some wavelength laser in the treatment of some gynecologic conditions. The most commonly used laser was the carbon dioxide (CO2), and the least used was the argon laser. Eighty-four programs (61.8%) had a written policy; 54 (38.2%) did not. Postgraduate courses were necessary in 81 programs (59.6%), leading to some form of credentialing. CONCLUSIONS: The vast majority of programs (98.6%) utilized some wavelength laser as a therapeutic modality in gynecology, and 73.5% of the residency programs would like standardized guidelines for residents.

Credentialing↗

Purification and characterization of the NADH-dependent (S)-specific 3-oxobutyryl-CoA reductase from Clostridium tyrobutyricum.

An NADH-dependent (S)-specific 3-oxobutyryl-CoA reductase from Clostridium tyrobutyricum was purified 15-fold with a yield of 46%. It was homogeneous by gel electrophoresis after three chromatographic steps. The apparent molecular mass was estimated by column chromatography to be 240 kDa. SDS-gel electrophoresis revealed the presence of 33 kDa subunits. Substrates of the enzyme were ethyl and methyl 3-oxobutyrate, 3-oxobutyryl-N-acetylcysteamine thioester, and 3-oxobutyryl coenzyme A. The specific activities were 340 and 10U (mg protein)-1 for the reduction of 3-oxobutyryl coenzyme A and ethyl 3-oxobutyrate, respectively; the Michaelis constants were 300 microM and 300 mM, respectively. The identity of 12 N-terminal amino acid residues was determined. The enzyme was used in a preparative reduction of substrate, yielding ethyl (S)-3-hydroxybutyrate (> 99% enantiomeric excess).

3-Hydroxyacyl CoA Dehydrogenases↗

Opposite effects on hippocampal corticosteroid receptors induced by stimulation of beta and alpha 1 noradrenergic receptors.

Central corticosteroid receptors play an important role in the regulation of the secretion of corticosterone. Although these receptors are thought to be regulated by circulating levels of corticosterone, there is evidence for direct neural control. For example, it has been shown that noradrenergic lesions can both increase and decrease corticosteroid receptors depending on the brain structure involved. In the present study, we investigated the role of different noradrenergic receptors in the rat, by examining the effect of the acute administration of agonists and antagonists of beta and alpha 1 noradrenergic receptors on hippocampal type I and type II corticosteroid receptor levels. The effects of these drugs were studied in adrenalectomized animals whose plasma levels of corticosterone were maintained in the physiological range by implantation of coritcosterone pellets. Our results show that the beta receptor agonist salbutamol (5 mg/kg) increased the number of type I and type II hippocampal corticosteroid receptors. This effect was blocked by the beta receptor antagonist propranolol (5 mg/kg), which had no effect on its own. In contrast, the alpha 1 receptor agonist phenylephrine (100 micrograms) reduced the number of type I and type II corticosteroid receptors, whereas the alpha 1 receptor antagonist prazosin (0.5 mg/kg) increased type I receptors. The effect of prazosin was attributed to an increase in the relative beta tonus resulting from blockade of alpha 1 receptors. Its effect was reversed by the simultaneous injection of the beta receptor antagonist propranolol. In conclusion, our results show that noradrenergic transmission can have both a facilitatory and an inhibitory action on central corticosteroid receptors by acting respectively on beta and alpha 1 noradrenergic receptors.(ABSTRACT TRUNCATED AT 250 WORDS)

Albuterol↗

Biosynthesis and assay of neurosteroids in rats and mice: functional correlates.

Pregnenolone (PREG), synthesized de novo in rodent brain, is the precursor of PREG sulfate (S) and progesterone (PROG). PROG is further converted to 5 alpha-pregnane 3, 20-dione (DH PROG) and to 3 alpha-hydroxy-5 alpha-pregnan-20-one (TH PROG). PROG, DH PROG and TH PROG have been measured in the brain of male and female rats. Neither PROG nor DH PROG disappeared from brain, contrary to plasma, after combined adrenalectomy (ADX) and gonadectomy (CX). Trilostane decreased PROG and increased PREG in the brain of CX+ADX rats and mice, in accordance with a precursor to product relationship. As previously described in CX male mice, the neurosteroid DHEA and its analog 3 beta-methyl-androst-5-en-17-one (CH3-DHEA) inhibited the aggressive behavior of female mice towards lactating female intruders. The decrease of biting attacks by DHEA was definitely more prominent in females neonatally imprinted with testosterone. The degree of inhibition of aggressive behavior was related to the decrease of PREG S concentrations in brain. The memory-enhancing effects of DHEA S and PREG S in male mice have been previously documented. Infusion of PREG S (12 fmol) into the nucleus basalis magnocellularis (NBM) of the rat after the acquisition trial enhanced memory performance in a two-trial recognition task (TTRT). Conversely, TH PROG (6 fmol), which potentiates GABAergic neurotransmission, disrupted performance when injected before the acquisition trial. Accordingly, we have found a positive correlation between the performances of 2-year-old rats in the TTRT and the concentrations of PREG S in the hippocampus, namely animals which performed best had the highest steroid levels.

Adrenalectomy↗

Stress-induced sensitization and glucocorticoids. I. Sensitization of dopamine-dependent locomotor effects of amphetamine and morphine depends on stress-induced corticosterone secretion.

Repeated exposures to stress sensitize motor and addictive effects of drugs of abuse. Recently, it has been shown that stress-induced behavioral sensitization depends on the secretion of glucocorticoids. We investigated if sensitization of dopamine-dependent effects of psychostimulants and opioids was influenced by glucocorticoid. Sensitization of the dopaminergic response to drugs is considered the neural substrate of behavioral sensitization and has been implicated in vulnerability to drug abuse. Dopamine-dependent effects of psychostimulants and opioids were evaluated by injecting either amphetamine into the nucleus accumbens (10 micrograms/side) or morphine into the ventral tegmental area (VTA) (1 microgram/side). The locomotor response to psychostimulants and opioids injected in these brain areas depends on the mesencephalic dopaminergic transmission. Drug-induced locomotion was compared in male rats in which corticosterone secretion was either in +tct or experimentally suppressed by an adrenalectomy associated with a substitutive treatment reproducing basal levels of the hormone. Eight days of food restriction (80% of the initial body weight) were used as a stressor. Suppression of stress-induced corticosterone secretion abolished food restriction-induced sensitization of the locomotor effects of intra-accumbens amphetamine and intra-VTA morphine. This effect was corticosterone dependent since the restoration of corticosterone levels in the range of those induced by stress totally reinstates sensitization. Our results suggest that glucocorticoids control stress-induced sensitization by changing the sensitivity of the mesencephalic dopaminergic transmission to drugs of abuse. Since dopaminergic effects of drugs are related to their addictive properties, secretion of glucocorticoids may be one of the factors determining the enhanced vulnerability to drugs observed in stressed subjects.

Amphetamine↗

Stress-induced sensitization and glucocorticoids. II. Sensitization of the increase in extracellular dopamine induced by cocaine depends on stress-induced corticosterone secretion.

Secretion of glucocorticoids seems to control stress-induced sensitization of the behavioral effects of drugs of abuse by acting on the mesencephalic dopaminergic transmission, the principal neural substrate of sensitization. In order to investigate the mechanisms of this interaction between glucocorticoids and dopamine, we studied the sensitization of the increase in extracellular concentration of dopamine induced by cocaine in male rats in which corticosterone secretion was either intact or blocked. Extracellular concentrations of dopamine were evaluated in the nucleus accumbens of freely moving animals by means of microdialysis. Metyrapone, an inhibitor of corticosterone synthesis, was used to block stress-induced corticosterone secretion. Food-restriction (90% of the initial body weight) was the stressor used to induce sensitization. It was found that metyrapone (100 mg/kg s.c. twice a day for 8 d) suppressed stress-induced sensitization of the increase in accumbens dopamine induced by cocaine (10 mg/kg, i.p.) and sensitization of cocaine-induced locomotion Metyrapone suppressed both the development and the expression of sensitization. Thus, sensitization was equally blocked when the metyrapone treatment started either 1 d before the start of food-restriction or 8 d later, that is, when food-restriction-induced sensitization to cocaine was already established. In conclusion, our results suggest that glucocorticoids modify sensitization of the behavioral effects of cocaine by acting on extracellular concentrations of dopamine. Since addictive properties of psychostimulants seem mediated by the increase in extracellular concentrations of dopamine they induce, these findings may have implications for the development of new therapeutic strategies of addiction.

Animals↗