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Biomedical subjects

B J Bowers

Publications and source records attributed to B J Bowers.

At least 19 recordsLinked to original sources

Point mutant mice with hypersensitive alpha 4 nicotinic receptors show dopaminergic deficits and increased anxiety.

Knock-in mice were generated that harbored a leucine-to-serine mutation in the alpha4 nicotinic receptor near the gate in the channel pore. Mice with intact expression of this hypersensitive receptor display dominant neonatal lethality. These mice have a severe deficit of dopaminergic neurons in the substantia nigra, possibly because the hypersensitive receptors are continuously activated by normal extracellular choline concentrations. A strain that retains the neo selection cassette in an intron has reduced expression of the hypersensitive receptor and is viable and fertile. The viable mice display increased anxiety, poor motor learning, excessive ambulation that is eliminated by very low levels of nicotine, and a reduction of nigrostriatal dopaminergic function upon aging. These knock-in mice provide useful insights into the pathophysiology of sustained nicotinic receptor activation and may provide a model for Parkinson's disease.

Animals↗

How nurses manage time and work in long-term care.

AIMS OF THE STUDY: The aim of this study was to better understand the ways in which conditions of work, including staffing, affect how nurses in long-term care (LTC) facilities do their jobs and the quality of care they provide. BACKGROUND: The research reported here was performed in the context of public policy debates about the relationship between staffing levels and quality in LTC. METHODS: In 1995 and 1996, interviews and participant observation were used to examine how 18 licensed nurses employed in two LTC facilities in the midwestern United States experience their day-to-day work. RESULTS: Time was an extremely salient work condition for the nurses interviewed. Under conditions of too little time and many interruptions, nurses compensated by developing strategies to keep up or catch up. These strategies included minimizing the time spent doing required tasks, creating new time and redefining work responsibilities. Although these strategies allowed nurses to complete the tasks for which they were accountable, there were adverse consequences for nurses and residents. Nurses realized that time demands often made it impossible to provide care of high quality. They expressed their ideas about quality care as the notion of 'should do' work. In effect, time pressures forced them to forego the 'should do' work to complete the 'must do' work. CONCLUSION: Increased staffing could improve the quality of care in LTC facilities.

Adaptation, Psychological↗

Mice lacking PKC gamma exhibit decreased anxiety.

To investigate the contribution of the PKC gamma isoform of protein kinase C (PKC) in neurochemical pathways regulating anxiety, mice lacking the gene encoding PKC gamma were tested with heterozygote and wild-type littermates in three approach-avoidance tests of anxiety. Null mutant mice consistently displayed a decrease in baseline anxiety-related behaviors in the elevated plus-maze, the black/white box, and the mirrored chamber. In the elevated plus-maze, mutant mice entered the open arms significantly more often and spent more time in the open arms of the maze. In the black/white box, transitions between the compartments were greatest in the null mutant mice, and in the mirrored chamber, mutant mice were markedly less anxious with significantly decreased latencies to enter and more time spent in the chamber. Indices of locomotor activity in the mazes and tests of activity in home cages indicated that the reduced anxiety observed in the mutant mice was not due to baseline locomotor activity differences among the genotypes. These results suggest that PKC gamma be considered as one factor in the etiology of anxiety, perhaps via its post-synaptic regulation of GABAA and 5-HT2 receptors, two receptors implicated in the neurobiology of anxiety.

Animals↗

Behavioural changes produced by transgenic overexpression of gamma2L and gamma2S subunits of the GABAA receptor.

Transgenic mice overexpressing either the mouse gamma2L or gamma2S subunit of the GABAA receptor were generated in a C57BL/6 J x DBA/2 J mixed background and expanded into transgenic lines. Transgenic mice and littermate controls were analysed with respect to altered behaviour indicative of anxiety, motor activity and acute effects of benzodiazepines and alcohol, as well as with regard to altered responses to alcohol withdrawal and acute functional tolerance to alcohol. Biochemical tests assessed flunitrazepam- and ethanol-enhanced 36Cl- flux stimulated by muscimol in cerebellar and cortical microsacs and [3H]-flunitrazepam binding to cerebellar membranes. There were no significant differences in any of these measures between the transgenic and control mice, except in tests of acute functional tolerance to acute injection of ethanol. Compared to controls, mice carrying either the gamma2L or gamma2S transgene developed significantly less tolerance to the ataxic effects of ethanol. We conclude that acute functional tolerance to ethanol is very sensitive to the amount of GABAA receptor gamma2 subunit available (regardless of whether it is gamma2L or gamma2S) but overexpression of neither subunit isoform alters other behavioural and biochemical phenotypes.

Animals↗

Serotonin 5-HT(2) receptor stimulation of dopamine release in the posterior but not anterior nucleus accumbens of the rat.

The objective of the present study was to examine the involvement of serotonin 5-HT(2) receptors within the rat nucleus accumbens (Acc) in the regulation of dopamine (DA) release using in vivo microdialysis. Perfusion with the 5-HT(2) agonist (+)-1-(2, 5-dimethoxy-4-iodophenyl)-2-aminopropane (DOI), at concentrations of 25-250 microM, through microdialysis probes located in the posterior Acc increased extracellular DA levels to a maximum of 200% of baseline. DOI-induced increases in the extracellular levels of DA were Ca(2+) dependent and were inhibited by co-perfusion with the 5-HT(2) antagonist LY-53,857. DOI enhancement of the extracellular concentrations of DA was observed when probes were implanted in the Acc core and shell regions posterior to anteroposterior +1.2 mm from bregma, whereas a small reduction in the extracellular levels of DA was observed in the anterior Acc. There were no differences between core and shell subdivisions within either the anterior or the posterior Acc. These results suggest that activation of 5-HT(2) receptors within the posterior, but not anterior, Acc stimulates DA release, indicating rostral-caudal differences in the interactions of 5-HT with DA systems in the Acc.

Amphetamines↗

The relationship between staffing and quality in long-term care facilities: exploring the views of nurse aides.

Research on staffing and quality of care in long-term care facilities confirms that adequate staffing levels are important to ensuring quality but few studies have examined how the two are linked. The research reported in this article used participant observation and indepth interviewing to explore how nurse aides (NAs) understand the link between staffing and quality. The findings show that NAs deem their relationships with residents to be the central determinant of quality of care as well as an important outcome in itself. Adequate staffing is essential to allowing NAs to nurture these relationships.

Attitude of Health Personnel↗

Patient-centered care: understanding its interpretation and implementation in health care.

Providing patient-centered care (PCC) has been the focus of recent organizational restructuring and quality improvement efforts in health care. Much has been written about PCC in the past 5 years; however, there are multiple perspectives about the interpretation and implementation of this concept. Descriptions of PCC in the health care literature generally, in some way, refer to meeting patients' needs. Literature describing PCC falls into two categories. The first category interprets PCC as the reorganization of services around patients' needs. The second defines PCC as understanding patient-perceived needs, priorities, and expectations for health care. PCC, however, is still most often implemented from a traditional provider-centered, disease-focused framework that often results in patient care and outcomes that are not congruent with patients' preferences. Shifting to a model of care in which patients define their needs and priorities creates some unique issues in health care. Nursing, with its long-standing commitment to being patient focused, needs to lead the research effort to develop patient-centered models of care that consider and incorporate patients' preferences. Nurses must be mindful, however, of their socialization in the traditional model of care and the resulting underlying attitudes and assumptions they bring to their research and work with patients.

Attitude of Health Personnel↗

Applications of transgenic and knockout mice in alcohol research.

Multiple genetic and environmental factors contribute to the development of alcoholism. Researchers attempting to elucidate the roles of specific genes in alcoholism risk have benefited from advances in genetic engineering. Two important tools used by researchers include transgenic mice, in which a foreign gene is integrated into an animal's genetic material, and knockout/knock-in mice, in which targeted genes either are rendered nonfunctional or are altered. Both of these animal models are currently used in alcohol research to determine how genes may influence the development of alcoholism in humans.

Alcoholism↗

Decreased ethanol sensitivity and tolerance development in gamma-protein kinase C null mutant mice is dependent on genetic background.

Initial sensitivity and tolerance development to the sedative-hypnotic and hypothermic effects of ethanol were investigated in gamma-protein kinase C (PKC) null mutant mice. Null mutants from a C57BL/6J x 129/SvJ mixed genetic background demonstrated decreased ethanol sensitivity and failed to develop chronic tolerance after 10 days of ethanol liquid diet. However, when the null mutation was introgressed onto a C57BL/6J background for six generations, the "no tolerance" phenotype for sedative-hypnotic and hypothermic effects of ethanol was no longer apparent Outcrossing the gamma-PKC null mutation to a C57BL/6J x 129/SvEvTac mixed background restored the "no tolerance" phenotype to ethanol-induced sedation after chronic ethanol diet; however, as measured by hypothermia, tolerance was still evident in the null mutant mice. These observations and the results of tests of chronic tolerance in the C57BL/6J, 129/SvJ, and 129/SvEvTac background inbred strains indicate that gamma-PKC plays an important role in initial sensitivity and tolerance to ethanol. However, the impact of gamma-PKC is modulated by the background genotype. These results stress the importance of including the effect of genetic background when evaluating the effects of single gene mutations on quantitative behavioral traits.

Animals↗

The use of null mutant mice to study complex learning and memory processes.

A number of neural substrates have been proposed to mediate complex learning and memory processes in mammalian organisms. One strategy for testing the involvement of a particular gene in learning and memory is to create a mouse line with a null mutation in that gene. Recently, embryonic stem cell-based gene-targeted homologous recombination techniques have been employed to create a number of such mutant mouse lines that do not express interesting candidate genes. These animals have been examined for impairments in several complex learning paradigms which are known to depend on the integrity of the hippocampus. In this review several complex learning and memory paradigms are described, the techniques to create null mutants are reviewed, and the results of recent studies with null mutants are described. Finally, the limitations for interpretation of behavioral data using null mutants are discussed.

Animals↗

Protein and molecular characterization of hippocampal protein kinase C in C57BL/6 and DBA/2 mice.

Measures of protein kinase C (PKC) in C57BL/6 and DBA/2 mice using [3H]phorbol 12,13-dibutyrate binding to tissue homogenates and brain slices demonstrated that levels of activated, membrane-bound PKC were greater in C57BL hippocampus than in DBA hippocampus. Western analysis of alpha-, beta I-, beta II-, gamma-, delta-, and epsilon-PKC using isozyme-specific antibodies indicated that the increase observed in C57BL hippocampus was due primarily to the gamma-PKC protein, whose immunoreactivity was greater in the membrane-bound fraction in C57BL mice. Characterization of alpha-, beta I,II-, and gamma-PKC hippocampal mRNA using northern analysis and isozyme-specific nucleic acid probes did not reveal differences between the strains in levels of gene expression. Restriction fragment length polymorphisms (RFLP) were found in the alpha- and gamma-, but not beta-PKC genomic DNA. The RFLPs appeared to be located in noncoding, nonregulatory regions of the gene. These findings suggest that the gamma-PKC isozyme is largely responsible for the PKC activity difference in C57BL and DBA hippocampus that has been reported previously and may be closely associated with differences in learning ability observed in these strains.

Animals↗

Use of transgenics, null mutants, and antisense approaches to study ethanol's actions.

Behavioral and biochemical responses mediating ethanol's actions have been difficult to study in humans and animals because of their complex polygenic nature. Recent progress in the creation of new animal models using recombinant DNA technology has provided a set of genetic tools by which the role of specific candidate genes in ethanol's actions can be examined. These techniques include the creation of transgenic and null mutant mice, as well as manipulation of protein synthesis with antisense treatments. These techniques are reviewed, and their potential applications to alcohol research are discussed.

Alcohol Withdrawal Delirium↗

Isolation and sequence of a mouse brain cDNA coding for protein kinase C-gamma isozyme.

The regulatory enzyme, protein kinase C (PKC), is characterized by a family of related isozymes. Currently, nucleotide (nt) sequences for seven members of this family have been reported from the bovine, human and rat genomes. Only four of these seven PKC isoforms have been isolated in mouse: alpha, beta II, delta and epsilon. Here, we report the cDNA sequence encoding mouse PKC-gamma isolated from a C57BL/6 brain cDNA library. The mouse and rat PKC-gamma nt and deduced amino acid sequences share 97 and 100% identity, respectively.

Amino Acid Sequence↗

Adrenalectomy and stress modulate GABAA receptor function in LS and SS mice.

The effects of manipulation of adrenal steroids by adrenalectomy (ADX) or stress on GABAA receptor function were characterized in long-sleep (LS) and short-sleep (SS) mice. 36Chloride flux was not altered in either line of mouse after ADX; however, exposure to a behavioral stressor resulted in a highly significant inhibition of ion channel activity measured in cortical membranes from both LS and SS mice. Adrenalectomy also had no effect on [3H]FNZ binding; whereas exposure to stress differentially altered benzodiazepine binding in LS and SS mice. In LS cortex both Bmax and Kd values increased, whereas in SS cerebellum, Bmax and Kd values were decreased after stress. In SS mice ADX did not affect GABA-enhancement of [3H]FNZ binding. In LS mice, however, ADX resulted in a potentiation of GABA-enhanced [3H]FNZ binding in cortex and an inhibition of enhancement in cerebellum. Corticosterone (CCS) replacement in ADX-LS mice returned enhancement values to those of sham-operated mice, indicating a role for basal levels of CCS in maintaining normal receptor coupling function in this line of mouse. These results suggest that GABAA receptor sensitivity is more labile under stressful conditions. Differential receptor responses to adrenal manipulation between LS and SS mice may be due to genetic variation in GABAA receptor subunit combinations in these lines of mice.

Adrenalectomy↗

Biochemical and behavioral effects of steroids on GABAA receptor function in long- and short-sleep mice.

The in vitro and in vivo effects of alphaxalone, a steroid anesthetic, and two physiological steroids, tetrahydrodeoxycorticosterone (THDOC) and pregnenolone sulfate (PS), on GABAA receptor function were evaluated in long-sleep (LS) and short-sleep (SS) mice. In vitro, both alphaxalone and THDOC enhanced GABAergic inhibition as measured by [3H]FNZ binding and GABA-stimulated 36Cl- flux. However, with the exception of alphaxalone potentiation of [3H]FNZ binding, which was greater in SS brain regions, LS and SS mice did not differ in their degree of enhancement. Pregnenolone sulfate produced mixed agonistic and antagonistic effects on GABAergic function, dependent upon brain region, with few differences between the lines of mice. In vivo effects of these steroids on sleep time indicated that, like other anesthetic agents, THDOC and alphaxalone induced longer sleep times in LS mice. Antagonism by PS of ethanol-induced sleep time was observed in LS mice only; however, this effect was dependent upon the dose of ethanol used and on the vehicle used to prepare the steroid. Pentobarbital-induced sleep time was not reduced by PS treatment in either line of mouse. These results demonstrate that few differences in sensitivity of the GABAergic receptor to these steroids exist between LS and SS mice. Thus, unlike the differences between LS and SS mice in GABAergic mediation of responses to ethanol and benzodiazepines, there is little genetic variability in subtypes of GABAA receptors capable of modulation by steroids in these lines of mice.

Anesthetics↗

Adrenalectomy increases bicuculline-induced seizure sensitivity in long-sleep and short-sleep mice.

Susceptibility to bicuculline-induced seizure onset and tonus was increased in LS and SS mice after adrenalectomy (ADX). Replacement with 10% corticosterone (CCS) in ADX animals resulted in a return to seizure latencies equal to those of sham-operated (SHAM) mice. In SS mice, dexamethasone (DEX) and cholesterol-control replacement was as effective as 10% CCS in returning seizure thresholds to SHAM values. In LS mice, DEX was only effective at a low bicuculline dose. Within the sham-operated group SS mice were more susceptible to bicuculline-induced seizure onset than LS mice; however, after ADX latencies did not differ between the two lines. These results suggest that seizure thresholds are regulated to some extent by the hypothalamic-pituitary-adrenal (HPA) axis. The effects of ADX on GABA-related seizure activity may also be influenced by genotype, such that genetic differences in GABAA receptor function and adrenocortical responses in LS and SS mice may be responsible for the differential seizure latencies observed in sham-operated mice.

Adrenal Glands↗

The use of recombinant inbred strains to study mechanisms of drug action.

Long-sleep (LS) and short-sleep (SS) mice which were selectively bred for sensitivity to the sedative-hypnotic effects of ethanol have been used extensively in the examination of sensitivity to ethanol as well as to other CNS depressants. Understanding the relationship between sensitivity to ethanol and other depressants using LS and SS mice has been limited to a two mouse line comparison because these mice do not exist as replicate lines. To circumvent this problem, DeFries et al. have bred LSXSS recombinant inbred strains (LSXSS RIs) from a cross of LS and SS mice. These mice are being characterized on their responses to a variety of CNS depressants and agents that interact with the GABAergic system. Preliminary results are presented here on the sensitivity of these LSXSS RIs to pentobarbital, phenobarbital, and flurazepam as measured by sleep times. Additionally, analyses of seizure susceptibility to the GABAergic antagonist, bicuculline, in 24 LSXSS RIs indicate that there is no significant relationship between this measure of GABAergic function and sensitivity to ethanol as measured by the sleep-time response. These results are presented in the context of questions that can be resolved using RIs in drug-abuse research.

Animals↗

Trial preparation.

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Expert Testimony↗