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Biomedical subjects

R McGee

Publications and source records attributed to R McGee.

At least 163 records · Page 9Linked to original sources

Regulation of presynaptic cellular function. Biochemical studies using clonal neuronal cells.

Experiments from several different laboratories are reviewed in which clonal neuronal cell lines are being used to study neuronal cellular functions. Primary emphasis is placed on two cell lines, the neuroblastoma X glioma hybrid clone NG108-15 and the pheochromocytoma clone PC12. These particular cell lines are useful because they display many of the properties normally associated with differentiated neurons. The properties which have been studied include: the regulation of adenylate cyclase and the receptors which activate or inhibit its activity, regulation of the cholinergic properties of NG 108-15 and both adrenergic and cholinergic properties of PC12, the response of PC12 to nerve growth factor, and the regulation of synaptogenesis between NG 108-15 cells and cultured muscle. The goal of the review is to not only summarize the information obtained with these two cell lines but also to emphasize the types of research in which clonal cell lines may be most useful in the future.

Acetylcholine↗

Metrazol produces conditioned taste aversion in rats.

Employing a two bottle drinking procedure where an animal's preference is measured between plain water and a novel fluid, it was found that the convulsant drug Metrazol produced a conditioned taste aversion to saccharin. This finding is contrary to that of previous reports and highlights the sensitivity of the two bottle method in detecting a taste aversion.

Animals↗

Choline uptake by the neuroblastoma x glioma hybrid, NG108-15.

The neuroblastoma x glioma hybrid clone NG108-15 is able to release acetylcholine upon depolarization and form cholinergic neuromuscular synapses in culture. Normal functioning of cholinergic synapses is thought to be dependent on the ability of a neuron to take up extracellular choline, since neurons are unable to synthesize choline de novo. For these two reasons it became important to characterize the choline uptake system of NG108-15 cells. The uptake system appears to bear little if any resemblance to the Na+-dependent high-affinity choline uptake system normally associated with cholinergic neurons. Although the cells appear to possess both high- and low-affinity choline uptake systems, neither system is dependent on Na+ and uptake actually is increased about 60% by the substitution of sucrose for NaCl. Acetylcholine synthesis also is not dependent on Na+, since sucrose, substituted for NaCl, also stimulates acetylcholine synthesis. Changes in the concentrations of the other ions in the uptake medium have little effect on uptake, with the exception that elevated Ca2+ or Mg2+ reverses the stimulation of choline uptake produced by substitution of sucrose for NaCl. Choline uptake is inhibited by hemicholinium-3, but only at high concentrations of the drug (IC50 = 30-80 microM). The metabolic poisons cyanide and iodoacetate inhibit uptake by only 30-40%. Growth of the cells in N6,O2' dibutyryladenosine-3',5'-cyclic monophosphate, which promotes functional and morphological differentiation of the cells, decreased slightly the total amount of choline taken up but had no additional effect on the uptake system. Thus, it appears that NG108-15 cells are capable of forming functional cholinergic synapses with muscle cells even though the neuroblastoma does not possess the high-affinity choline uptake system normally associated with cholinergic neurons.

Animals↗

Attenuation of saccharin neophobia by melatonin.

Administration of Melatonin has been reported to decrease emotionality in the rat as indexed by the defecation response. The present experiment was designed to examine whether Melatonin would attenuate the neophobic response to a novel solution. It was found that Melatonin significantly increased the rat's consumption of a novel saccharin solution suggesting that the emotionality/arousal produced by the intake of this solution was attenuated.

Animals↗

Regulation of acetylcholine release from neuroblastoma x glioma hybrid cells.

Neuroblastoma x glioma NG108-15 hybrid cells exposed to N6, O2'-dibutyryladenosine 3':5'-cyclic monophosphate for several days release [3H]acetylcholine in response to serotonin, prostaglandin F2alpha, KCl, or veratridine. NG108-15 cells grown in the absence of dibutyrul cyclic AMP do not respond to an excitatory stimulus by releasing [3H]acetylcholine but can be shifted to a responsive state by treatment with dibutyryl cyclic AMP. Thus, the reactions that are required for acetylcholine release can be regulated in NG108-15 cells, thereby regulating the ability of cells to form synapses and the efficiency of synaptic communication.

Acetylcholine↗

Regulation of fatty acid biosynthesis in Ehrlich cells by ascites tumor plasma lipoproteins.

Fatty acid biosynthesis in Ehrlich cells in vitro was reduced when very low density lipoproteins (VLDL) isolated from the ascites tumor plasma were added to the incubation medium. The degree of inhibition was dependent on the VLDL concentration. At the VLDL concentrations usually present in the ascites plasma, there was a 30% decrease in biosynthesis as measured by (3)H(2)O incorporation into fatty acids. Analysis of the labeled fatty acids by gas liquid chromatography indicated that this decrease was due to a reduction in fatty acid de novo biosynthesis and that chain elongation actually was increased when VLDL were present. Although ascites plasma low- and high density lipoproteins also produced a concentration-dependent inhibition of fatty acid biosynthesis, their effects were much smaller than those of the VLDL. Studies employing VLDL and radioactive free fatty acids indicated that the cells took up utlilzed fatty acids derived from these lipoproteins. When VLDL were present, labeled free fatty acid incorporation into cell phospholipids, cholesteryl esters, and CO(2) decreased, whereas its incorporation into the cell free fatty acid pool increased. By contrast, the cells incorporated only very small amounts of fatty acid from either low- or high density lipoproteins. This suggests that the VLDL exert their inhibitory effect on fatty acid synthesis by supplying exogenous fatty acids to the cells.

Animals↗

Fatty acid biosynthesis in Erlich cells. The mechanism of short term control by exogenous free fatty acids.

We have examined the mechanism by which extracellular free fatty acids regulate fatty acid biosynthesis in Ehrlich ascites tumor cells. De novo biosynthesis in intact cells was inhibited by stearate greater than oleate greater than palmitate greater than linoleate. The amount of citrate and long chain acyl-CoA in the cells was not changed appreciably by the addition of free fatty acids to the incubation medium, indicating than free fatty acids do not regulate fatty acid biosynthesis by changing the total intracellular content of these metabolites. By measuring the incorporation of labeled free fatty acids into acyl-CoA, however, it was determined that the fatty acid composition of the acyl-CoA poolwas changed dramatically to reflect the composition of the exogenous free fatty acids. The relative inhibitory effects of different free fatty acids appear to depend on the ability of their acyl-CoA derivatives to regulate acyl-CoA carboxylase activity. The acyl-CoA concentration needed to produce 50% inhibition of purified Ehrlich cell carboxylase was found to be 0.68 mum for stearoyl-CoA, 1.6 mum for oleoyl-CoA, 2.2 mum for palmitoyl-CoA, 23 mum for myristoyl-CoA, 30 mum for lauroyl-CoA, and 37 mum for linoleoyl-CoA. In contrast to their effects on de novo synthesis, all of the free fatty acids added except stearate stimulated chain elongation in intact cells. Microsomal chain elongation, the major system for elongation in Ehrlich cells, also was regulated by the composition of the cellular acyl-CoA pool. Lauroyl-CoA, myristoyl-CoA, and palmitoyl-CoA were good substrates for elongation by isolated microsomes; oleoyl-CoA, and linoleoyl-CoA were intermediate; and stearoyl-CoA was a very poor substrate. We conclude that free fatty acids regulate fatty acid biosynthesis by changing the composition of the cellular acyl-CoA pool. These changes control the rate of malonyl-CoA production and, because of the acyl-CoA substrate specificity of the microsomal elongation system, modulate the amount of malonyl-CoA used for chain elongation.

Acetyl Coenzyme A↗

Cholesteryl ester accumulation in Ehrlich cells induced by saturated fats.

The cholesteryl ester content of Erhlich cells was increased in tumors grown in mice fed saturated fat diets (coconut oil or tristearin) as compared with polyunsaturated fat diet (sunflower oil). Cholesteryl esters containing monoenoic fatty acids were the predominant species that accumulated in the cells grown on unsaturated fat. The increase in cholesteryl esters was not accompanied by corresponding increases in the cell content of phospholipids, triacylglycerols, unesterified cholestorol or proteins. This experimental system may be useful for obtaining basic information about intracelluar cholesteryl ester accumulation, process that occurs in atherosclerosis.

Animals↗

Reasons for smoking or not smoking in early adolescence.

Previous studies of smokers' and nonsmokers' reasons have not compared their reasons for smoking and their reasons for not smoking, or examined the extent of change or stability in these reasons over time. We examined reasons for smoking and not smoking in a large sample of 13-year-olds from the general population. Factor structures of reasons differed according to whether adolescents were smokers or nonsmokers. Nonsmokers were found to be less discriminating than smokers about the reasons for smoking. Smokers and nonsmokers tended to show more agreement about the reasons for not smoking. Recency of smoking was differentially related to the factors for smoking and the factors for not smoking. "Image" was a more important reason for smoking at age 11 than at age 13. "Friends" as a reason for smoking showed a small degree of consistency across age, whereas reasons involving relaxation and pleasure showed a relatively higher degree of consistency. Health, as a reason not to smoke, showed only a small degree of consistency, while social context, effects and access were moderately consistent as reasons not to smoke at ages 11 and 13.

Adolescent↗

Adolescents' promotion of nonsmoking and smoking.

Previous studies of the influence of friends on adolescent smoking have adopted the approach of asking adolescents about their friends. However, studies in which the friends were also approached have shown that adolescents' reports of friends behavior were not accurate (more closely resembled their own behavior). In order to gauge the level of active social influence among adolescents we asked 14-15 year old students what they did to influence others not to smoke or to smoke. Across two surveys, a quarter of the Form 4 students were promoting antismoking messages or activities and 3% were promoting smoking by encouraging or forcing friends, siblings and acquaintances to smoke. Relatively more positive beliefs about smoking identified those students who actively promoted smoking whereas some positive beliefs about the adverse effects of cigarette advertising tended to identify those who were actively antismoking. Use of this approach to examine the issue of social influence provided information about the antismoking activities which students conducted, and could be used to further examine which messages students do not believe or do not use. For example, students believed that smoking reduces fitness but did not promote this message to others, and the reasons for such disparity need to be investigated and should be addressed in the content of prevention programs.

Adolescent↗

Proliferation, differentiation and apoptosis in villous trophoblast at 13-41 weeks of gestation (including observations on annulate lamellae and nuclear pore complexes).

Ultrastructural, immunochemical, fluorescence and stereological studies were undertaken on human villous trophoblast from 13 weeks of gestation to term. The aim was to describe and quantify morphological changes during proliferation, differentiation and apoptosis in cytotrophoblast and syncytial regions of non-aggregated and aggregated nuclei. Numbers of trophoblast nuclei increased continuously from 13 weeks. In term placentae, intrasyncytial differentiation was characterized ultrastructurally by gradual decreases in nuclear size and packing density accompanied by nucleolar regression, and increasing heterochromatinization, envelope convolution and packing density of nuclear pore complexes. In densely packed areas, nuclear profiles resembled interlocking jigsaw pieces. Occasionally, these 'pre-apoptotic' nuclei were associated with annulate lamellae. Rarely, nuclear changes terminated in apoptosis with a characteristic pattern of condensed peripheral chromatin, a central island of euchromatin, no nucleoli and no discernible nuclear pores. Apoptotic nuclei were seen singly and within dense nuclear aggregations. Similar spatial patterns of nuclei and chromatin were seen in propidium iodide-stained sections at 13-41 weeks. Whilst the relative incidence of intensely fluorescent nuclei remained constant, absolute numbers increased linearly during gestation and correlated positively with the volume of syncytial knots. Nuclei labelled for DNA fragmentation occurred very infrequently and were also found in nuclear clusters as well as singly. We suggest that nuclear differentiation in syncytium has two phases: on entering syncytium, nuclei become committed to a long programmed pre-apoptotic phase which leads to a short apoptotic execution phase. We propose further that clustered nuclei (pre-apoptotic and apoptotic) in syncytial knots probably represent the extrusion component of normal continuous epithelial turnover.

Apoptosis↗