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Biomedical subjects

E Roberts

Publications and source records attributed to E Roberts.

At least 181 records · Page 10Linked to original sources

Potentiation of Na+-dependent uptake of gamma-aminobutyric acid in mouse brain particles by buffer-mediated proton removal.

A number of buffers showed a remarkable facilitatory effect on the uptake of GABA into a mouse brain microsomal subfraction (P3) at 0 degrees C and pH 7.3 in the presence of 80 mM NaCl. Complete dose-response curves were obtained for 21 buffers, ranging in pKa values from 6.2 to 9.9. The data are consistent with the interpretation that the unprotonated forms of the buffers are responsible for the enhancement of GABA uptake by P3 particles and that this is a result of the removal of protons from a membrane site (or sites) in such a manner as to allow the GABA transporter to function. However, the enhancing effects of the buffers could not solely be attributable to unhindered interaction of protonated membrane sites with unprotonated forms of the buffer. Additional factors related to structures of the buffers and membrane properties which might be importantly operative in the enhancement are discussed.

Animals↗

Long-term serial cultivation of arterial and capillary endothelium from adult bovine brain.

Cerebrovascular endothelial cells from adult bovine brain were carried successfully in long-term, serial culture. Endothelial cells were obtained from the middle and anterior cerebral arteries and from capillaries isolated from grey matter of the cerebral cortex or caudate nucleus. Capillary cells were found to grow best in RPMI 1640 with 20% fetal bovine serum. They did not require tumor-conditioned medium or matrix-coated surfaces, although fibronectin was used to enhance the initial plating efficiency of the primary cultures. The same conditions were used to support satisfactory growth of arterial endothelial cells; however they did not grow as rapidly as the cells. Retention of endothelial-specific characteristics were shown for capillary-derived cells carried up to Passage 28, arterial-derived cells up to Passage 11, and after frozen storage of both types of cultured cells. Cultures of both arterial and capillary cells stained positively for Factor VIII antigen, exhibited a nonthrombogenic surface, and produced prostacyclin in response to arachidonic acid. Arterial endothelial cells produced more prostacyclin than capillary endothelium. The capillary cells had a unique tendency to assume a ringlike morphology after subculture and sometimes formed capillarylike networks of cell cords in dense cultures. When cultured in a three-dimensional plasma clot, capillary and arterial endothelial cells, but none of the other cell types studied, organized into tubelike structures reminiscent of capillary formation in vivo. The availability of long-term cultures of cerebrovascular endothelial cells provides an opportunity to compare properties of arterial and capillary endothelium from the same tissue and to investigate such processes as angiogenesis and blood-brain barrier induction.

Animals↗

Roles of proton removal and membrane fluidity in Na+- and Cl(-)-dependent uptake of gamma-aminobutyric acid by mouse brain particles.

Proton removal is required for Na+-dependent uptake of GABA into mouse brain microsomal particles (P3) to take place at 0 degrees C and pH 7.3. No temporal coordination was demonstrated to exist between proton removal and GABA uptake processes, ruling out the possibilities that either a proton gradient or proton outflux from the particles is required. Observations on proton dissociation from the particles indicated that the protons are derived from a particulate compartment that is not in pH equilibrium with the bulk solution. Experiments on the effects of temperature on GABA uptake in the presence of 80 mM NaCl alone or with 10 mM triethanolamine (TREA) at pH 7.3 showed that the effects of TREA and temperature were interactive. The relative enhancing effects of TREA on GABA uptake diminished progressively with increasing temperature. The break points in Arrhenius plots obtained in presence and absence of TREA were the same, indicating that the effect of TREA was not on bulk viscosity of the membrane. Measurements made of fluorescence polarization as a function of temperature and of the absorbance-corrected fluorescence using TMA-DPH, a probe believed to be anchored at the lipid-water interface, showed clearly that the characteristic viscosity changes that take place with temperature in the membrane regions through which the probe is distributed were not correlated with the effects of temperature on GABA uptake. It is tentatively concluded that the protons may be attached to the membranes of the P3 particles by strong coulombic interactions in unstirred electrical double layers, possibly both on the inside and outside of particles. The importance of the existence of differences between pH at the surfaces of membranes, possibly both on the inside and outside of the particles, and that of the bulk solutions that bathe them was reiterated.

Animals↗

Triethanolamine, tris, hepes, and cytosine arabinoside show neuritogenic activity in cultured chick embryo ganglia.

Neuritogenesis, which occurs to a slight extent in chick embryo ganglia maintained under standard conditions and which is maximally stimulated by nerve growth factor, also was enhanced by presence in the medium of buffers (triethanolamine, Tris, and Hepes) and cytosine arabinoside and by the passage of direct electric current. The major effect of the buffers probably was to remove protons from cell membranes, that of the current to produce accelerated movement of ions through membranes of the ganglionic cells, and that of cytosine arabinoside to decrease the numbers of nonneural cells by inhibiting DNA synthesis. The buffers were neuritogenically ineffective on nerve growth factor-sensitive PC12 pheochromocytoma cells in culture. Media from ganglia in which triethanolamine or passage of electric current had elicited outgrowth of neurites produced no observable effect on PC12 cells under our experimental conditions. Current data fit the hypothesis that, whereas nerve growth factor exerts direct neuritogenic effects on neurons, the other treatments affect neural-nonneural interactions, possibly by way of gap junctions or changes in direct physical contact, so as to disinhibit inherent neural neuritogenic potential and/or to stimulate it.

Animals↗

Enhancement of axonal growth into a spinal lesion by topical application of triethanolamine and cytosine arabinoside.

We have demonstrated that a brief compression lesion of the rat spinal cord produces axotomy with minimal necrosis or scarring and that axons grow into such a lesion along longitudinally oriented capillaries and similarly oriented cordons of ependymal cells and astrocytes. Inasmuch as extensive, oriented growth of axons into a spinal lesion is never seen after transection, concussion, or other models of spinal cord injury, this new surgical procedure appeared to be applicable to the in vivo testing of pharmacological agents designed to promote neuritic outgrowth. The spinal cord of anesthetized rats was crushed extradurally for 1 s with a smooth jeweler's forceps. After 2 days when edema had subsided, the animals were reoperated. The dura mater was opened, and a polyethylene tube was implanted so that one end was fastened over the injury site and the other end was exteriorized at the back of the neck. The lesion site was superfused with 0.1 ml of control or test solutions four times daily for 2 weeks and then the animals were anesthetized and killed by vascular perfusion with fixative. After decalcification, the vertebral column and spinal cord were embedded in paraffin and stained by several histologic procedures including the protargol silver impregnation method for nerve fibers. Treatment with triethanolamine and cytosine arabinoside, substances which promote neuritogenesis in cultured spinal ganglia of chick embryos, markedly stimulated the growth of axons into the lesion of the rat spinal cord. We conclude (i) that it is possible to pharmacologically enhance the intrinsic growth capacity of CNS neurons and (ii) that brief compression provides a type of injury that is well suited to the evaluation of treatments aimed at promoting axonal regeneration.

Animals↗

Initiation and selection of resistant hepatocyte nodules in rats given the pyrrolizidine alkaloids lasiocarpine and senecionine.

The biological mechanisms by which pyrrolizidine alkaloids contribute to initiation and nodule selection (promotion) steps in hepatic carcinogenesis were studied in male Fischer 344 rats. Lasiocarpine at single or double dosages (up to 80 mumol/kg) delayed hepatic regeneration for at least 8 weeks after partial hepatectomy (PH). This regimen of lasiocarpine and PH had a strong selective influence on the growth of gamma-glutamyltranspeptidase (gamma-GT)-positive hepatocyte nodules in rats previously initiated with diethylnitrosamine. However, both lasiocarpine (up to 80 mumol/kg) and senecionine (up to 160 mumol/kg) were inactive as initiators of gamma-GT-positive nodules in rats exposed to a similar selection regimen consisting of 2-acetylaminofluorene and PH. When lasiocarpine or senecionine was given 12 h after PH, very few nodules were initiated. Lasiocarpine pretreatments reduced the initiating activity of diethylnitrosamine and N-nitrosomethylurea in rats subsequently selected with 2-acetylaminofluorene and PH. Resistant nodules selected with lasiocarpine had the typical resistant nodule phenotype (positive for gamma-GT and epoxide hydrolase) and also lacked pyrrolizidine alkaloid-induced megalocytosis. Lasiocarpine treatment also resulted in small regenerative nodular proliferations of hepatocytes that were distinct from resistant nodules because they were negative for gamma-GT and epoxide hydrolase and unrelated to diethylnitrosamine pretreatments. These studies suggest that the hepatocarcinogenicity of pyrrolizidine alkaloids can be better explained by their strong selection (promotion) influence on initiated hepatocytes, rather than by their very weak initiating activity.

Animals↗

Proline, glutamate and glutamine metabolism in mouse brain synaptosomes.

In nerve terminals, glutamate (Glu) may serve as precursor of the inhibitory neurotransmitter, GABA, and the putative excitatory transmitter, aspartate (Asp), in addition to exerting its own excitatory neurotransmitter role in brain. Glu carbon can originate from glucose through glycolysis and the Krebs cycle, from glutamine (Gln) subsequent to uptake, and from proline (Pro) and ornithine (Orn). Orn, but not Glu, is an effective precursor in nerve terminals of Pro, a putative inhibitory neurotransmitter. [3H]Arg can be converted in mouse brain nerve terminals to Orn, which in turn gives rise to Glu, Pro and GABA. In the present study, the conversion subsequent to uptake of labeled Glu, Gln and Pro to other amino acids was studied in unfractionated and subfractionated synaptosomal particles which layered, respectively, on 1.0 M, 1.2 M, 1.3 M and 1.5 M sucrose after centrifugation in a discontinuous gradient (fractions 1-4, respectively). Fraction 1 contained small synaptosomal fragments with vesicles and almost no mitochondria. Fractions 2 and 3 showed numerous normal-appearing mitochondria-containing synaptosomes, and fraction 4 contained large synaptosomes and more free mitochondria than the other fractions. Glu was readily taken up in all fractions and converted to Asp, Gln and GABA, the greatest formation of Asp from Glu occurring in fractions 2 and 3 and of Gln in fraction 4. In contrast, Gln was taken up poorly in fraction 1 and not metabolized, converted extensively to Glu and GABA in fractions 2-4, giving rise only to very small amounts of Asp in fractions 2 and 3. Although Pro was taken up to the greatest extent in fraction 2, it was by far most readily converted to Glu, Gln and GABA in fraction 1, showing only small amounts of Asp formation in fractions 1-3 and none in 4. There was no significant production of Pro from Glu or Gln or of Arg and Orn from any of the 3 precursors studied. The above results suggest that Glu, Gln and Pro may be taken up largely in different classes of synaptosomes which are distributed among the centrifugally separated fractions and which possess differing transport and metabolic characteristics. Determination of glutamate decarboxylase activity (GAD) indicated that GABA-forming nerve terminals were present in all synaptosomal fractions studied. Amino acid determinations by HPLC in the subfractionated synaptosomes showed a similar distribution for Glu, Asp and GABA contents, peaking in fraction 2, and an inverse relationship of the latter 3 with Arg contents.(ABSTRACT TRUNCATED AT 400 WORDS)

Amino Acids↗

Sex and age alter plasma membranes of cultured fibroblasts.

Human skin fibroblasts were taken from age-matched male and female subjects. The cells were then cultured under identical conditions and passage-number matched. Plasma membranes were isolated and membrane enzyme activities, lipid composition, and structure of isolated plasma membranes were measured in order to determine the presence of significant sex differences in human fibroblast membrane properties. The results indicated that plasma membranes from normal female subjects had a 1.6-fold and 3.6-fold higher cholesterol/phospholipid ratio and oleic acid (18:2) content than normal male subjects. The limiting anisotropy and the rotational relaxation time of fluorescence probe molecules such as trans-parinaric acid and 1,6-diphenyl-1,3,5-hexatriene in the plasma membranes was not significantly different from fibroblasts of male versus female normal subjects. The total activity of plasma membrane (Na+, K+)-ATPase was significantly higher in female than male normal subjects. A potential 'membrane structural disorder', Huntington's disease, was confirmed in fibroblast membranes from male but not from female Huntington's disease subjects. The possibility that Huntington's disease was a 'premature membrane aging' phenomenon was considered. A comparison of plasma membrane enzymes, lipids, and structure from old and young Huntington's disease subjects did not show differences consistent with accelerated membrane aging as explaining the molecular basis for the disease. The age-dependent differences noted in aged Huntington's disease subjects: increased phosphatidylcholine/phosphatidylethanolamine ratio and sphingomyelin + lysophosphatidylcholine content of fibroblast plasma membranes were not significantly altered when compared to normal age-matched controls. However, (Na+, K+)-ATPase activity was significantly enhanced in fibroblast plasma membranes of older Huntington's disease subjects unlike those of control subjects. In conclusion, sex and age differences in membrane properties of cultured cells represent important potential variables in the elucidation of human genetic disorders that may be membrane-related.

Adult↗

GABA neurons in the mammalian central nervous system: model for a minimal basic neural unit.

My current working models of nervous system function place particular emphasis on the roles of inhibitory GABAergic neurons in information processing in the central nervous system. It is proposed that in behavioral sequences, innate or learned, preprogrammed neural circuits are released to function at varying rates and in various combinations largely by disinhibition of pacemaker neurons whose activities are under the dual tonic inhibitory control of GABAergic local circuit neurons and projection command neurons. According to this view, disinhibition is permissive and excitatory input to pacemaker neurons has mainly a modulatory role. Disturbances in GABAergic function probably occur in a variety of neurologic and psychologic disorders.

Afferent Pathways↗

GABA-related phenomena, models of nervous system function, and seizures.

Models of nervous system function are presented that place particular emphasis on the roles in nervous system function of inhibitory neurons that liberate gamma-aminobutyric acid (GABA) as neurotransmitter. The nervous system is considered to be highly restrained, with inhibitory neurons acting like reins that serve to keep the neuronal "horses" from running away. In behavioral sequences, whether innate or learned, preprogrammed circuits are released to function at varying rates and in various combinations. This release is accomplished largely by the disinhibition of pacemaker neurons whose activities are under the control of tonically active inhibitory command neurons, many of which may use GABA as a transmitter. In addition to their restraining function, local circuit GABAergic neurons participate in feed-forward, feedback, surround, and presynaptic inhibition and in presynaptic facilitation. Information arriving from several sources is integrated in specialized analyzing regions, such as the cerebellar cortex, basal ganglia, and reticular nucleus of the thalamus. Monosynaptic inhibitory GABAergic outputs reflecting this analysis then play upon neural elements in the direct channels, making their activity optimally compatible temporally and spatially with that of neural elements elsewhere in the central nervous system. Seizures are prototypical of incoordination between inhibition and excitation. Major causes of seizures may be the loss of inhibitory GABAergic terminals at the site of focal cortical epilepsy or a disturbance in various aspects of GABAergic function.

Animals↗

Comparative influences of different PB-type and 3-MC-type polychlorinated biphenyl-induced phenotypes on cytocidal hepatotoxicity of bromobenzene and acetaminophen.

The influences of in vivo treatment with two pure PCB congeners, 2,2',4,4',5,5'-hexachlorobiphenyl (HCBP) and 3,3',4,4'-tetrachlorobiphenyl (TCBP), on the lethal cytotoxicity of bromobenzene and acetaminophen were examined in short-term primary cultures of isolated rat hepatocytes. Lethal injury was measured by release of lactate dehydrogenase (LDH) into culture medium after 20 hr exposure to the hepatotoxins. The HCBP, a PB-type inducer of cytochrome P-450, resembled phenobarbitone (PB) in its ability to increase susceptibility of hepatocytes to bromobenzene (0.5 to 1.6 mM) and acetaminophen (1 to 16 mM). This induced sensitivity was consistently inhibited by SKF-525-A (10 microM) but not alpha-naphthoflavone (ANF, 10 microM) in culture. The 3,3',4,4'-TCPB, a 3-MC-type inducer of cytochrome P-450, resembled 3-methylcholanthrene (3-MC) in its inability to induce susceptibility to bromobenzene. TCBP and 3-MC each increased (20- to 30-fold) cytotoxicity of acetaminophen by a mechanism substantially inhibitable by ANF but not SKF-525-A. These results demonstrate that categorizing pure PCB isomers and congeners into groups according to their different induction capabilities is predictive for their ability to modulate acute hepatocellular necrosis by bromobenzene and acetaminophen.

Acetaminophen↗

Age-related alterations in cultured human fibroblast membrane structure and function.

Membrane enzyme activities, lipid composition, and fluorescence probe characteristics in isolated plasma membranes, microsomes and mitochondria of cultured human fibroblasts were used to determine if structural alterations occurred as a function of donor age. The cells were sex matched and allowed to undergo approximately 8 population doublings under identical culture conditions. Plasma membrane (Na+, K+)-ATPase, microsomal NADPH cytochrome c reductase, and mitochondrial succinate cytochrome c activities showed variation as a function of increasing donor age but these changes were not statistically significant. At the same time the cholesterol/phospholipid molar ratio was unaltered in plasma membranes, decreased 50% in microsomes, and unchanged in mitochondria with increasing donor age. The phosphatidylcholine/phosphatidylethanolamine ratio increased in all three membrane fractions with increasing age of the fibroblast donor. The ratio of unsaturated/saturated fatty acids decreased in the phospholipids of microsomes but not of plasma membranes or mitochondria. The structural properties of the membranes were determined with two different fluorescence probe molecules, trans-parinaric acid and 1,6-diphenyl-1,3,5-hexatriene. These probe molecules indicated that the fluorescence lifetime and/or fluorescence polarization of the trans-parinaric acid probe decreased in microsomes, mitochondria, and in the plasma membrane, such that the limiting anisotropy, indicative of restrictions to probe motions, was significantly lower (high fluidity) with increasing subject age in plasma membranes, microsomes and mitochondria. The trans-parinaric acid fluorescence lifetime displayed two components in plasma membranes, microsomes, and mitochondria, a finding consistent with the coexistence of fluid and solid membrane lipid areas in the cultured human fibroblast subcellular membranes. The trans-parinaric acid partitioned preferentially into solid membrane areas. The limiting anisotropy of 1,6-diphenyl-1,3,5-hexatriene, a fluorescent probe that partitioned almost equally into different lipid domains, was also decreased in microsomes and mitochondria with increasing donor age. In contrast, 1,6-diphenyl-1,3,5-hexatriene indicated a small increase in limiting anisotropy (0.219 vs 0.195) in plasma membranes. Arrhenius plots of trans-parinaric acid and 1,6-diphenyl-1,3,5-hexatriene absorbance-corrected fluorescence in plasma membranes, microsomes and mitochondria demonstrated characteristic breakpoints near 20 degrees C and 30 degrees C. These breakpoints were not altered as a function of age.(ABSTRACT TRUNCATED AT 400 WORDS)

Aging↗

Influences of various xenobiotic inducers on cytocidal toxicity of lasiocarpine and senecionine in primary cultures of rat hepatocytes.

The influences of in vivo pretreatment with phenobarbitone (PB), 3-methylcholanthrene (3-MC), 2,2',4,4',5,5'-hexachlorobiphenyl (HCBP), and 3,3',4,4'-tetrachlorobiphenyl (TCBP) on cytocidal hepatotoxicity of two pyrrolizidine alkaloids, lasiocarpine (LC) and senecionine (SC), were compared in short-term primary cultures of rat hepatocytes. Toxicity was measured by release of lactate dehydrogenase (LDH) into culture medium at 24 h. LC was slightly more toxic to control hepatocytes than SC in the graded response range of 10-160 microM. PB and HCBP (a PB-type polychlorobiphenyl inducer) similarly potentiated toxicity of SC, and each diminished the degree to which cell killing by LC and SC was inhibited by SKF-525-A. By comparison, 3-MC and TCBP (a 3-MC-type PCB inducer) each diminished toxicity of SC but had little effect on toxicity of LC. Alpha-naphthoflavone (ANF) potentiated toxicity of both LC and SC in hepatocytes induced by 3-MC or TCBP but had little effect on responses of hepatocytes induced by either PB or HDBP. These results indicate that xenobiotics that induce similar patterns of cytochrome P-450 isozymes have qualitatively similar modulating influences on cytocidal hepatotoxicity of pyrrolizidine alkaloids in primary cultures. However, the observed modulating effects could not be explained solely on the basis of altered activation rates by the cytochrome P-450 species known to be induced by the various xenobiotics.

Animals↗

Membrane anomalies in Huntington's disease fibroblasts.

Plasma membranes, microsomes, and mitochondria were isolated from paired, passage number matched, cultured human fibroblasts. The cells were obtained from skin biopsies of Huntington's disease (HD) subjects and from sex and age matched controls. All fibroblasts were cultured in identical media for three to seven passages. Enrichment of surface marker enzymes such as Na+,K+-ATPase indicated a 10-fold purification of the isolated plasma membrane. The specific activity of Na+,K+-ATPase was 62 and 82% greater in the crude homogenate and isolated plasma membrane, respectively, of HD fibroblasts than in control fibroblasts. The specific activity of plasma membrane Na+,K+-ATPase was correlated with lipid composition and with membrane structure as determined by measurement of the rotational relaxation time and limiting anisotropy of fluorescence probe molecules. Major alterations in the structure of the plasma membranes in HD fibroblasts were not noted. The rotational relaxation time and limiting anisotropy of 1,6-diphenyl-1,3,5-hexatriene and of trans-parinaric acid were not significantly different between the plasma membrane, microsomes, or mitochondria of HD versus those of control fibroblasts. trans-Parinaric acid demonstrated the coexistence of fluid and solid domains in all three subcellular membrane fractions of the normal and HD skin fibroblasts. Lastly, both trans-parinaric acid and 1,6-diphenyl-1,3,5-hexatriene displayed characteristic breakpoints in Arrhenius plots of absorbance corrected fluorescence in plasma membranes, microsomes, and mitochondria. In all cases, similar breakpoint temperatures, indicative of phase alterations, were noted near 20 degrees and 30 degrees C. These breakpoints were unaltered in HD. In summary, the data do not support the concept of major membrane structural defects in HD.

Cell Fractionation↗

Arginine metabolism in mouse brain synaptosomes.

In a study employing mouse brain synaptosomes and synaptosomal sonicates, the complete metabolic machinery was found to be present for transport of arginine into synaptosomes, its conversion to ornithine, and the formation from the latter of glutamic acid, gamma-aminobutyric acid, and proline. The results show that a delicate balance probably exists between the flows of metabolites. This balance, which probably determines the steady-state levels of these substances in nerve terminals, can be altered by concentrations of the metabolites themselves through feedback inhibition as well as by levels of cofactors.

Animals↗

Medical self-care education for elders: a controlled trial to evaluate impact.

We conducted a trial to evaluate the impact of medical self-care education on 330 elders whose average age was 71. The test group participated in a 13-session educational intervention with training in clinical medicine, life-style, and use of health services. The comparison group received a two-hour lecture-demonstration. Both groups were assessed pre-intervention, post-intervention, and one year after entry. The results indicate medical self-care instruction: produces substantial improvements, that were sustained for one year, in health knowledge, skills performance, and skills confidence; stimulates many attempts to improve life-style; and generates improvements in life quality. The program had little influence on utilization of medical care or health status.

Aged↗