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Biomedical subjects

S Fowler

Publications and source records attributed to S Fowler.

At least 91 records · Page 5Linked to original sources

Diagnosis of dyslexia by means of a new indicator of eye dominance.

Many dyslexic children are unable accurately to control the movements of their eyes even when they are not trying to read. This immaturity helps to explain their visual confusions. It may result from failure to develop dependable associations between retinal and ocular motor signals these are essential to fix the true, as opposed to retinotopic, locations of objects in the outside world. We have used a new test to study retinal/ocular motor correspondence in dyslexic children and age/IQ matched normal readers. Over half the dyslexics showed unstable ocular motor dominance.

Child↗

Lysosome lipid storage disorder in NCTR-BALB/c mice. III. Isolation and analysis of storage inclusions from liver.

Livers of NCTR-BALB/c mice, affected by excessive accumulation of cholesterol and phospholipid, were fractionated by sucrose density gradient centrifugation. Lysosomes of very low density (rho = 1.05 - 1.08) were found, which by electron microscopy appeared identical to the storage inclusions seen in fixed tissues. These lysosomes could be purified about 10-fold over the original homogenate, and represented 4% of the total protein and 30-40% of the liver acid hydrolase content. The preparations were nearly free of mitochondrial, endoplasmic reticulum, and plasma membrane contamination. The lysosomes were laden with cholesterol and phospholipid. Cholesterol (greater than 97% unesterified) accounted for half of the total lipid, and sphingomyelin accounted for another 20%. Phosphatidylcholine and phosphatidylethanolamine were also present in substantial quantities. All of the excess cholesterol and sphingomyelin of liver could be attributed to the low density lysosomes. Lysosomal acid sphingomyelinase activity, measured with a synthetic substrate, was found to be 10-60% of BALB/c mouse control levels in liver, spleen, and cerebellum, while two other lysosomal enzymes, N-acetyl-beta-glucosaminidase and beta-glucuronidase, were increased 2-8-fold in the same tissues. These data and the morphologic observations of the preceding paper establish that the disorder affecting NCTR-BALB/c mice is a lysosome storage disease. We propose several possible mechanisms to explain the cholesterol and phospholipid overloading of lysosomes. The specific gene defect remains to be established.

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Lysosome lipid storage disorder in NCTR-BALB/c mice. I. Description of the disease and genetics.

We describe a strain of BALB/c mice, designated NCTR-BALB/c, carrying a new genetic disorder characterized by excessive tissue deposition of cholesterol and phospholipid. The mice exhibit progressive incoordination, grow less rapidly, and die 80-120 days after birth. In comparison with control animals of the same age, organ weights in the affected animals are lower in absolute value but higher relative to body weight, except for the thymus, which is atrophied, and for the lung and testes, whose absolute weights are not changed. Vacuolated cells are found in many tissues, and large foam cells are present in reticuloendothelial system (RES)-rich organs. Compared with those of BALB/c controls, serum lipoproteins migrate more slowly on electrophoresis; the amount of beta-lipoproteins is increased, while alpha-lipoprotein content is decreased. Serum total cholesterol remains normal. The serum activities of aspartate aminotransferase, creatine phosphokinase, and N-acetyl-beta-glucosaminidase are elevated. Free cholesterol levels are increased 8-10-fold in liver, spleen, and thymus, and about 2-fold in other tissues; but esterified cholesterol levels are normal. The phospholipid content of several tissues is increased 50-100%, largely as a result of an increase in sphingomyelin content. Significant increases in phosphatidylcholine occur also in spleen and lung. The disorder is inherited, affecting both sexes equally, and appears to be transmitted as an autosomal recessive mutation.

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Lysosome lipid storage disorder in NCTR-BALB/c mice. II. Morphologic and cytochemical studies.

Electron-microscopic and cytochemical studies were carried out on tissues of NCTR-BALB/c mice. These mice are affected with a neurovisceral genetic disorder involving excessive tissue accumulation of lipid. Distinctive polymorphic intracellular inclusions, bounded by a membrane and containing lamellated bodies, were found in many cells of liver, spleen, lung, kidney, intestine, lymph nodes, and brain. The inclusions transformed reticuloendothelial cells into massive foam cells. Acid phosphatase cytochemical studies performed on sections of liver demonstrated that the inclusions were lysosomes. Fixation of liver in the presence of digitonin produced "spicules" in the inclusions characteristic of digitonin-cholesterol complexes. Clefts of cholesterol crystals were seen in the inclusions in liver, spleen, and lung. We conclude that the NCTR-BALB/c mice are affected by a lysosome lipid storage disease and that cholesterol is a major storage product.

Acid Phosphatase↗

Time course of chronic haloperidol and clozapine upon operant rate and duration.

Operant response rate and average response duration were recorded for two groups of six rats each responding under a FR 10 schedule of food reinforcement. Using a chronic dosing regime, the effects of haloperidol (0.5 mg/kg) on operant performance were evaluated in one group 2.5, 5.0, 7.5 and 10.0 h after drug treatment. The other group received clozapine (5.0 mg/kg) 1.0, 2.0, 3.0 and 4.0 h before data collection. For both drugs time since injection produced significant effects on both rate and duration: rate increased and duration decreased as a function of time after injection. Haloperidol tended to have a greater lengthening effect upon response duration than did clozapine. In addition, changes in behavior as a function of time after haloperidol injection were observed to approximate previously published pharmacokinetic data for haloperidol administered according to dosing regimens similar to those used here.

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Growth, biochemistry, and morphology of isolated rabbit aortic smooth muscle cells maintained in the presence or absence of serum.

Arterial smooth muscle cells undergo marked biochemical and morphological changes upon culturing. We have studied the time course of these changes in smooth muscle cells isolated from normal rabbit aortas by enzymic digestion and then maintained in Dulbecco's modified Eagle's medium with or without 10% rabbit serum. Subcultured smooth muscle cells were also examined. Isolated cells cultured in the presence of serum multiply rapidly and by 9 days exhibit features typical of subcultured cells including multilayered growth, elevated marker enzyme activities of subcellular organelles, and proliferation of organelles. In contrast, isolated cells cultured in the absence of serum remain quiescent, as indicated by the low level (greater than 10%) of 3H-thymidine incorporation into nuclei and constant DNA content of the cultures, These cells spread slowly to form a monolayer of randomly oriented cells and they retain differentiated morphological features. Their enzyme activities remain at the levels of those of freshly isolated cells initially, but by 5 days some enzyme activities increase, in particular those of the acid hydrolases and catalase. Rates of pinocytosis and protein synthesis in these cells are comparable to those of cells maintained in serum-supplemented medium for the same period, but are significantly less than those measured in subcultured cells. Within 5 days, morphological alterations in the serum-deprived cells occur including the presence of increased numbers of lysosomes. Quiescent cultures of enzymically isolated cells may be a useful tool for short-term biochemical and physiological studies of differentiated arterial smooth muscle cells.

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Endothelium modifies the altered metabolism of the injured aortic wall.

Results of previous experiments in this laboratory indicate that lipids, especially cholesterol and cholesteryl ester, preferentially accumulate in re-endothelialized, as compared with de-endothelialized, areas of aorta (Am J Pathol 1980, 99:81-104). In the experiments reported here, the hypothesis that this lipid accumulation results from alterations in arterial wall metabolism induced by injury and modified by endothelium was tested. Activities of the two cholesterol-ester-metabolizing enzymes acyl CoA: cholesterol acyltransferase and acid cholesteryl esterase were assayed in uninjured aortas and in de-endothelialized and re-endothelialized areas of balloon-catheter-injured aortas from normocholesterolemic and hypercholesterolemic rabbits. Activities of marker enzymes for major cell organelles were also assayed. Our results indicate that acyl CoA: cholesterol acyltransferase activity was similarly increased in re-endothelialized and de-endothelialized areas of injured aortas. Activity of acid cholesteryl esterase was also increased; however, it was significantly less in re-endothelialized as compared with de-endothelialized areas. Activities of several marker enzymes were changed in injured aortas, particularly in de-endothelialized as compared with re-endothelialized areas. These findings suggest that 1) injury predisposes to general metabolic changes in the aorta that are modified by endothelium and 2) increased cholesteryl ester accumulation in re-endothelialized aortas occurs at least in part from increased synthesis and decreased hydrolysis.

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Characterization of foam cells in experimental atherosclerosis.

A series of biochemical and morphological studies has focused on the properties and origins of lipid laden foam cells in experimentally induced atherosclerosis in rabbits. Lipids inclusions present in these cells occupy half or more of the cytoplasmic volume and are of two kinds: cytoplasmic lipid droplets composed predominantly of cholesteryl esters and lysosomes in which substantial quantities of free cholesterol have accumulated. The foam cells exhibit some properties of macrophages but not others. They possess high levels of acid hydrolases and catalase and Fc membrane receptors can be detected on their surface. Only about one third of the foam cells, however, exhibit C3 receptors and few if any of the cells appear to contain or secrete lysozyme.

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Coordinate secretion of acid hydrolases in rat bile.

Three lysosomal glycosidases, beta-glucuronidase (EC 3.2.1.31), beta-galactosidase (EC 3.2.1.23), and N-acetyl-beta-glucosaminidase (EC 3.2.1.30) have been investigated in bile that was freshly collected from rats through a complete bile fistula. Assay conditions have been established on the basis of appropriate kinetic studies. The biliary excretion patterns for these enzymes were found to vary considerably from rat to rat during the 24-h collection period. In a given animal, however, the three hydrolases were excreted in parallel and showed a gradual increase in activity with time, most marked after 10- 12 h of collection. 24-h biliary outputs of the three hydrolases averaged congruent with3% of their respective contents in total liver, and bile diversion had no effect on hepatic glycosidase activity or total protein content. Other enzymes known to be associated primarily with mitochondria, endoplasmic reticulum, and cell sap were also detected in bile, generally in smaller amounts. The biliary excretion of the plasma membrane markers, alkaline phosphodiesterase I and 5'-nucleotidase, however, was comparable to that of the lysosomal hydrolases. Biliary excretion of total protein was relatively constant and corresponded to 3.0% of the total hepatic protein content per day, whereas biliary bile acid secretion decreased during the first 12 h and then remained constant. Exocytic bulk discharge of hepatocyte lysosomes is proposed as the most likely mechanism for the biliary excretion of lysosomal enzymes. These results call attention to the possible pathophysiologic significance of biliary excretion of hepatic lysosomal contents as a means of residue disposal.

Animals↗

Characterization of lipid-laden aortic cells from cholesterol-fed rabbits. III. Intracellular localization of cholesterol and cholesteryl ester.

The subcellular sites of accumulation of cholesterol and cholesteryl esters in rabbit atheromatous cells, were investigated by morphologic and biochemical techniques. Electron microscopy of lipid-filled cells in situ in atheromatous aortas of cholesterol-fed rabbits revealed lipid accumulation in the cytoplasm as lipid droplets and within lysosomes in the form of lipid globules, membranous whorls, and crystals. When such cells were isolated from the rabbit aortas by enzymic digestion, and then treated with Flickinger's aldehyde fixative containing 0.2 per cent digitonin, characteristic digitonide-lipid complexes ("spicules") were observed in discrete sites of the cytoplasm distinct from the cytoplasmic droplets. If these cells were first stained cytochemically for acid phosphatase and then treated with digitonin-aldehyde fixative, enzyme reaction product was found associated with the spicules indicating that the lysosomes of the atheromatous cells possess digitonin-reactive lipid. Subcellular fractionation of isolated rabbit aortic foam cells by sucrose density gradient centrifugation demonstrated the coequilibration of most of the intracellular unesterified cholesterol with low density lysosomes. Some cholesteryl ester was also associated with low density lysosomes, although most was found in a lipid droplet fraction of very low density. Together the results indicate that in rabbit atheromatous cells, lysosomes are the site of accumulation of intracellular cholesterol in excess of that structurally associated with membranes and that both cytoplasmic droplets and lysosomes are depot sites for cholesteryl esters.

Acid Phosphatase↗