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Biomedical subjects

S Tarui

Publications and source records attributed to S Tarui.

At least 217 records · Page 12Linked to original sources

A novel system of LDL apheresis combining a centrifugal plasma separator with a specific LDL adsorption column.

A novel system of low density lipoprotein (LDL) apheresis for familial hypercholesterolemia (FH) was developed, combining a centrifugal plasma separator (IBM-2997) with a new adsorption column specific to lipoproteins containing apolipoprotein B (apo-B), and its operation was compared to previous methods. The present system selectively removed LDL without the substantial reduction of high density lipoprotein that was seen with other methods using membrane filters. The capacity for LDL removal was slightly more reduced with the adsorption column than with the membrane filters when a single column was used. Since the ability to obtain plasma in the centrifugal system was much higher than in the system using membrane filters for plasma separation, efficient apheresis could be performed in a much shorter time, without making an arterio-venous shunt. Remixing of blood cells, such as platelets, with the separated plasma sometimes raises the pressure within the plasma component separator, but the problem could be avoided by withdrawing the buffy coat fraction, using the WBC pump of the IBM separator. In conclusion, the novel system, combining the centrifugal plasma separator with the adsorption column, has proved, in our hands, to be a more useful and more convenient method than those previously used for the treatment of severe FH.

Adsorption↗

Cholesterol-lowering effect of N-(alpha-methylbenzyl)linoleamide (melinamide) in cholesterol-fed diabetic rats.

Cholesterol loading of diabetic rats is known to induce marked hyperlipoproteinaemia, and we have reported that enhancement of the activity of intestinal acyl-CoA:cholesterol acyltransferase (ACAT), one of the key enzymes involved in cholesterol absorption, might play an important role in the development of hypercholesterolaemia in these animals. In the present study, we have shown that treatment with N-(alpha-methylbenzyl)linoleamide (melinamide), a new hypocholesterolaemic drug, caused a substantial decrease of the enhanced intestinal ACAT activity in diabetic rats, but did not affect intestinal cholesterol esterase activity. Furthermore, marked improvement of hypercholesterolaemia in cholesterol-fed diabetic rats occurred concomitantly with the drug treatment. These results suggest that intestinal ACAT activity is closely related to the serum cholesterol level in diabetic rats, and show that melinamide lowers intestinal ACAT activity.

Animals↗

Small polydisperse low density lipoproteins in familial hyperalphalipoproteinemia with complete deficiency of cholesteryl ester transfer activity.

Lipoprotein abnormalities were analyzed in 3 cases of marked hyperalphalipoproteinemia caused by complete deficiency of cholesteryl ester transfer activity. The probands were all men, aged 34, 43 and 48 years, respectively. The serum high density lipoprotein (HDL)-cholesterol levels of these patients were higher than 150 mg/dl (157-254 mg/dl), while serum total cholesterol levels ranged from 227 to 360 mg/dl. Sequential flotation-ultracentrifugation analysis disclosed that low density lipoprotein (LDL)-cholesterol was slightly decreased and that cholesteryl ester accumulated solely in the HDL2 fraction, which was also enriched with apolipoprotein E. Cholesteryl ester transfer activity was completely absent in all of these cases. High-performance liquid chromatography showed a decrease of LDL particle size in combination with a marked enlargement of HDL particle size. Analytical ultracentrifugation disclosed heterogeneity of LDL with the presence of small LDL subpopulations. We conclude that hyperalphalipoproteinemia due to complete deficiency of cholesteryl ester transfer activity is characterized by the presence of both small polydisperse LDL and markedly large HDL enriched with cholesteryl ester and apolipoprotein E.

Adult↗

Characterization of low-density lipoproteins from patients with recessive X-linked ichthyosis.

We investigated lipoprotein metabolism in 14 patients with recessive X-linked ichthyosis (RXLI), a metabolic disease characterized by scaly skin, corneal opacity and steroid sulfatase deficiency. Plasma total cholesterol (TC) levels ranged from normal to slightly low (mean +/- SD: 156 +/- 28 mg/dl). Four patients showed a mild or moderate elevation of plasma triglyceride (TG) levels ranging from 150 to 365 mg/dl. The apoprotein B (apo B) to TC ratio was higher than in normal controls (0.63 +/- 0.11 vs. 0.52 +/- 0.07, P less than 0.01), while plasma apoB levels were within the normal range (99 +/- 17 mg/dl). Polyacrylamide gel electrophoretic mobility of low-density lipoprotein (LDL) was markedly increased in all patients, and further analyses showed that this finding was not due to a change in the particle size of the LDL but to an increased content of cholesterol sulfate (1.0-2.3% of the LDL-cholesterol content). In addition to the alteration of electrophoretic mobility, marked changes in the lipid and apoprotein compositions of the LDL fraction were observed; cholesterol ester content in LDL (LDL-CE) was significantly lower than that of control subjects (37 +/- 4% vs. 41 +/- 2% of total lipids, P less than 0.01), while the triglyceride content (LDL-TG) and apo B to cholesterol ratios in LDL were significantly higher than those of controls (18 +/- 7 vs. 10 +/- 2, P less than 0.001; 1.21 +/- 0.19 vs. 0.73 +/- 0.05, P less than 0.001, respectively). This anionized LDL, in which cholesterol sulfate was increased, was shown to bind to the LDL receptor of fibroblasts to much the same extent as normal LDL. In conclusion, the increase in cholesterol sulfate in LDL fraction not only alters the electrophoretic moiety but also the relative contents of apoB, cholesterol, and triglyceride in the lipoprotein. It does not change the affinity of LDL for the LDL receptor.

Adolescent↗

The inhibitory effect of forskolin on antibody-dependent cell-mediated cytotoxicity using Chang liver cells as target cells.

The effect of forskolin, a unique adenylate cyclase activator, on antibody-dependent cell-mediated cytotoxicity (ADCC) was examined. ADCC was assayed using Chang liver cells as the target cells, immuned rabbit serum as the antibody and healthy human peripheral blood mononuclear cells (PBMNC) as the effector cells. Forskolin at concentrations ranging from 1 to 20 microM significantly inhibited ADCC in a dose-dependent manner. By the addition of forskolin, cyclic AMP levels did not change in Chang liver cells but increased in PBMNC. Therefore, it appears that forskolin exerted an inhibitory effect on ADCC by increasing the intracellular cyclic AMP levels in PBMNC, the effector cells.

Antibody-Dependent Cell Cytotoxicity↗

Prostaglandin D2 diminishes transmucosal potential difference in rat colonic mucosa in vitro in contrast to the increasing effect of prostaglandin E1.

The effect of Prostaglandin D2 (PGD2) on ion transport was investigated in the rat colon in vitro. Ion transport across the intestinal mucosa was estimated by transmucosal potential difference (PD) and short circuit current (Isc) in the Ussing chamber. PGD2 added to the serosal reservoir induced a sustained reduction in PD and Isc at the concentration of higher than 10(-7)M, producing the maximal decrease at 10(-5)M. PGD2 at 10(-5)M completely blocked the increase in PD elicited by prostaglandin E1 (PGE1), theophylline, dibutyryl cAMP or serotonin. Adenylate cyclase activity was determined in the colonic mucosal homogenates after addition of PGD2 and PGE1. Treatment with PGD2 or PGE1 caused a significant increase in the enzyme activity. Combined treatment with both prostaglandins induced no more increase than that elicited by PGE1 alone. These results suggest that PGD2 has an anti-secretory effect on the rat colon and it may regulate the ion transport process through other mechanism than the modification of cyclic AMP concentration in mucosal cells.

Adenylyl Cyclases↗

Changes in hepatic functional reserve after transcatheter embolization of hepatocellular carcinoma. Assessment by maximal removal rate of indocyanine green.

To clarify the influence of transcatheter arterial embolization (TAE) on hepatic function, the maximal removal rate of indocyanine green (ICG-Rmax), which represents the hepatic functional reserve, and the plasma disappearance rate of indocyanine green (k-ICG) were measured serially before and after 15 TAE procedures performed on 13 hepatocellular carcinoma (HCC) patients with underlying hepatic diseases. Compared to the values before TAE, ICG-Rmax values did not change or gradually decreased during 4 weeks in seven of the 13 patients but markedly decreased in the remaining six by as much as 50% during the first week. k-ICG values remained almost unchanged at any time after TAE. Albumin and prothrombin time were serially measured before and after 24 TAE procedures performed on 21 HCC patients with underlying hepatic diseases in whom no plasma products had been used for therapy. Albumin decreased by up to 75% in one of the 21 patients during the first week but did not change or gradually decreased in 20 of the 21 patients. Prothrombin time showed no obvious changes. This study showed that prominent changes occurred in ICG-Rmax, i.e., in the hepatic functional reserve, after TAE.

Aged↗

Exaggerated insulin secretory response in patients with insulinomas to midaglizole, a drug with alpha 2-adrenergic blocking activity.

Midaglizole is a new alpha 2-adrenergic blocking agent which increases insulin release from normal pancreatic islets. We studied its effect in four patients with insulinomas. In three patients oral administration of 150 mg of midaglizole caused a large increase in serum insulin and a corresponding decrease in plasma glucose. The magnitude of the response cannot exclude the possibility that midaglizole has direct beta cell stimulatory activity. Two of the three patients had operations, and their insulin responses to midaglizole became normal after removing the tumours. In contrast, midaglizole did not stimulate insulin secretion in the fourth patient. A midaglizole stimulation test might be useful in screening patients with insulinomas.

Adenoma, Islet Cell↗

Decreased glutamate dehydrogenase protein in spinocerebellar degeneration.

A radioimmunoassay system for determining content of glutamate dehydrogenase (GDH) in human leukocytes was established and studied in 14 patients with spinocerebellar ataxia or atypical Parkinsonism. The protein content of leukocyte GDH was decreased in four patients and the reduction in the protein content was proportional to that in the enzyme activity. The ratio of GDH activity to protein content was invariable in healthy controls, diseased controls and patients with reduced GDH activity. These results suggested that at least a portion of the partial GDH deficiency was due to the decreased level of the enzyme protein.

Adult↗

Mitochondrial encephalomyopathy with sleep apnea.

A rare case with mitochondrial encephalomyopathy, in association with cerebellar ataxia, peripheral neuropathy, mental retardation and alveolar hypoventilation syndrome with sleep apnea, as demonstrated by polysomnography, was encountered. This combination has not been described previously. From a prognostic point of view, alveolar hypoventilation syndrome with sleep apnea is an important clinical feature is this disease entity. Neither ataxia nor the abnormality of pyruvate metabolism was alleviated after 6 months of therapy with coenzyme Q10.

Brain Diseases↗

Lunch induces an increase in the plasma prolactin concentration, but not vasoactive intestinal peptides or cholecystokinin.

Ingestion of lunch is known to be associated with acute release of prolactin (PRL). The neuroendocrine mechanism of this release was examined by measuring changes in serum vasoactive intestinal peptides (VIP) and cholecystokinin (CCK) after the noon meal in six normal men. The serum PRL concentration was significantly increased (40% above the level before lunch) from 30 min to 1 h 45 min after beginning to eat. However, the ingestion of lunch had no remarkable effects on the plasma immunoreactive concentration of VIP and CCK. Thus the changes in the plasma concentration of these two gut-brain peptides did not coincided with acute PRL release after ingestion of lunch, suggesting either that these two gut-brain peptides are probably not involved in PRL release after lunch, or that the level of these two gut-brain peptides in the general circulation may not represent that in the hypophyseal portal plasma.

Adult↗

Increased activity of intestinal acyl-CoA: cholesterol acyltransferase in rats with streptozocin-induced diabetes and restoration by insulin supplementation.

We examined the activities of intestinal acyl-CoA:cholesterol acyltransferase (ACAT) and cholesterol esterase, enzymes regulating cholesterol absorption, in rats with streptozocin-induced diabetes (STZ-D) to clarify the effect of diabetes on cholesterol absorption. Three weeks after the induction of diabetes, plasma cholesterol levels were slightly but significantly increased in diabetic rats compared with control animals, whereas a far more remarkable increase in plasma cholesterol was observed in diabetic rats when fed an atherogenic diet containing 1% cholesterol, 0.5% cholic acid, and 5% lard. Microsomal ACAT activity in intestinal mucosa was three times higher in diabetic than in control rats. However, no significant difference in the enzyme activity could be detected between diabetic animals fed control chow and those fed the atherogenic diet. Furthermore, insulin supplementation given to diabetic rats caused a reduction of enzyme activity to the levels found in control animals. In contrast, cholesterol esterase activity in rat intestinal mucosa was unaffected by either the induction of diabetes or the atherogenic diet feeding. In conclusion, we disclosed that apparent ACAT activity in intestinal mucosa is elevated in STZ-D rats. Therefore, we postulate that enhancement of CoA-dependent cholesterol esterification in the intestine might be one of the major factors responsible for hypercholesterolemia in diabetes.

Animals↗

Erythrocyte glycolysis and its marked alterations by muscular exercise in type VII glycogenosis.

Levels of erythrocyte glycolytic intermediates after the phosphofructokinase (PFK) step, including 2,3-bisphosphoglycerate (2,3-DPG), were decreased at rest in patients from separate families with type VII glycogenosis. The concentration of 2,3-DPG was about half of the normal control value during a period of unrestricted daily activity but was further decreased to one third of normal after a one-day bed rest. Mild ergometric exercise rapidly increased the levels of fructose-1,6-bisphosphate, dihydroxyacetone phosphate plus glyceraldehyde-3-phosphate, and 2,3-DPG in patients' circulating erythrocytes but did not in those of normal subjects. This indicated that a crossover point at the PFK step in glycolysis disappeared after physical exercise and, consequently, the 2,3-DPG concentration, which had decreased because of blockage of the PFK step, was restored considerably. This apparently exercise-related alteration in intermediary metabolism at the beginning of glycolysis was reproduced in vitro by incubating normal erythrocytes in the presence of inosine or ammonia, both of which have increased levels in circulating blood during and after exercise in this disorder. We conclude that physical activity in addition to a genetic deficiency in erythrocyte PFK affects glycolysis in erythrocytes in type VII glycogenosis and that myogenic factors released from exercising muscles may be responsible for this change.

2,3-Diphosphoglycerate↗