[A study of lymphocyte subset distribution and HLA-DR antigen expression in peripheral blood and in mucosa of the stomach, small intestine and colon].
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Biomedical subjects
Publications and source records attributed to H Miyoshi.
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Increases in metabolic rate and core temperature are common responses to severe injury. We have investigated the hypothesis that these responses are due to increases in substrate cycling. A substrate cycle exists when opposing, nonequilibrium reactions catalyzed by different enzymes are operating simultaneously. At least one of the reactions must involve the hydrolysis of ATP. Thus, a substrate cycle both liberates heat and increases energy expenditure, yet there is not net conversion of substrate to product. In studies in volunteers (n = 18) and in patients with severe burns who were in a hypermetabolic state (n = 18), we used stable-isotope tracers to quantify substrate cycling in the pathways of glycolysis and gluconeogenesis and a cycle involving the simultaneous breakdown and synthesis of stored triglyceride (triglyceride-fatty acid cycle). The total rates of triglyceride-fatty acid and glycolytic-gluconeogenic cycling were elevated in the patients by 450 and 250 percent, respectively (P less than 0.01). An infusion of propranolol in the patients greatly reduced triglyceride-fatty acid cycling but did not affect gluconeogenic-glycolytic cycling. We conclude that increased substrate cycling contributes to the increased thermogenesis and energy expenditure following severe burns and that the increased triglyceride-fatty acid cycling is due to beta-adrenergic stimulation.
Uncoupling activity with rat liver mitochondria and protonophoric activity across the lecithin liposomal membranes were measured for a series of non-classical uncouplers related to the most potent uncoupler known until now, SF6847 (2,6-di-t-butyl-4-(2',2'-dicyanovinyl)phenol). The correlation between uncoupling and protonophoric activities for a number of uncouplers, both non-classical and classical (simply substituted phenols), was examined quantitatively. Correlation was excellent when such factors as the stability of anionic species in the membrane phase and the difference in the pH conditions of the extramembranous aqueous phase were taken into account. Carbonylcyanide m-chlorophenylhydrazone (CCCP) and carbonylcyanide p-trifluoromethoxyphenylhydrazone (FCCP), which are structurally different, were correlated in a way that resembled the correlation of phenolic compounds, so we think that the mode of action of weakly acidic uncouplers was the same regardless of the structural type. Our findings were evidence for the shuttle-type mechanism of uncoupling action.
The protonophoric activity through liposomal membranes was measured and compared with the uncoupling activity with the oxidative phosphorylation of rat-liver mitochondria for 19 substituted phenols. Quantitative analyses of the protonophoric activity of the phenols in terms of physicochemical molecular parameters showed that the activity was mostly decided by two factors: the partition coefficient between the liposome and aqueous buffer phases and the acid dissociation constant. Correlation was excellent between protonophoric and uncoupling activities when the difference in the effect of acidity of phenols between liposomal and mitochondrial membranes was taken into account. The results were further evidence for the shuttle-type of mechanism of weakly acidic uncouplers based on the Mitchell chemiosmotic hypothesis.
The effect of brown rice with low protein intake was studied in five healthy young men. Feces were weighed, the digestibility of nutrients was determined, and blood tests were made. Each subject followed a diet consisting mainly of polished rice for 14 days and one consisting mainly of brown rice for 8 days. Both diets contained 0.5 g protein per kg of body weight. The brown rice diet had 3 times as much dietary fiber as the polished rice diet. On the brown rice diet, fecal weight increased, and apparent digestibility of energy, protein, and fat decreased, as did the absorption rates of Na, K, and P. The nitrogen balance was negative on both diets, but more negative on the brown rice diet. The phosphorus balance on the brown rice diet was significantly negative, but other minerals were not affected by the diet. The levels of cholesterol and minerals in the plasma were not significantly different on the polished rice diet and the brown rice diet. Comparing these results with data on standard protein intake (Miyoshi, H. et al (1986) J. Nutr. Sci. Vitaminol., 32, 581-589.), we concluded that brown rice reduced protein digestibility and nitrogen balance.
The effect of restricted diets on protein metabolism was studied in obese rats (obesity had been induced by ad libitum feeding of a diet containing 30% fat and 25% casein). The obese rats were fed on one of three restricted diets, each containing 5% fat, for 2 weeks (restricted feeding groups); a high-protein diet (HPD, 50% casein), a standard-protein diet (SPD, 25% casein), or a low-protein diet (LPD, 5% casein). The food intake was restricted to 5 g per day per rat. On the eleventh day, the rats were given [15N]glycine orally, and 4 days later, they were killed. The restricted feeding groups all showed similar weight losses (about 100 g), 2 weeks after the start of the restricted diet. The 15N distribution in whole body was measured and results were compared with those of control rats given 5%- or 30%-fat diet ad libitum. The whole-body distribution of 15N in the HPD group was similar to that in the rats fed ad libitum although the diet intake was restricted. The results suggested that the amount of protein in a restricted diet is important for maintenance of protein metabolism in obese rats.
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Ability to utilize urea nitrogen for body protein synthesis was examined with Papua New Guinea (PNG) highlanders and Japanese (JPN). Eight male PNG highlanders and 8 male JPN were fed on a low protein diet containing 0.55 g protein/kg or an adequate protein diet containing 1.34 g protein/kg for 1 or 2 weeks. The fate of 15N was measured after oral administration of 15N-labelled urea. There was no difference in 15N incorporation into serum protein between PNG highlanders and JPN receiving low protein diets. On the other hand, on the adequate protein diet, 15N incorporation in PNG highlanders was similar to that on the low protein diet, in contrast to that in JPN which was hardly detected in the adequate protein diet. When PNG highlanders take more protein than protein in their usual diet, they effectively incorporate ingested protein into their body protein and urea nitrogen is utilized for synthesis of body protein.
The effects of rice fiber on fecal weight, transit time, frequency of defecations, digestibility of nutrients and blood status were investigated in 5 healthy young men. Each of them consumed a brown rice diet and then a polished rice diet for 2 weeks respectively. Both diets contained 1.2 g protein per kg body weight. The brown rice diet contained 2 times as much dietary fiber as the polished rice diet. When they consumed the brown rice diet, it showed an increase of fecal weight and decrease of digestibility of energy, nitrogen and fat. Nitrogen balance was not significantly different and kept zero balance on both diets. Concentration of plasma cholesterol was not significantly different. The results suggest that rice fiber produced an increase in fecal weight, which is assumed to be effective in preventing colonic disease in advanced countries and does not affect plasma lipid level.
One of major complications following esophageal reconstruction is anastomotic leakage. It is concerned with suppression of oxygen supply to the stomach roll used for esophageal reconstruction. This study was performed for the purpose of evaluation of oxygen supply to the stomach roll under various circumstances by the measurement of tissue oxygen tension (PtO2) using micro-electrode. PtO2 within muscle layer of normal stomach was 60 mmHg, and that of stomach roll revealed 58% of normal stomach in dog. The decline of PtO2 resulted from suppression of arterial feeding rather than venous congestion. PtO2 in the stomach roll was reduced in hypoxemic condition by decreasing inspired oxygen tension, and did not rise in hyperoxemic condition in dog. PtO2 in the stomach roll was measured in 19 human cases daily until the 7th post-operative day. It was unstable for the early post-operative days, and anastomotic leakage occurred in the cases of which PtO2 revealed under 30 mmHg for the first 5 days. Therefore respiratory and hemodynamic control should be strictly performed for this period to prevent leakage from anastomosis.
The dynamics of growth hormone (GH) secretion in response to different GH secretagogues has been studied in adult freely moving male rats one month after induction of diabetes by single i.v. injection of streptozotocin (60 mg/kg). Baseline plasma GH concentrations and pituitary GH content were not different in streptozotocin-diabetic (St-D) rats and controls. Clonidine (0.15 mg/kg i.v.), an alpha 2-adrenergic agonist, failed to evoke GH release in St-D rats. Substitution therapy with insulin (1 IU/100 g b.wt.daily) delivered through subcutaneously implanted minipumps, allowed re-institution of a normal GH responsiveness to clonidine. At odds with clonidine, FK 33-824 (0.1 mg/kg i.v.), a potent analog of the opioid peptide Met-enkephalin, induced a similar rise in plasma GH levels in control and St-D rats. Finally, administration of a synthetic replicate of a GH-releasing hormone of human pancreatic origin, hpGRF-40 (2.5 micrograms/kg i.v.) elicited a higher GH response in St-D rats than in controls. These data indicate that in St-D rats: (1) an impaired function of noradrenergic pathways controlling GH release is present; (2) contrary to previous beliefs, an alpha 2-adrenergic mechanism is not involved in the GH-releasing effect of opioid peptides; and (3) pituitary GH responsiveness to hpGRF is increased.
Hematological values and serum amino-acid concentrations were measured in 17 healthy male adult Papua New Guinea highlanders who live on a sweet-potato staple diet. Hematological values were within the normal range, except for a low serum urea concentration. The concentrations of serum threonine, valine, isoleucine, leucine and tyrosine were significantly lower, and those of arginine, glutamate, glycine and alanine were significantly higher, than in Japanese controls. These amino acid patterns in the serum of Papua New Guinea highlanders are an indication of low protein nutrition and adequate energy supply. Some essential amino acid and urea concentrations in the serum of nine Papua New Guinea subjects fed on an adequate protein diet (1.3 g/kg body weight, about twice their habitual diet) for 13 days were significantly increased but were still significantly lower than those of Japanese subjects. Serum alanine decreased on an adequate protein diet. These results show that amino acid uptake and utilization by peripheral tissues may be accelerated on an adequate protein diet. Blood status and serum amino acid concentrations did not show any change except for urea and some amino acids, when five Papua New Guinea highlanders were fed on a low protein diet (0.6 g/kg) consecutively for 13 days.
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