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Biomedical subjects

S R Sarkar

Publications and source records attributed to S R Sarkar.

At least 19 recordsLinked to original sources

Metabolic consequences of body size and body composition in hemodialysis patients.

Small body mass index is associated with increased mortality in chronic hemodialysis patients. The reasons for this observation are unclear but may be related to body composition. This study aimed to investigate the body composition in chronic hemodialysis patients. The difference between body mass and the sum of muscle, bone, subcutaneous, and visceral adipose tissue masses, measured by whole body magnetic resonance imaging, was defined as the high metabolic rate compartment representing the visceral mass. Protein catabolic rate was calculated from urea kinetics. Forty chronic hemodialysis patients (mean age 54.7 years; 87.5% African Americans; 45% females) were studied. High metabolic rate compartment expressed in percent of body weight was inversely related to body weight (r=-0.475; P=0.002) and body mass index (r=-0.530; P<0.001). In a multiple linear regression model, protein catabolic rate was significantly correlated only with high metabolic rate compartment (r=0.616; P<0.001). Assuming that protein catabolic rate in addition to protein intake reflects urea and uremic toxin generation, it follows that high metabolic rate compartment is the major compartment involved in their generation. Consequently, uremic toxin production rate may be relatively higher in patients with low body weight and low body mass index as compared to their heavier counterparts. The poorer survival observed in smaller dialysis patients may be related to these relative differences.

Adult↗

Measuring partial body potassium in the arm versus total body potassium.

Skeletal muscle (SM), the body's main structural support, has been implicated in metabolic, physiological, and disease processes in humans. Despite being the largest tissue in the human body, its assessment remains difficult and indirect. However, being metabolically active it contains over 50% of the total body potassium (TBK) pool. We present our preliminary results from a new system for measuring partial body K (PBK) that presently are limited to the arm yet provide a direct and specific measure of the SM. This uniquely specific quantification of the SM mass in the arm, which is shielded from the body during measurement, allows us to simplify the assumptions used in deriving the total SM, thereby possibly improving the modeling of the human body compartments. Preliminary results show that PBK measurements are consistent with those from the TBK previously obtained from the same subjects, thus offering a simpler alternative to computed tomography and magnetic resonance imaging used for the same purposes. The PBK system, which can be set up in a physician's office or bedside in a hospital, is completely passive, safe, and inexpensive; it can be used on immobilized patients, children, pregnant women, or other at-risk populations.

Adult↗

Effect of whole body gamma-radiation on glutathione reductase of rat tissues.

Adult female Sprague Dawley rats approximate ten months old were exposed to whole body gamma radiation of sublethal (4 Gy) and lethal (10 Gy) doses of radiation. Serum glutathione reductase enzyme values of 4 Gy exposed rats did not show any change on first and fourth day but significantly decreased on eighth day, while enzyme values in 10 Gy exposed group remained unaltered throughout. Heart glutathione reductase activities of sublethal group did not show any change on first and eighth day but significantly decreased on fourth day. Rats exposed to lethal doses of radiation, enzyme activities remained unchanged throughout. Liver glutathione reductase enzyme values of 4 Gy exposed group showed significant decrease on first and fourth day but arrived at control values on eighth day while the same in 10 Gy exposed group showed significant decrease from first day till the eighth day. An appreciable diminution was observed in spleen glutathione reductase enzyme activities of sublethal and lethal exposed rats from first day till eighth day.

Animals↗

Effect of ionizing radiation on tissue cyclic AMP and GMP in experimental rats.

Adult male Sprague Dawley rats were exposed to whole-body gamma radiation of 4 Gy and 10 Gy and cyclic AMP and GMP of several tissues were studied 4 hours, 24 hours and 72 hours after irradiation. Animals exposed to 4 Gy exhibited initial increase and subsequent decrease of plasma cyclic AMP, while opposite effects were noted in plasma cyclic GMP. Both groups of irradiated rats showed significant decrease of spleen cyclic AMP with variable responses in cyclic GMP. Initial increase with subsequent decrease of liver cyclic AMP was observed in irradiated animals with unaltered cyclic GMP values. It was interesting to note variable responses of myocardial cyclic AMP in both groups of experimental rats with a significant increase in heart cyclic GMP in rats exposed to 10 Gy only. In contrast, myocardial cyclic GMP was significantly decreased in rats exposed to 4 Gy groups.

Animals↗

Effect of whole body gamma radiation on reduced glutathione contents of rat tissues.

Reduced glutathione (GSH) contents of blood, heart, liver and spleen were studied after one, four and seven days of irradiation in rats. Blood GSH in rats exposed to 4 Gy remained unaltered throughout, while animals exposed to 8 Gy showed significant decrease of blood GSH on the 8th day after exposure. Diminution of liver and heart GSH contents was observed initially in both groups of irradiated rats, while the reverse was noted in spleen GSH contents of experimental animals.

Animals↗

Effect of low environmental temperature on adenylate cyclase and phosphodiesterase in rat tissues.

Adult rats were exposed to 5 degrees C for 5 and 24 h and thereafter the adenylate cyclase and phosphodiesterase (EC were studied in heart and liver. The cold exposure caused a significant increase in the myocardial adenylate cyclase with a simultaneous decrease of the phosphodiesterase activity. Long term cold exposure exhibited a decrease in the adenylate cyclase activity and an increase in the phosphodiesterase activity in rat liver.

Adenylyl Cyclases↗

Effect of whole-body gamma radiation on some metals of rat plasma.

Adult male rats were exposed to 4 and 10 Gy of whole-body gamma radiation, and several metals of plasma were studied on 1st, 3rd and 6th day after exposure. Lethal radiation increased plasma calcium initially with subsequent diminution, while plasma magnesium decreased initially in both groups, becoming normal on the 6th day post exposure. Plasma iron in 4-Gy exposed rats diminished on 3rd day, while the same in 10-Gy exposed animals increased initially and then decreased. Both groups of animals exhibited significant diminution of plasma copper and ceruloplasmin from the 3rd day post irradiation. Plasma monoamine oxidase (MAO) was enhanced from 1st day post exposure in 10-Gy exposed rats, which persisted still 6th day. Liver monoamine oxidase was significantly diminished from 1st day after exposure in lethally exposed rats, while spleen monoamine oxidase, after initial increase was normalised on 6th day post irradiation.

Animals↗