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B P Kang

Publications and source records attributed to B P Kang.

4 recordsLinked to original sources

Selenium supplementation and diet induced hypercholesterolemia in the rat: changes in lipid levels, malonyldialdehyde production and the nitric oxide synthase activity.

Male Sprague Dawley rats were divided into three groups, viz (I) Controls, (II) High fat diet (HFD) fed, (III) HFD fed+selenium supplemented. After three months of treatment, there were significant increases in serum cholesterol and triglycerides in HFD fed group as compared to control. However, in Se supplemented group, the levels of serum cholesterol and triglycerides were significantly less as compared to group II. Selenium-dependent glutathione peroxidase (GSH-Px) activity in the liver and the aorta increased significantly in HFD fed animals and also showed additional significant increase on selenium supplementation. Malonyldialdehyde (MDA) concentrations in serum, liver and aorta and the activity of nitric oxide synthase (NOS; evident from reactive nitrogen intermediates and citrulline levels) in plasma showed significant increases in HFD fed group. However, supplementation of selenium led to a significant reduction in the levels of these parameters vis-a-vis HFD fed animals except in MDA levels in the serum and the liver where this decrease was non-significant. The important finding of this study is that selenium supplementation modulates the sequences favoring pathogenesis of atherosclerosis.

Animals

Effect of diet induced hypercholesterolemia and selenium supplementation on nitric oxide synthase activity.

The aim of the present study was to examine the activity of nitric oxide synthase (NOS, EC 1.14.23) in plasma of high fat diet (HFD, 2% cholesterol and 100 g table butter/kg diet) and HFD + selenium (Se, 1 ppm as sodium selenite) fed rabbits for three months. Significant increase in the serum cholesterol and triglyceride levels in HFD fed group was observed. The activity of NOS also increased very significantly. However in Se supplemented animals, there was a significant reduction in serum cholesterol as well as in plasma NOS activity relative to HFD fed animals. It is concluded that the protective effect of Se on HFD induced NOS activity acts probably through its antioxidant/inhibitory action.

Animals

LDH-C4-substrate binary complexes studied by intrinsic fluorescence method.

Lactate dehydrogenase-C4 (LDH-C4) has been studied in presence of substrates using intrinsic fluorescence measurements. Excitation maximum of LDH-C4 occurred at 282 nm whereas fluorescence emission maximum was obtained at 340 nm. Fluorescence intensities at 340 nm showed that ligands viz. NAD+, NADH, pyruvate and lactate quench the relative fluorescence intensities of LDH-C4 in a concentration dependent manner. NAD+ and NADH produced a maximum quenching between 92-93% while pyruvate and lactate quenched the fluorescence of LDH up to 29% and 21% respectively. Association constants (Ka) based on fluorescence measurements were 6.05 x 10(4)M-1, 20 x 10(4)M-1, 0.113 x 10(4)M-1 and 0.3 x 10(4)M-1, for NAD+, NADH, lactate and pyruvate respectively. Stern-Volmer constants (Ksv) show that NAD+ and NADH have single Ksv of 4.07 x 10(4)M-1 and 1.47 x 10(5)M-1, whereas lactate and pyruvate indicated quenching reaction to be made up of two components. Ksv at low and high concentration of lactate respectively were 0.645 x 10(2)M-1 and 0.05 x 10(2)M-1, whereas corresponding Ksv with pyruvate were 1.008 x 10(3)M-1 and 0.408 x 10(3)M-1. Low Ksv at higher concentrations suggested that the aromatic chromophores are located within a hydrophobic environment. Red shift in fluorescence maximum (lambda max) by 2nm with lactate and 6nm with pyruvate showed that interaction of these ligands with LDH-C4 exposes some buried chromophores of the enzyme to the surface.

Animals

Quenching of intrinsic fluorescence of sperm specific LDH by optical isomers of gossypol.

Intrinsic fluorescence of LDH-C4 has been studied in the presence of optical isomers of gossypol. The study showed that fluorescence due to tryptophan residues after excitation of LDH at 282 nm is quenched by each gossypol enantiomere in a concentration dependent manner. Half of the maximum quench (Q50%) of enzyme occurred with gossypol (-) at 0.9 x 10(-4) mol/l and with gossypol (+) at 1.4 x 10(-4) mol/l showing a maximum quench (Qmax) of 45% and 65% respectively, with a corresponding association constant (Ka) of 1.0 x 10(4) l/mol and 0.4 x 10(4) l/mol. Stern-Volmer constant (Ksv) inferred that quenching of LDH comprises at least two components with two different Ksv values. Ksv(I) and Ksv(II) between LDH-C4 and gossypol (-) were 1.97 x 10(3) l/mol and 1.22 x 10(3) l/mol, and those between LDH-C4 and gossypol(+) were 2.3 x 10(3) l/mol and 1.56 x 10(3) l/mol. Smaller Ksv at higher concentrations of gossypol indicated that some of the tryptophan residues in LDH-C4 are deeply buried within a hydrophobic environment. There was no blue or red shift of LDH-C4 when interacting with either of the gossypol enantiomeres.

Animals