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Gora Dadheech Sandhya Mishra Shiv Gautam Praveen Sharma 《Indian journal of clinical biochemistry : IJCB》2006,21(2):34-38
A disturbance in the antioxidant defense system including α-tocopherol, ascorbic acid and reduced glutahtione metabolism due
to free radical induced oxidative injury has been implicated in various neuro-psychiatric disorders. The roles of these antioxidants,
changes in their blood levels and correlation with oxidative stress were studied in a common psychiatric illness Schizophrenia.
Fifty-eight subjects of either sex ranging in age from 18–60 years divided into two age groups (≤40 and >40 years) diagnosed
for schizophrenia, and forty age and sex-matched normal subjects as controls were included in the study. Blood samples were
analyzed for malondialdehyde (MDA), α-tocopherol, total ascorbic acid (TAA), dehydro ascorbic acid (DHAA), reduced ascorbic
acid (RAA), leucocyte ascorbic acid (LAA) and reduced glutathione (GSH). A decrease in the levels of α-tocopherol, total ascorbic
acid and reduced glutathione was found in schizophrenics compared to normal controls. Further a significant rise in oxidative
stress and decreased antioxidant status was observed in the chronic stage of schizophrenia as compared to those in acute condition.
A significant rise in dehydroascorbic acid with concomitant fall in reduced ascorbic acid suggests scavenging action of ascorbic
acid and its utilization with increased oxidative stress as indicated by high blood malondialdehyde levels. Leucocyte ascorbic
acid, a better index of ascorbic acid status was also found to be reduced in schizophrenics, suggesting depletion of body
stores of ascorbic acid and the condition worsened with advancing age. 相似文献
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Praveen Sharma Sandhya Mishra Peeyush Ajmera Sandeep Mathur 《Indian journal of clinical biochemistry : IJCB》2005,20(1):145-149
As antioxidants play a protective role in the pathophysiology of diabetes and cardiovascular diseases, understanding the physiological
status of antioxidant concentration among people at high risk for developing these conditions, such as Metabolic Syndrome,
is of interest. In present study out of 187 first degree non-diabetic relatives and 192 non-diabetic spouses, 33.1% and 19.7%
were found to have metabolic syndrome respectively. Subjects with metabolic syndrome (≥3 risk factors) had poor antioxidants
status as reflected by significantly low levels of vitamin A, C & E and significantly increased (p<0.01) oxidative stress
as compared to those without metabolic syndrome. At the same time serum insulin levels and insulin resistance were found to
be significantly high (p<0.001) in metabolic syndrome. A strong positive correlation (r=0.946; p<0.001) between oxidative
stress and insulin resistance was observed in metabolic syndrome. Low levels of antioxidants and increased oxidative stress
with insulin resistance in metabolic syndrome suggests that besides therapeutic life style changes (TLC) as suggested in ATP
III guidelines inclusion of antioxidant vitamins, fruits and vegetable could be beneficial to ward off the consequences of
metabolic syndrome. 相似文献
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Pushpa Durgawale P. S. Shukla Sonali Mishra 《Indian journal of clinical biochemistry : IJCB》1999,14(2):241-244
An unexpected increase in erythrocyte osmotic resistance during viral hepatitis in two patients prompted study of effects
of hepatitis (in Karad) on osmotic resistance. The test was performed by placing erythrocytes in saline solutions of decreasing
osmolarity and osmotic fragility defined in terms of the saline concentration at which hemolysis begins. Study included 44
infected subjects (acute viral hepatitis non-A non-B). All forty four infected subjects showed abnormal results when compared
to normal subjects. increased erythrocyte osmotic resistance i.e. hemolysis begins between 0.45% to 0.40% of NaCl and is completed
between 0.25% to 0.20% NaCl, whereas in normal subjects. hemolysis begins between 0.50% to 0.45% NaCl and is completed between
0.35% to 0.30% NaCl. Osmotic resistance was observed with increase in total bilirubin (mean±SD) (4.6 ±3.6), direct bilirubin
(3.0±2.5), SGOT (58.8±55.5) SGPT (114.2±150.3) activity. Physiologic shifts in erythrocyte osmotic resistance may be due to
changes in membrane lipid ratio. 相似文献
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