This study is carried out on patients with type 2 diabetes mellitus to assess the lipid profile, malondialdehyde and glutathione. Our study is concerned with 51 (Iraqi Arab females) patients of type 2 diabetes mellitus compared with 31 control subjects unified in age, sex and ethnic background. Lipid profile is measured by using commercially available kits, while the serum MDA and glutathione levels are measured by means of sandwich ELISA test using commercially available kits. Serum MDA is significantly higher (P<0.001) while glutathione is significantly lower (P<0.001) in type 2 diabetic patients when compared to the control. The normal levels of MDA (3.82 ± 0.77n mol/ml) and GSH (2.23 ± 0.54 µg/ml) recorded for the non-diabetic females are significantly (p<0.001) increased and depleted in the diabetic patients who record (6.78 ± 1.21 n mol/ml) and (1.29 ± 0.23 µg/ml) for MDA, GSH respectively. Parameters of lipid profile were significantly increase (P<0.001), while HDL cholesterol significantly decrease (P<0.001) in patients compared to the control group. The receiver operator curve (ROC) analysis of the forthcoming variations reveale the descending order of serum MDA (0.999), GSH (0.984), HDL (0.817), LDL (0.796), T.C (0.974), TG (0.727) & serum VLDL (0.722) showing a significant variation. In conclusion, the study shows low levels of GSH and high levels of MDA in diabetic patients indicating to an increased oxidative stress which is considered as the main cause to type 2 diabetes mellitus especially obese ones.
BN Rashid, International Journal of Research in Social Sciences and Humanities, 2019 - Cited by 1
Since the COVID-19 pandemic alarm was made by the severe acute respiratory syndrome (SARS)-coronavirus (CoV) 2, several institutions and agencies have pursued to clarify the viral virulence and infectivity. The fast propagation of this virus leads to an unprecedented rise in the number of cases worldwide. COVID-19 virus is exceptionally contagious that spreads through droplets, respiratory secretions, and direct contact. The enveloped, single-stranded RNA virus has a specific envelop region called (S) region encoding (S protein) that specifically binds to the host cell receptor. Viral infection requires receptors' participation on the host cell membrane's surface, a key- step for the viral invasion of susceptible cells.
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