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Your search keyword '"MG, methylglyoxal"' showing total 20 results

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20 results on '"MG, methylglyoxal"'

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1. Methylglyoxal attenuates isoproterenol-induced increase in uncoupling protein 1 expression through activation of JNK signaling pathway in beige adipocytes

2. A structural study on the protection of glycation of superoxide dismutase by thymoquinone.

3. Compensatory mechanisms for methylglyoxal detoxification in experimental & clinical diabetes

4. Redox regulation by reversible protein S-thiolation in Gram-positive bacteria

5. The aldehyde dehydrogenase AldA contributes to the hypochlorite defense and is redox-controlled by protein S-bacillithiolation in Staphylococcus aureus

6. N-acetylcysteine attenuates systemic platelet activation and cerebral vessel thrombosis in diabetes

7. Neuroprotection through flavonoid: Enhancement of the glyoxalase pathway

8. Cysteine persulfides and polysulfides produced by exchange reactions with H2S protect SH-SY5Y cells from methylglyoxal-induced toxicity through Nrf2 activation

9. The characterisation and functional analysis of the human glyoxalase-1 gene using methods of bioinformatics

10. The cytotoxic mechanism of glyoxal involves oxidative stress

11. Oxidative DNA damage by hyperglycemia-related aldehydes and its marked enhancement by hydrogen peroxide

12. Hemolytic and antimalarial effects of tight-binding glyoxalase 1 inhibitors on the host-parasite unit of erythrocytes infected with Plasmodium falciparum

13. TRPC proteins contribute to development of diabetic retinopathy and regulate glyoxalase 1 activity and methylglyoxal accumulation

14. High glucose, glucose fluctuation and carbonyl stress enhance brain microvascular endothelial barrier dysfunction: Implications for diabetic cerebral microvasculature

15. Methylglyoxal attenuates isoproterenol-induced increase in uncoupling protein 1 expression through activation of JNK signaling pathway in beige adipocytes.

16. KRIT1 loss-of-function induces a chronic Nrf2-mediated adaptive homeostasis that sensitizes cells to oxidative stress: Implication for Cerebral Cavernous Malformation disease

17. Effect of piceatannol-rich passion fruit seed extract on human glyoxalase I–mediated cancer cell growth

18. Effect of piceatannol-rich passion fruit seed extract on human glyoxalase I-mediated cancer cell growth.

19. Glycolaldehyde induces endoplasmic reticulum stress and apoptosis in Schwann cells.

20. Glycolaldehyde induces endoplasmic reticulum stress and apoptosis in Schwann cells

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