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Protective role of Clitoria ternatea L. flower extract on methylglyoxal-induced protein glycation and oxidative damage to DNA.

Poramin ChayaratanasinSirichai AdisakwattanaThavaree Thilavech
Published in: BMC complementary medicine and therapies (2021)
The study findings suggest that the direct carbonyl trapping ability and the free radical scavenging activity of CTE are the underlying mechanisms responsible for the prevention of protein glycation and oxidative DNA damage.
Keyphrases
  • dna damage
  • oxidative stress
  • protein protein
  • diabetic rats
  • binding protein
  • circulating tumor
  • dna repair
  • single molecule
  • cell free
  • anti inflammatory
  • drug induced