AI Article Synopsis

  • Aldose reductase (AR), α-amylase, and α-glycosidase are crucial enzymes to manage diabetic complications, and AR was successfully purified from sheep kidney.
  • Phenolic compounds were tested for their inhibitory effects on these enzymes, with findings showing varying effectiveness across different compounds.
  • Genistein was most effective against AR and α-glycosidase, while delphinidin chloride was most effective against α-amylase, suggesting potential for these compounds in preventing or treating diabetes-related issues.

Article Abstract

Aldose reductase (AR), α-amylase, and α-glycosidase are vital enzymes to prevent diabetic complications. Here, AR was purified from sheep kidney using elementary methods with 111.11-purification fold and with 0.85% purification yield. The interactions between some phenolic compounds and the AR, α-glycosidase, and α-amylase enzyme were determined. It was found that phenolic compounds exhibit potential inhibitor properties for these enzymes. For α-amylase, studied phenolic compounds showed IC values in the range of 601.56-2,067.78 nM. For α-glycosidase, K values were found in the range of 169.25 ± 27.22-572.88 ± 106.76 nM. For AR, K values in the range of 8.48 ± 0.56-43.26 ± 7.63 µM. However, genistein showed the best inhibition effect toward AR and α-glycosidase, but delphinidin chloride exhibited the best inhibition effect against α-amylase enzyme. We determined that all compounds showed noncompetitive inhibition effect against AR and α-glycosidase. Also, studied phenolic compounds may be useful in the prevention or treatment of diabetic complications.

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Source
http://dx.doi.org/10.1002/bab.1781DOI Listing

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