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논문 기본 정보

자료유형
학술저널
저자정보
Jamialahmadi Khadijeh (Biotechnology Research Center Pharmaceutical Technology Institute Mashhad University of Medical Sci) Amiri Amir Hossein (Cancer Research Center Shahrekord University of Medical Sciences Shahrekord Iran) Zahedipour Fatemeh (Department of Medical Biotechnology and Nanotechnology Faculty of Medicine Mashhad University of Me) Faraji Fahimeh (School of Pharmacy Mashhad University of Medical Sciences Mashhad Iran) Karimi Gholamreza (Pharmaceutical Research Center Pharmaceutical Technology Institute Mashhad University of Medical Sc)
저널정보
대한약침학회 Journal of Pharmacopuncture Journal of Pharmacopuncture 제25권 제4호
발행연도
2022.12
수록면
344 - 353 (10page)
DOI
10.3831/KPI.2022.25.4.344

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Objectives: Auraptene is the most abundant natural prenyloxycoumarin. Recent studies have shown that it has multiple biological and therapeutic properties, including antioxidant properties. Erythrocytes are constantly subjected to oxidative damage that can affect proteins and lipids within the erythrocyte membrane and lead to some hemoglobinopathies. Due to the lack of sufficient information about the antioxidant effects of auraptene on erythrocytes, this study intended to evaluate the potential of this compound in protecting radical-induced erythrocytes damages. Methods: The antioxidant activity of auraptene was measured based on DPPH and FRAP assays. Notably, oxidative hemolysis of human erythrocytes was used as a model to study the ability of auraptene to protect biological membranes from free radical-induced damage. Also, the effects of auraptene in different concentrations (25-400 µM) on AAPHinduced lipid/protein peroxidation, glutathione (GSH) content and morphological changes of erythrocytes were determined. Results: Oxidative hemolysis and lipid/protein peroxidation of erythrocytes were significantly suppressed by auraptene in a time and concentration-dependent manner. Auraptene prevented the depletion of the cytosolic antioxidant GSH in erythrocytes. Furthermore, it inhibited lipid and protein peroxidation in a time and concentration-dependent manner. Likewise, FESEM results demonstrated that auraptene reduced AAPH-induced morphological changes in erythrocytes. Conclusion: Auraptene efficiently protects human erythrocytes against free radicals. Therefore, it can be a potent candidate for treating oxidative stress-related diseases.

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