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首页> 外文期刊>Saudi Pharmaceutical Journal >Protective effect of leaf extract of Abutilon indicum on DNA damage and peripheral blood lymphocytes in combating the oxidative stress
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Protective effect of leaf extract of Abutilon indicum on DNA damage and peripheral blood lymphocytes in combating the oxidative stress

机译:邻云蛋白叶片提取物对氧化应激对氧化胁迫下DNA损伤和外周血淋巴细胞的保护作用

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摘要

The current research explores in vitro antioxidant characteristics, radiation-induced DNA damage protection and quenching effects of the oxidative stress by the ethanolic leaf extract of Abutilon indicum (EEAI) on human peripheral blood lymphocytes (PBLs). PBLs were incubated with various concentrations of EEAI accompanied by pre- and post-treatment with hydrogen peroxide. Cell viability was investigated by MTT assay. In addition, quenching of free radicals were measured in vitro using DPPH, superoxide anion, hydrogen peroxide, reducing power and nitric oxide radical scavenging assays. These activities were compared with ascorbic acid as standard antioxidants. Furthermore, inhibition of UV radiation-induced strand break formation in plasmid pBR322 DNA and anti-Fenton reactions in calf thymus DNA was evaluated. Cytotoxic effects of hydrogen peroxide on PBLs were significantly reduced with EEAI pre-treatment compared to post-treatment in a dose-dependent manner comparable with similar cytoprotective effects of ascorbic acid ( p ?0.05). EEAI has shown strong antioxidant effects in the scavenging of DPPH, superoxide anion, hydrogen peroxide, and nitric oxide. EEAI also has a strong protective effect of UV-induced plasmid pBR322 DNA cleavage and Fenton-induced DNA damage. Overall, the results revealed that Abutilon indicum has a cytoprotective, potent antioxidant and DNA protective effect that provide pharmacological credence to justify its overall biological activity. Furthermore, future studies to identifying bioactive molecules and its molecular mechanisms responsible for promising therapeutic applications in the rescue of disease-induced cellular oxidative damage.
机译:目前的研究探讨了抗氧化抗氧化特性,辐射诱导的DNA损伤保护和氧化应激对人外周血淋巴细胞(PBLS)的乙醇叶子提取物的氧化胁迫抗氧胁迫。将PBL与各种浓度的EEAI一起孵育,并通过过氧化氢预处理。通过MTT测定研究细胞活力。此外,使用DPPH,超氧化物阴离子,过氧化氢,降低功率和一氧化氮自由基清除测定,在体外测量自由基的猝灭。将这些活性与抗坏血酸作为标准抗氧化剂进行比较。此外,评估抑制UV辐射诱导的含量在牛胸腺DNA中的紫外线PBR322 DNA中的抗芬顿反应中的紫外线辐射诱导的链形成。与抗坏血酸相似的剂量依赖性方式相比,EEAI预处理与EEAI预处理有显着降低过氧化氢对PBL的细胞毒性作用显着降低了(P> 0.05)的类似细胞保护作用。 EEAI显示了DPPH,超氧化物阴离子,过氧化氢和一氧化氮的清除抗氧化效果。 EEAI还具有强大的UV诱导质粒PBR322 DNA切割和芬顿诱导的DNA损伤的保护作用。总体而言,结果表明,Abutilon Indum具有细胞保护,有效的抗氧化剂和DNA保护作用,可提供药理学信用,以证明其整体生物活性。此外,未来的研究识别生物活性分子及其负责在疾病诱导的细胞氧化损伤中有前途的治疗应用的分子机制。

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