橙皮素-7-芸香糖苷可减轻敌敌畏诱导的红细胞血脂异常和氧化应激反应

IF 5.4 Q2 ENGINEERING, ENVIRONMENTAL Journal of hazardous materials advances Pub Date : 2024-10-09 DOI:10.1016/j.hazadv.2024.100495
Adio J. Akamo , Adetutu O. Ojelabi , Naomi M. Akamo , Boluwatife A. Olagunju , Oluwatobi T. Somade , Mary I. Olasoju , Ofem E. Eteng , Mushafau A. Akinsanya , Adedayo A. Adebisi , Taiwo S. Oguntona , Yusuf O. Aderibigbe , Adewale M. Taiwo , Iyabode A. Kehinde , Jacob K. Akintunde , Regina N. Ugbaja
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引用次数: 0

摘要

在尼日利亚的许多农村和半城市地区,敌敌畏(DDVP)是一种常用杀虫剂。然而,它对健康的危害很大,包括红细胞毒性。橙皮素-7-芸香糖苷(Hesp-7-Rut)是一种柑橘黄酮苷,具有抗氧化、抗血脂异常和乙酰胆碱酯酶调节等特性。本研究探讨了 Hesp-7-Rut 在减轻大鼠红细胞损伤方面的化疗作用。42 只大鼠被随机 "分配 "为 7 组(每组 6 只大鼠):对照组、DDVP 单药组(8 毫克.千克-¹-天-¹)、DDVP + Hesp-7-Rut 组(50 毫克.公斤-¹天-¹)、DDVP + Hesp-7-Rut (100 毫克.公斤-¹天-¹)、DDVP + 阿托品(0.2 毫克.公斤-¹天-¹)、仅 Hesp-7-Rut (50 毫克.公斤-¹天-¹)和仅 Hesp-7-Rut (100 毫克.公斤-¹天-¹)。给大鼠口服 DDVP 7 天,然后再口服 Hesp-7-Rut 或阿托品 14 天。收集血液样本以进行生化检测。Hesp-7-Rut 能显著(p < 0.05)消除 DDVP 引起的红细胞一氧化氮、丙二醛、胆固醇、磷脂和胆固醇:磷脂比率的增加。此外,Hesp-7-Rut 还能逆转 DDVP 引起的红细胞谷胱甘肽水平、GST、SOD、过氧化氢酶、谷胱甘肽过氧化物酶和乙酰胆碱酯酶活性的降低。总之,Hesp-7-Rut 可通过减轻氧化应激、血脂异常和乙酰胆碱酯酶抑制作用,有效抵消 DDVP 引起的红细胞功能障碍。这些研究结果突出表明,Hesp-7-Rut 有可能成为减轻 DDVP 暴露有害影响的治疗药物。
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Hesperetin-7-rutinoside mitigates erythrocyte dyslipidemia and oxidative stress induced by dichlorvos
In many rural and semi-urban areas of Nigeria, dichlorvos (DDVP) is a commonly utilized pesticide. However, it provokes remarkable health hazards, including erythrocyte toxicity. Hesperetin-7-rutinoside (Hesp-7-Rut), a citrus flavanone glycoside with antioxidant, anti-dyslipidemia and acetylcholinesterase-modulating properties has been investigated for its protective effects against various xenobiotic-mediated toxicities. This inquiry probed the chemotherapeutic role of Hesp-7-Rut in mitigating erythrocyte damage in rats. Forty-two rats were randomly `apportioned into seven groups (6 rats/group): control, DDVP alone (8 mg.kg⁻¹day⁻¹), DDVP + Hesp-7-Rut (50 mg.kg⁻¹day⁻¹), DDVP + Hesp-7-Rut (100 mg.kg⁻¹day⁻¹), DDVP + atropine (0.2 mg.kg⁻¹day⁻¹), Hesp-7-Rut only (50 mg.kg⁻¹day⁻¹), and Hesp-7-Rut only (100 mg.kg⁻¹day⁻¹). Rats were orally administered DDVP for 7 days followed by Hesp-7-Rut or atropine for another 14 days. Blood samples were collected to assess for biochemical assays. Hesp-7-Rut significantly (p < 0.05) rescinded DDVP-prompted increases in erythrocyte nitric oxide, malondialdehyde, cholesterol, phospholipids, and cholesterol: phospholipids ratio. Additionally, Hesp-7-Rut reversed DDVP-elicited decreases in red blood cell glutathione levels, activities of GST, SOD, catalase, glutathione peroxidase, and acetylcholinesterase. Overall, Hesp-7-Rut efficiently counteracts DDVP-elicited erythrocyte dysfunction by mitigating oxidative stress, dyslipidemia, and acetylcholinesterase inhibition. These findings highlight the potential of Hesp-7-Rut as a promising therapeutic agent for mitigating the harmful effects of DDVP exposure.
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Journal of hazardous materials advances
Journal of hazardous materials advances Environmental Engineering
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4.80
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