首页> 美国卫生研究院文献>Journal of Biomedical Science >Partially hydrolyzed guar gum supplement reduces high-fat diet increased blood lipids and oxidative stress and ameliorates FeCl3-induced acute arterial injury in hamsters
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Partially hydrolyzed guar gum supplement reduces high-fat diet increased blood lipids and oxidative stress and ameliorates FeCl3-induced acute arterial injury in hamsters

机译:部分水解的瓜尔豆胶补充剂可减少高脂饮食增加血脂和氧化应激并改善FeCl3引起的仓鼠急性动脉损伤

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摘要

Increased reactive oxygen species (ROS) and hyperlipidemia can promote arterial thrombus. We evaluated the potential of a partially hydrolyzed guar gum (PHGG) as dietary fiber on lipid profiles and FeCl3-induced arterial thrombosis in the high fat-diet fed hamsters. Our in vitro results found that PHGG is efficient to scavenge O2-•, H2O2, and HOCl. High fat-diet increased plasma triglyceride, total cholesterol, LDL, VLDL, methylguanidine and dityrosine level and accelerated FeCl3-induced arterial thrombosis formation (from 463 ± 51 to 303 ± 45 sec). Low dose PHGG supplement significantly decreased the total cholesterol, LDL, methylguanidine and dityrosine level and delayed the time for arterial thrombosis formation (528 ± 75 sec). High dose PHGG supplement decreased the level in triglyceride, total cholesterol, LDL and VLDL and further delayed the time for arterial thrombus (671 ± 36 sec). The increased Bax protein and decreased Bcl-2 and HSP-70 protein expression was found in the carotid and femoral arteries of high fat-diet hamsters. Low and high dose of PHGG supplement decreased Bax expression and increased Bcl-2 and HSP-70 protein expression. We found that FeCl3 significantly enhanced intercellular adhesion molecule-1 and 4-hydroxynonenal expression in the endothelial site of damaged artery after 150-sec FeCl3 stimulation. PHGG supplement decreased the endothelial ICAM-1 and 4-hydroxynonenal expression after 150-sec FeCl3 stimulation. Based on these results, we conclude that PHGG supplement can increase antioxidant protein expression and thus decrease oxidative stress induced arterial injury.
机译:活性氧(ROS)增加和高脂血症可促进动脉血栓形成。我们评估了部分水解的瓜尔豆胶(PHGG)作为膳食纤维对高脂饮食仓鼠的脂质分布和FeCl3诱导的动脉血栓形成的潜在作用。我们的体外结果发现,PHGG可有效清除O2 -•,H2O2和HOCl。高脂肪饮食会增加血浆甘油三酸酯,总胆固醇,LDL,VLDL,甲基胍和二酪氨酸水平,并加速FeCl3诱导的动脉血栓形成(从463±51到303±45秒)。低剂量PHGG补充剂可显着降低总胆固醇,LDL,甲基胍和二酪氨酸水平,并延迟了动脉血栓形成的时间(528±75秒)。高剂量PHGG补充剂可降低甘油三酸酯,总胆固醇,LDL和VLDL的水平,并进一步延迟动脉血栓形成的时间(671±36秒)。在高脂饮食仓鼠的颈动脉和股动脉中发现Bax蛋白增加,Bcl-2和HSP-70蛋白表达降低。低剂量和高剂量的PHGG补充剂会降低Bax表达,并增加Bcl-2和HSP-70蛋白表达。我们发现FeCl3刺激150秒FeCl3刺激后,明显增强了受损动脉内皮位置的细胞间粘附分子-1和4-hydroxynonenal表达。在150秒的FeCl3刺激后,PHGG补充剂降低了内皮ICAM-1和4-羟基壬烯的表达。根据这些结果,我们得出结论,PHGG补充剂可以增加抗氧化蛋白的表达,从而减少氧化应激引起的动脉损伤。

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