首页> 外文期刊>Clinical and experimental pharmacology & physiology >Influence of gender on oxidative stress, lipid peroxidation, protein damage and apoptosis in hearts and brains from spontaneously hypertensive rats.
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Influence of gender on oxidative stress, lipid peroxidation, protein damage and apoptosis in hearts and brains from spontaneously hypertensive rats.

机译:性别对自发性高血压大鼠心脏和大脑的氧化应激,脂质过氧化,蛋白质损伤和细胞凋亡的影响。

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1. Hypertension leads to oxidative stress, lipid and protein damage, apoptosis and impaired cardiac contractile function. However, impact of gender on these hypertension-associated abnormalities has not been elucidated. 2. The present study evaluated the oxidative stress, lipid/protein damage, apoptosis in heart and brain tissues as well as cardiomyocyte contractile function in Wistar Kyoto (WKY) and spontaneously hypertensive rats (SHR) of both genders. Oxidative stress, lipid peroxidation, protein damage and apoptosis were assessed by glutathione (GSH) : reduced glutathione (GSSG) ratio, malondialdehyde (MDA) levels, protein carbonyl levels and caspase-3 activity, respectively. Cardiomyocyte contractile function was examined including peak shortening (PS), time-to-PS (TPS), time-to-90% relengthening (TR90) and maximal velocity of shortening/relengthening (+/-dL/dt). The SHR cardiomyocytes displayed reduced PS and +/-dL/dt compared with gender-matched WKY counterparts. Male but not female SHR cardiomyocytes possessed longer resting cell length, normal TPS and prolonged TR90. All mechanical parameters were comparable between male and female WKY rats with the exception of a higher TR90 in females. Hypertension did not significantly affect the GSH : GSSG ratio in the heart and brain tissues of either gender. Brain from female WKY rats displayed a reduced GSH : GSSG ratio. The MDA levels were unchanged and elevated, respectively, in SHR heart and SHR brain tissues from both genders. Protein carbonyl formation and caspase-3 activity were elevated in male but not female SHR hearts. Nonetheless, brain protein carbonyl level and caspase-3 activity were unaffected by hypertension or gender. 3. In summary, these results suggest that gender affects hypertension-associated oxidative stress, lipid and protein damage, apoptosis in heart and brain tissues and cardiomyocyte contractile function.
机译:1.高血压导致氧化应激,脂质和蛋白质损伤,细胞凋亡和心脏收缩功能受损。然而,性别对这些高血压相关异常的影响尚未阐明。 2.本研究评估了Wistar Kyoto(WKY)和自发性高血压大鼠(SHR)的氧化应激,脂质/蛋白质损伤,心脏和脑组织的凋亡以及心肌细胞的收缩功能。氧化应激,脂质过氧化,蛋白质损伤和凋亡通过谷胱甘肽(GSH):降低的谷胱甘肽(GSSG)比率,丙二醛(MDA)水平,蛋白质羰基水平和caspase-3活性进行评估。检查了心肌细胞的收缩功能,包括峰缩短(PS),到达PS的时间(TPS),达到90%的时间延长(TR90)和最大缩短/延长速度(+/- dL / dt)。与性别匹配的WKY对应者相比,SHR心肌细胞的PS和+/- dL / dt降低。男性而非女性SHR心肌细胞具有更长的静息细胞长度,正常的TPS和延长的TR90。在雌性和雄性WKY大鼠中,所有机械参数均相当,但雌性中的TR90较高。高血压并未显着影响任何性别的心脏和脑组织中GSH:GSSG的比率。 WKY雌性大鼠的大脑显示GSH:GSSG比例降低。男女SHR心脏和SHR脑组织中的MDA水平均未改变且升高。男性SHR心脏中蛋白羰基的形成和caspase-3活性升高。但是,脑蛋白羰基水平和caspase-3活性不受高血压或性别的影响。 3.总之,这些结果表明性别会影响与高血压相关的氧化应激,脂质和蛋白质损伤,心脏和脑组织的凋亡以及心肌细胞的收缩功能。

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