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首页> 外文期刊>Journal of Biological Research >Protective role of hesperidin against ?3-radiation-induced oxidative stress and apoptosis in rat testis
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Protective role of hesperidin against ?3-radiation-induced oxidative stress and apoptosis in rat testis

机译:橙皮苷对大鼠睾丸中β3-辐射诱导的氧化应激和细胞凋亡的保护作用

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class="Heading">Background id="Par1" class="Para">Gamma (?3) ray, an electromagnetic radiation, is occasionally accompanying the emission of an alpha or beta particle. Exposure to such radiation can cause cellular changes such as mutations, chromosome aberration and cellular damage which depend upon the total amount of energy, duration of exposure and the dose. Ionizing radiation can impair spermatogenesis and can cause mutations in germ cells. In general, type B spermatogonia are sensitive to this type of radiation. The current study was carried out to evaluate the protective role of hesperidin (H), as a polyphenolic compound, on rat testis injury induced by ?3-radiation. class="Heading">Methods id="Par2" class="Para">Rats were divided into groups including C group (control rats), R (irradiated) group (rats irradiated with ?3-radiation), Vehicle (V) group (rats administered with dimethylsulfoxide a€?DMSOa€?), H group (rats administered with H only), HR and RH groups (rats treated with H before and after exposure to ?3-radiation, respectively). Malondialdehyde (MDA: the end product of lipid peroxidation a€?LPOa€?) and xanthine oxidase (XO: it generates reactive oxygen species a€?ROSa€?) in testes homogenate as well as nitric oxide (NO: as ROS) in mitochondrial matrix were determined. The apoptotic markers including DNA-fragmentation (DNAF) in testes homogenate and calcium ions (Ca2+) in mitochondrial matrix were determined. Superoxide dismutase (SOD) and catalase (CAT) activities in testes homogenate, while reduced glutathione a€?GSHa€? in nuclear matrix were determined. Also histopathological examination for testes tissues through electron microscope was studied. class="Heading">Results id="Par3" class="Para">Exposure of rats to ?3-radiation (R group) increased the levels of MDA, NO, DNAF, Ca2+ and XO activity, while it decreased GSH level, SOD and CAT activities as compared to the C groups; ?3-radiation increased oxidative stress (OS), LPO, apoptosis and induced testes injuries. These results are in agreement with the histopathological examination. In contrast, treatment with H before or after exposure to ?3-radiation (HR and RH groups, respectively) decreased the levels of MDA, NO, DNAF and Ca2+ but increased GSH level and the activities of SOD, CAT and XO as compared to R group and this indicates that H decreased OS, LPO and apoptosis. Also, the histopathological results showed that H improved testis architecture and this is related to the antioxidant and anti-apoptotic activities of H contents. Protection is more effective when H is given before rather than after exposure. Finally, administration of H to healthy rats for a short period had no adverse affect on testes cells. class="Heading">Conclusion id="Par4" class="Para">Hesperidin showed antioxidant and anti-apoptotic activities. It has a protective role against OS, injury and apoptosis induced by ?3-radiation in testes. Protection is more effective when H is given before rather than after exposure.
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机译:class =“ Heading”>背景 id =“ Par1” class =“ Para”>伽马(?3)射线是一种电磁辐射,偶尔会伴随着α或β粒子的发射。暴露于这种辐射下会引起细胞变化,例如突变,染色体畸变和细胞损伤,这取决于能量的总量,暴露时间和剂量。电离辐射会损害精子发生并可能导致生殖细胞突变。通常,B型精原细胞对这种类型的辐射敏感。当前的研究旨在评估橙皮苷(H)作为多酚类化合物对?3-辐射诱导的大鼠睾丸损伤的保护作用。 class =“ Heading”>方法将大鼠分为C组(对照组),R(受辐照)组(经α3辐射辐照的大鼠),Vehicle(V)组(经皮下注射的大鼠)分组。二甲基亚砜(DMSOa),H组(仅对H给药的大鼠),HR和RH组(分别在暴露于3-辐射的情况下用H处理的大鼠)。丙二醛(MDA:脂质过氧化的最终产物,LPOa)和黄嘌呤氧化酶(XO:产生活性氧,ROSa)在睾丸匀浆中以及一氧化氮(NO:作为ROS)。确定线粒体基质。确定了凋亡标记物,包括睾丸匀浆中的DNA片段化(DNAFragmentation)和线粒体基质中的钙离子(Ca 2 + )。睾丸中的超氧化物歧化酶(SOD)和过氧化氢酶(CAT)活性均一,而谷胱甘肽和谷胱甘肽减少。确定了核基质中的含量。还研究了通过电子显微镜对睾丸组织的组织病理学检查。 class =“ Heading”>结果 id =“ Par3” class =“ Para”>大鼠暴露于α3-辐射(R组)与C组相比,MDA,NO,DNAF,Ca 2 + 和XO活性升高,而GSH,SOD和CAT活性降低。 α3-辐射增加了氧化应激(OS),LPO,细胞凋亡和诱发的睾丸损伤。这些结果与组织病理学检查一致。相反,在暴露于α3辐射之前或之后(分别为HR和RH组)用H处理降低了MDA,NO,DNAF和Ca 2 + 的水平,但增加了GSH水平和活性。与R组相比,SOD,CAT和XO的水平降低,这表明H降低了OS,LPO和细胞凋亡。而且,组织病理学结果表明,H改善了睾丸的结构,这与H含量的抗氧化和抗凋亡活性有关。在暴露前而不是暴露后给予H时,保护作用更为有效。最后,短期内向健康大鼠施用H对睾丸细胞没有不利影响。 class =“ Heading”>结论 id =“ Par4” class =“ Para”>橙皮苷具有抗氧化和抗凋亡活性。它对睾丸中的α3-辐射诱导的OS,损伤和凋亡具有保护作用。在暴露之前而不是暴露之后给予H时,保护会更有效。
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