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Lycopene supplementation prevents reactive oxygen species mediated apoptosis in Sertoli cells of adult albino rats exposed to polychlorinated biphenyls

机译:番茄红素的补充可防止活性氧介导的成年白化病大鼠多氯联苯暴露于支持细胞的凋亡

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摘要

Sertoli cell proliferation is attenuated before attaining puberty and the number is fixed in adult testes. Sertoli cells determine both testis size and daily sperm production by providing physical and metabolic support to spermatogenic cells. Polychlorinated biphenyls (PCBs) exposure disrupts functions of Sertoli cells causing infertility with decreased sperm count. On the other hand, lycopene is improving sperm count and motility by reducing oxidative stress in humans and animals. Hence we hypothesized that PCBs-induced infertility might be due to Sertoli cell apoptosis mediated by oxidative stress and lycopene might prevent PCBs-induced apoptosis by acting against oxidative stress. To test this hypothesis, animals were treated with vehicle control, lycopene, PCBs and PCBs + lycopene for 30 days. After the experimental period, the testes and cauda epididymidis were removed for isolation of Sertoli cells and sperm, respectively. We observed increased levels of oxidative stress markers (H2O2 and LPO) levels, increased expression of apoptotic molecules (caspase-8, Bad, Bid, Bax, cytochrome C and caspase-3), decreased anti-apoptotic (Bcl2) molecule and elevated apoptotic marker activity (caspase-3) in Sertoli cells of PCBs-exposed animals. These results were associated with decreased sperm count and motility in PCBs exposed animals. On the other hand, lycopene prevented the elevation of Sertoli cellular apoptotic parameters and prevented the reduction of sperm parameters (count and motility). The data confirmed that lycopene as an antioxidant scavenged reactive oxygen substances, prevented apoptosis, maintained normal function in Sertoli cells and helped to provide physical and metabolic support for sperm production, thereby treating infertility in men.
机译:在达到青春期之前,Sertoli细胞增殖会减弱,并且在成年睾丸中,其数目是固定的。睾丸支持细胞通过为生精细胞提供物理和代谢支持来决定睾丸大小和每日精子产生。多氯联苯(PCBs)暴露会破坏Sertoli细胞的功能,导致不育,精子数量减少。另一方面,番茄红素通过减少人和动物的氧化应激来改善精子数量和运动能力。因此,我们假设多氯联苯引起的不育可能是由于氧化应激介导的支持细胞凋亡,而番茄红素可能通过抵抗氧化应激而阻止多氯联苯引起的凋亡。为了验证这一假设,对动物进行了媒介物对照,番茄红素,PCBs和PCBs +番茄红素处理30天。实验期过后,去除睾丸和附睾毛囊,分别分离出支持细胞和精子。我们观察到氧化应激标志物(H2O2和LPO)水平升高,凋亡分子(caspase-8,Bad,Bid,Bax,细胞色素C和caspase-3)表达增加,抗凋亡(Bcl2)分子减少以及凋亡增加暴露于多氯联苯的动物的支持细胞中的标志物活性(caspase-3)。这些结果与多氯联苯暴露动物的精子数量减少和运动能力降低有关。另一方面,番茄红素阻止了Sertoli细胞凋亡参数的升高,并阻止了精子参数(数量和运动性)的降低。数据证实番茄红素作为抗氧化剂清除了活性氧物质,防止了细胞凋亡,维持了支持细胞的正常功能,并为精子的产生提供了身体和代谢支持,从而治疗了男性不育症。

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