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首页> 外文期刊>Journal of biomedical science. >Endoplasmic reticulum stress mediating downregulated StAR and 3-beta-HSD and low plasma testosterone caused by hypoxia is attenuated by CPU86017-RS and nifedipine
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Endoplasmic reticulum stress mediating downregulated StAR and 3-beta-HSD and low plasma testosterone caused by hypoxia is attenuated by CPU86017-RS and nifedipine

机译:通过CPU86017-RS和NifeDipine衰减了下调星和3β-HSD和缺氧引起的低血浆睾酮的内质网胁迫和低血浆睾酮

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BackgroundHypoxia exposure initiates low serum testosterone levels that could be attributed to downregulated androgen biosynthesizing genes such as StAR (steroidogenic acute regulatory protein) and 3-beta-HSD (3-beta-hydroxysteroid dehydrogenase) in the testis. It was hypothesized that these abnormalities in the testis by hypoxia are associated with oxidative stress and an increase in chaperones of endoplasmic reticulum stress (ER stress) and ER stress could be modulated by a reduction in calcium influx. Therefore, we verify that if an application of CPU86017-RS (simplified as RS, a derivative to berberine) could alleviate the ER stress and depressed gene expressions of StAR and 3-beta-HSD, and low plasma testosterone in hypoxic rats, these were compared with those of nifedipine.MethodsAdult male Sprague-Dawley rats were randomly divided into control, hypoxia for 28 days, and hypoxia treated (mg/kg, p.o.) during the last 14 days with nifedipine (Nif, 10) and three doses of RS (20, 40, 80), and normal rats treated with RS isomer (80). Serum testosterone (T) and luteinizing hormone (LH) were measured. The testicular expressions of biomarkers including StAR, 3-beta-HSD, immunoglobulin heavy chain binding protein (Bip), double-strand RNA-activated protein kinase-like ER kinase (PERK) and pro-apoptotic transcription factor C/EBP homologous protein (CHOP) were measured.ResultsIn hypoxic rats, serum testosterone levels decreased and mRNA and protein expressions of the testosterone biosynthesis related genes, StAR and 3-beta-HSD were downregulated. These changes were linked to an increase in oxidants and upregulated ER stress chaperones: Bip, PERK, CHOP and distorted histological structure of the seminiferous tubules in the testis. These abnormalities were attenuated significantly by CPU86017-RS and nifedipine.ConclusionDownregulated StAR and 3-beta-HSD significantly contribute to low testosterone in hypoxic rats and is associated with ER stress which mediates testis damage caused by oxygen deprivation. CPU86017-RS is potential in ameliorating hypoxia-induced testicular injuries, possibly by its calcium antagonist effects on the testis.
机译:背景氧氧ia暴露引发低血清睾酮水平,其可归因于睾丸中的下调雄激素生物合成基因,例如星(类固醇急性调节蛋白)和3-β-HSD(3-Beta-羟类脱氢酶)。假设缺氧中睾丸中的这些异常与氧化应激相关,并且通过降低钙流入的降低可以调节内质网应激(ER应力)和ER应激的伴侣的增加。因此,如果将CPU86017-RS(简化为Rs,衍生物的衍生物)验证,则可以缓解星形和3-β-HSD的ER应激和抑郁基因表达,以及缺氧大鼠的低血浆睾酮。与Nifedipine的那些相比。方法草后雄性Sprague-Dawley大鼠随机分为对照,缺氧28天,并在最后14天内使用硝苯地平(NIF,10)和三剂量的缺氧治疗(mg / kg,po)和三剂(20,40,80)和用RS异构体处理的正常大鼠(80)。测量血清睾酮(T)和酸化激素(LH)。生物标志物的睾丸表达,包括星,3β-HSD,免疫球蛋白重链结合蛋白(BIP),双链RNA活化蛋白激酶样ER激酶(PERK)和促凋亡转录因子C / EBP同源蛋白质(测量斩波。培养素缺氧大鼠,下调血清睾酮水平降低,睾酮生物合成相关基因的mRNA和蛋白质表达,明星和3-β-HSD。这些变化与氧化剂的增加和上调的ER应激伴侣:睾丸中的半法小管的BIP,PERK,CHPON和扭曲的组织学结构。通过CPU86017-RS和NifeDipine显着衰减这些异常。CPU86017-RS和NifeDipine.ConclusionDownrogulate Star和3β-HSD显着促成低氧大鼠的低睾酮,并且与ER应激相关,ER应激介导由缺氧引起的睾丸损伤。 CPU86017-RS是改善缺氧诱导的睾丸损伤的潜力,可能是其对睾丸的钙拮抗作用。

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