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首页> 外文期刊>Journal of neurosurgical sciences >Heme oxygenase-1 arrests Leydig cells functions and impairs their regulation by histamine
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Heme oxygenase-1 arrests Leydig cells functions and impairs their regulation by histamine

机译:血红素氧合酶-1捕获Leydig细胞的功能,并损害其由组胺的调节

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摘要

Testicular Leydig cells (LC) are modulated by several pathways, one of them being the histaminergic system. Heme oxygenase-1 (HO-1), whose upregulation comprises the primary response to oxidative noxae, has a central homeostatic role and might dysregulate LC functions when induced. In this report, we aimed to determine how hemin, an HO-1 inducer, affects LC proliferative capacity and whether HO-1 effects on LC functions are reversible. It was also evaluated if HO-1 interacts in any way with histamine, affecting its regulatory action over LC. MA-10 and R2C cell lines and immature rat LC were used as models. Firstly, we show that after a 24-h incubation with 25 mu mol/L hemin, LC proliferation is reversibly impaired by cell cycle arrest in G2/M phase, with no evidence of apoptosis induction. Even though steroid production is abrogated after a 48-h exposure to 25 mu mol/L hemin, steroidogenesis can be restored to control levels in a time-dependent manner if the inducer is removed from the medium. Regarding HO-1 and histamine interaction, it is shown that hemin abrogates histamine biphasic effect on steroidogenesis and proliferation. Working with histamine receptors agonists, we elucidated that HO-1 induction affects the regulation mediated by receptor types 1, 2 and 4. In summary, HO-1 induction arrests LC functions, inhibiting steroid production and cell cycle progression. Despite their reversibility, HO-1 actions might negatively influence critical phases of LC development and differentiation affecting their function as well as other androgen-dependent organs. What's more, we have described a hitherto unknown interaction between HO-1 induction and histamine effects.
机译:睾丸LEYDIG细胞(LC)由几种途径调节,其中一个是组蛋白能系统。血红素氧基酶-1(HO-1),其上调包括对氧化Noxae的初步反应,具有中枢性稳态作用,并且在诱导时可能会失衡LC功能。在本报告中,我们旨在确定HEMIN,HO-1诱导剂,影响LC增殖能力以及HO-1对LC功能的影响是可逆的。如果HO-1以任何方式与组胺相互作用,也会评估它,影响其对LC的调节作用。 MA-10和R2C细胞系和未成熟的大鼠LC用作模型。首先,我们表明,在用25μmmol/ l血红素孵育24小时后,通过G2 / M期的细胞循环骤停度可逆地损害LC增殖,没有细胞凋亡诱导的证据。尽管在48小时暴露于25μmmol/ l血红素后废除类固醇产生,但是如果从介质中除去诱导剂,则可以以时间依赖的方式恢复甾体制性以控制水平。关于HO-1和组胺相互作用,显示血红素废除组胺双色作用对甾体制和增殖的影响。与组胺受体激动剂一起使用,我们阐明了HO-1诱导影响受体类型1,2和4介导的调节。总之,HO-1感应抑制类固醇产生和细胞周期进展。尽管他们可逆性,但HO-1动作可能会对影响其功能以及其他雄激素依赖器官的LC发育和分化的关键阶段产生负面阶段。更重要的是,我们在HO-1诱导和组胺效应之间描述了迄今为止未知的相互作用。

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