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纳米二氧化钛对雄性小鼠血睾屏障及 MAPK 信号通路的影响。

Effect of Nano-Titanium Dioxide on Blood-Testis Barrier and MAPK Signaling Pathway in Male Mice.

机构信息

Department of Public Health, School of Medicine, Shihezi University, Shihezi, Xinjiang, 832002, China.

出版信息

Biol Trace Elem Res. 2021 Aug;199(8):2961-2971. doi: 10.1007/s12011-020-02404-4. Epub 2020 Sep 29.

Abstract

Some studies have found that nano-sized titanium dioxide (nano-TiO) has adverse effects on the male reproductive system. Blood-testis barrier (BTB), as one of the tightest blood-tissue restriction, is crucial to the male reproductive system. However, the potential effects on BTB and signaling pathway changes in testis tissue induced by nano-TiO remain poorly understood. Therefore, in this study, 60 Institute of Cancer Research mice were divided randomly into four groups (per group = 15). The mice of four groups were intragastrically administered with 0, 10, 50, and 100 mg/kg BW nano-TiO respectively for 30 days to analyze the changes of BTB structure, BTB-related proteins, and MAPK signal pathways. Besides, testosterone level, estradiol level, and sperm parameter (sperm count, sperm motility, and sperm malformation rate) changes were also studied in this research. The results indicated that nano-TiO could induce the BTB structural damage and accompanied by the BTB main protein (ZO-1, Claudin-11, and F-actin) elevation of irritability. Nano-TiO could also activate the MAPK signaling pathways (p38, JNK, and ERK) of mice testis tissue. The testosterone and estradiol levels in serum reduced. Besides when the mice were administered with nano-TiO, we also found the sperm motility rate decreased, and sperm malformation increased. The above changes may be associated with BTB damage and the activation of MAPK signaling pathways, thereby causing male reproductive dysfunction.

摘要

一些研究发现,纳米二氧化钛(nano-TiO)对男性生殖系统有不良影响。血睾屏障(BTB)作为最紧密的血组织限制之一,对男性生殖系统至关重要。然而,纳米 TiO 对 BTB 的潜在影响以及睾丸组织中信号通路的变化仍知之甚少。因此,在这项研究中,将 60 只癌症研究所小鼠随机分为四组(每组 15 只)。四组小鼠分别灌胃给予 0、10、50 和 100mg/kg BW 纳米 TiO,连续 30 天,分析 BTB 结构、BTB 相关蛋白和 MAPK 信号通路的变化。此外,本研究还研究了睾酮水平、雌二醇水平和精子参数(精子计数、精子活力和精子畸形率)的变化。结果表明,纳米 TiO 可诱导 BTB 结构损伤,并伴有 BTB 主要蛋白(ZO-1、Claudin-11 和 F-actin)的易感性升高。纳米 TiO 还可以激活小鼠睾丸组织的 MAPK 信号通路(p38、JNK 和 ERK)。血清中的睾酮和雌二醇水平降低。此外,当给小鼠服用纳米 TiO 时,我们还发现精子活力降低,精子畸形增加。上述变化可能与 BTB 损伤和 MAPK 信号通路的激活有关,从而导致男性生殖功能障碍。

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