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铝导致的骨骼损伤与由氧化应激介导的 JNK 凋亡途径的激活有关。

Bone impairment caused by AlCl is associated with activation of the JNK apoptotic pathway mediated by oxidative stress.

机构信息

Key Laboratory of the Provincial Education Department of Heilongjiang for Common Animal Disease Prevention and Treatment, Northeast Agricultural University, Harbin 150030, China.

Yulin Animal Disease Control Center, Yulin 719000, China.

出版信息

Food Chem Toxicol. 2018 Jun;116(Pt B):307-314. doi: 10.1016/j.fct.2018.04.057. Epub 2018 Apr 25.

Abstract

Exposure to aluminum (Al) inhibits bone formation, the principal mechanism possibly due to oxidative stress. However, little data is available that establishes the precise relationship. In this study, Wistar rats were exposed to 0 (GC), 0.4 (GL), 0.8 (GM) or 1.6 (GH) mg/L aluminum trichloride (AlCl) in drinking water for 90 days, respectively. The concentrations of Al in serum and bone, serum markers of bone metabolism, bone mineral density (BMD) and body weight were measured. Histological changes within femurs were observed by H&E, ALP, and TRACP staining. Oxidative stress markers and JNK apoptotic pathway were detected in bone. The results indicate that AlCl exposure decreased BMD, numbers of ALP-positive osteoblasts and serum levels of bone formation markers (B-ALP, PICP and BGP), and caused damaged to the trabecular structure. Serum levels of bone resorption markers (TRACP-5b, CTX-I) and numbers of TRACP-positive osteoclasts increased in GL, but conversely, they decreased in GM and GH. In addition, AlCl caused oxidative stress, up-regulated expression of c-Jun and pro-apoptotic factors with increased p-JNK/JNK ratio and down-regulated expression of anti-apoptotic factor Bcl-2 in bone. Taken together, these results indicate that bone impairment caused by AlCl is associated with activation of the oxidative stress-mediated JNK apoptotic pathway.

摘要

暴露于铝(Al)会抑制骨形成,其主要机制可能是由于氧化应激。然而,目前还没有足够的数据确定其确切的关系。在这项研究中,Wistar 大鼠分别暴露于 0(GC)、0.4(GL)、0.8(GM)或 1.6(GH)mg/L 三氯化铝(AlCl)饮用水中 90 天。测量血清和骨中的 Al 浓度、骨代谢的血清标志物、骨矿物质密度(BMD)和体重。通过 H&E、ALP 和 TRACP 染色观察股骨内的组织学变化。检测骨中的氧化应激标志物和 JNK 凋亡途径。结果表明,AlCl 暴露降低了 BMD、ALP 阳性成骨细胞数量和血清骨形成标志物(B-ALP、PICP 和 BGP)水平,并导致小梁结构受损。GL 中血清骨吸收标志物(TRACP-5b、CTX-I)和 TRACP 阳性破骨细胞数量增加,但 GM 和 GH 中相反,它们减少。此外,AlCl 引起氧化应激,增加了 c-Jun 和促凋亡因子的表达,增加了 p-JNK/JNK 比值,并下调了骨中抗凋亡因子 Bcl-2 的表达。总之,这些结果表明,AlCl 引起的骨损伤与氧化应激介导的 JNK 凋亡途径的激活有关。

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