奥利司他通过 NF-kB/PI3K 信号通路抑制 NFATc1,从而抑制破骨细胞生成和骨吸收

Q1 Medicine Engineered regeneration Pub Date : 2024-02-01 DOI:10.1016/j.engreg.2024.01.005
Zhikun Li , Kai Chen , Qifeng Yu , Yifan Li , Shichao Tong , Ruijun Xu , Ruixi Hu , Yi Zhang , Wei Xu
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摘要

炎症可引发骨溶解,即骨骼被发育完全的破骨细胞分解。化合物 Oleandrin 被认为具有抗炎和抗肿瘤的作用。我们的目的是研究 Oleandrin 在体外和体内对破骨细胞生成和骨溶解的影响。在体外,我们使用 CCK-8 试验、TRAP 染色和骨吸收试验评估了 Oleandrin 对破骨细胞生成的影响。此外,还利用小鼠小腿注射 LPS 引起的骨溶解模型进行体内研究,检查骨组织形态学、组织学和免疫组化。根据所得结果,体外浓度为 5 nM 和 10 nM 的齐墩果素无细胞毒性。在体外,Oleandrin 阻碍了 RANKL 诱导的破骨细胞生成和骨吸收。在体内研究中,齐墩果素成功抑制了溶骨组织中 NF-κB p65 和 PI3K p85 的磷酸化,从而抑制了 LPS 诱导的小鼠小腿炎性溶骨。而且,Oleandrin 处理组的 NFATc1 表达水平显著下降,而 NFATc1 是破骨细胞生成的关键控制因子。综上所述,我们的发现表明,齐墩果素可阻碍破骨细胞生成和骨吸收,从而具有抑制炎症诱导的骨溶解的能力。其基本机制涉及 NF-κB/PI3K 通路和抑制 NFATc1 的活化。因此,研究结果表明,齐墩果素具有治疗溶骨性疾病的潜力。
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Suppression of NFATc1 through NF-kB/PI3K signaling pathway by Oleandrin to inhibit osteoclastogenesis and bone resorption

Inflammation can initiate osteolysis, which is the breakdown of bone by fully developed osteoclasts. The compound Oleandrin is recognized for its effects against inflammation and tumors. Our objective was to examine the effects of Oleandrin on osteoclastogenesis and osteolysis, both in vitro and in vivo. In vitro, the impact of Oleandrin on osteoclastogenesis was assessed using CCK-8 assays, TRAP staining, and bone resorption assays. Additionally, a mouse model of osteolysis caused by LPS injection into the calvaria was used to conduct an in vivo investigation, examining bone histomorphology, histology, and immunohistochemistry. In vitro, concentrations of 5 nM and 10 nM of Oleandrin were found to be non-cytotoxic based on the results obtained. In vitro, Oleandrin hindered the osteoclastogenesis and bone resorption induced by RANKL. Oleandrin successfully inhibited the phosphorylation of NF-κB p65 and PI3K p85 in osteolytic tissue, thereby suppressing LPS-induced inflammatory osteolysis in mice calvaria during the in vivo study. Furthermore, the Oleandrin-treated group exhibited a noteworthy decrease in the expression level of NFATc1, which is a crucial controller of osteoclastogenesis. To sum up, our discoveries indicate that Oleandrin could hinder osteoclastogenesis and bone resorption, thereby having the ability to suppress inflammation-induced osteolysis. The underlying mechanism involves the NF-κB/PI3K pathway and inhibition of NFATc1 activation. Therefore, the findings suggest that Oleandrin holds potential as a therapeutic remedy for osteolytic ailments.

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来源期刊
Engineered regeneration
Engineered regeneration Biomaterials, Medicine and Dentistry (General), Biotechnology, Biomedical Engineering
CiteScore
22.90
自引率
0.00%
发文量
0
审稿时长
33 days
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