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知母皂苷AIII通过调节RAGE/MAPK信号通路减轻晚期糖基化终末产物诱导的成骨细胞炎症损伤和四氧嘧啶诱导的糖尿病性骨质疏松斑马鱼炎症损伤。

Timosaponin AIII attenuates inflammatory injury in AGEs-induced osteoblast and alloxan-induced diabetic osteoporosis zebrafish by modulating the RAGE/MAPK signaling pathways.

作者信息

Wang Nani, Xu Pingcui, Wang Xuping, Yao Weixuan, Wang Binjie, Wu Yuanzhao, Shou Dan

机构信息

Department of Medicine, Zhejiang Academy of Traditional Chinese Medicine, Hangzhou, Zhejiang, 310007, China..

Department of Medicine, Zhejiang Academy of Traditional Chinese Medicine, Hangzhou, Zhejiang, 310007, China.

出版信息

Phytomedicine. 2020 May 24;75:153247. doi: 10.1016/j.phymed.2020.153247.

Abstract

BACKGROUND

Advanced glycation end products (AGEs) deposition causes inflammatory injury in osteoblasts and contributes to diabetic osteoporosis. The receptor for advanced glycation end product/mitogen-activated protein kinase pathway (RAGE/MAPK) signaling pathway is closely linked to the pathogenesis of diabetic osteoporosis. Timosaponin AIII, a steroidal saponin isolated from Anemarrhena asphodeloides Bunge (Asparagaceae), shows anti-inflammatory and anti-osteoporosis effects.

PURPOSE

The present study was aimed to investigate the therapeutic effects of timosaponin AIII on diabetic osteoporosis and whether its effect is dependent on protecting osteoblasts against AGEs-induced injury via RAGE/MAPK signaling suppression.

METHODS

An alloxan-induced diabetic osteoporosis zebrafish model was applied to investigate the effects of timosaponin AIII in vivo, and alendronate was used as a positive control. Moreover, related mechanisms were explored in primary rat osteoblasts. Molecular docking was applied to investigate the interactions between timosaponin AIII and RAGE.

RESULTS

Timosaponin AIII treatment reversed alloxan-induced reduction in the mineralized area of the larvae head skeleton, accompanied by a decreased level of triglyceride and total cholesterol in the zebrafish. Additionally, AGEs significantly influenced RAGE expression, alkaline phosphatase activity, interleukin 1β expression, interleukin 6 expression, and tumor necrosis factor-α expression, and increased cell apoptosis. Timosaponin AIII significantly downregulated AGEs-induced interleukin 1β, interleukin 6, and tumor necrosis factor-α levels, and upregulated alkaline phosphatase and osteocalcin levels. Timosaponin AIII also significantly reduced the expression of RAGE and had additive effects on downstream P38, extracellular signal-regulated kinase and c-Jun N-terminal kinase in AGEs-induced osteoblast. Molecular docking predicted that hydrogen and hydrophobic interactions occurred between timosaponin AIII and RAGE.

CONCLUSION

These data clarified that timosaponin AIII attenuates diabetic osteoporosis via a novel mechanism involved suppressing the RAGE/MAPK signaling pathway. Our finding highlights the potential value of timosaponin AIII as an anti-diabetic osteoporosis agent.

摘要

背景

晚期糖基化终末产物(AGEs)沉积导致成骨细胞发生炎性损伤,并促使糖尿病性骨质疏松症的发展。晚期糖基化终末产物受体/丝裂原活化蛋白激酶途径(RAGE/MAPK)信号通路与糖尿病性骨质疏松症的发病机制密切相关。知母皂苷AIII是从知母(百合科)中分离得到的一种甾体皂苷,具有抗炎和抗骨质疏松作用。

目的

本研究旨在探讨知母皂苷AIII对糖尿病性骨质疏松症的治疗作用,以及其作用是否依赖于通过抑制RAGE/MAPK信号通路保护成骨细胞免受AGEs诱导的损伤。

方法

应用四氧嘧啶诱导的糖尿病性骨质疏松斑马鱼模型研究知母皂苷AIII的体内作用,阿仑膦酸钠作为阳性对照。此外,在原代大鼠成骨细胞中探索相关机制。采用分子对接研究知母皂苷AIII与RAGE之间的相互作用。

结果

知母皂苷AIII治疗可逆转四氧嘧啶诱导的幼虫头部骨骼矿化面积减少,同时斑马鱼体内甘油三酯和总胆固醇水平降低。此外,AGEs显著影响RAGE表达、碱性磷酸酶活性、白细胞介素1β表达、白细胞介素6表达和肿瘤坏死因子-α表达,并增加细胞凋亡。知母皂苷AIII显著下调AGEs诱导的白细胞介素1β、白细胞介素6和肿瘤坏死因子-α水平,并上调碱性磷酸酶和骨钙素水平。知母皂苷AIII还显著降低RAGE的表达,并对AGEs诱导的成骨细胞中下游的P38、细胞外信号调节激酶和c-Jun氨基末端激酶具有累加作用。分子对接预测知母皂苷AIII与RAGE之间存在氢键和疏水相互作用。

结论

这些数据表明,知母皂苷AIII通过抑制RAGE/MAPK信号通路这一新机制减轻糖尿病性骨质疏松症。我们的发现突出了知母皂苷AIII作为抗糖尿病性骨质疏松症药物的潜在价值。

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