Achyranthoside D (AD) improve intervertebral disc degeneration through affect the autophagy and the activation of PI3K/Akt/mTOR pathway.

Chao Zhang, Zhaoyong Li, Linghui Li, Shuofu Li, Lei Yang, Long Chen, Xiao Zhang, Shaofeng Yang, Yantao Guo
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引用次数: 3

Abstract

Purpose: This study aims to explore the potential mechanism of Achyranthoside D (AD) in improving intervertebral disc (IVD) degeneration (IDD).

Methods: The IDD model of SD rats and nucleus pulposus cells (NPCs) was established by lumbar cone annulus puncture and tert-butyl peroxide, respectively. Cell proliferation was detected by CCK8 assay. Apoptosis was detected by flow cytometry and TUNEL staining. IVD tissue injury was observed by HE staining. Alcian blue staining observed the glycoprotein secretion in IVD. Monodansylcadaverin (MDC) staining was used to detect the formation of autophagosomes. The LC3 expression was tested by immunofluorescence. The type II collagen, aggrecan and MMP3 expression were detected by ELISA. RT-qPCR was used to detect the Casp 3, Bax, Bcl2, Acan, Col2a1 and Mmp3 expression. The LC3, P62, type II collagen, aggrecan, Beclin1, Akt, MMP3, p-mTOR, PI3K, mTOR, p-PI3K and p-Akt expression were analyzed by western blot.

Results: The IVD tissue damage and apoptosis occurred in the Model group, and the glycoprotein secretion decreased. Compared with Model group, AD-H group alleviated the injury of IVD tissue, inhibited the apoptosis of cells, and increased the secretion of glycoprotein. 40 μg/mL AD restored the proliferation activity of NPCs. Compared to the Normal group, the NPCs apoptosis increased, the Collagen II, aggrecan and Bcl2 expressions were significantly decreased, the MMP3, Bax and Casp 3 expression were significantly increased, and the LC-3 II/I expression in IVD tissues were increased significantly in Model group, all of which was reversed in AD group. AD promoted the p-Akt, p-PI3K, p-mTOR, LC-3 II/I and Beclin1 expression, inhibited the P62 expression to alleviate the damage of nucleus pulporeus cells and the degeneration of IVD.

Conclusion: AD improved IDD by affecting the PI3K/Akt/mTOR pathway and autophagy.

牛膝草苷D (Achyranthoside D, AD)通过影响自噬和激活PI3K/Akt/mTOR通路改善椎间盘退变。
目的:探讨牛膝花苷D (Achyranthoside D, AD)改善椎间盘退变(intervertebral disc, IVD)的可能机制。方法:采用椎体环穿刺法和过氧化叔丁基分别建立SD大鼠IDD模型和髓核细胞模型。CCK8法检测细胞增殖。流式细胞术及TUNEL染色检测细胞凋亡。HE染色观察IVD组织损伤。阿利新蓝染色观察IVD中糖蛋白分泌情况。MDC染色检测自噬体的形成。免疫荧光法检测LC3的表达。ELISA法检测ⅱ型胶原蛋白、聚集蛋白和MMP3的表达。RT-qPCR检测Casp 3、Bax、Bcl2、Acan、Col2a1、Mmp3的表达。western blot检测LC3、P62、II型胶原、aggrecan、Beclin1、Akt、MMP3、p-mTOR、PI3K、mTOR、p-PI3K、p-Akt的表达。结果:模型组小鼠IVD组织出现损伤和凋亡,糖蛋白分泌减少。与模型组比较,AD-H组可减轻IVD组织损伤,抑制细胞凋亡,增加糖蛋白分泌。40 μg/mL AD可恢复NPCs的增殖活性。与正常组比较,模型组IVD组织中NPCs凋亡增加,Collagen II、aggrecan、Bcl2表达显著降低,MMP3、Bax、Casp 3表达显著升高,LC-3 II/I表达显著升高,AD组则相反。AD促进p-Akt、p-PI3K、p-mTOR、LC-3 II/I和Beclin1表达,抑制P62表达,减轻髓核细胞损伤和IVD变性。结论:AD通过影响PI3K/Akt/mTOR通路及自噬改善IDD。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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