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水飞蓟宾纳米脂质体通过共同抑制 TGF-β/Smad 和 JAK2/STAT3/SOCS1 通路减轻糖尿病肾病大鼠的肾损伤。

Silymarin nanoliposomes attenuate renal injury on diabetic nephropathy rats via co-suppressing TGF-β/Smad and JAK2/STAT3/SOCS1 pathway.

机构信息

Jiu Jiang NO.1 People's Hospital, Jiujiang, 332000, Jiangxi, China.

Guangdong Xinxing Chinese Medicine School, Yunfu, 527300, Guangdong, China.

出版信息

Life Sci. 2021 Apr 15;271:119197. doi: 10.1016/j.lfs.2021.119197. Epub 2021 Feb 9.

Abstract

AIMS

To investigate the improvement and mechanisms of silymarin on renal injury in mouse podocytes and streptozotocin (STZ)-induced diabetic nephropathy model (DN) rats.

MAIN METHODS

Firstly, the effects of silymarin on the cell viability and cellular injury-related indicators of high-glucose incubated mouse podocytes MPC-5 were assessed by CCK-8 and western blotting (WB) methods, respectively. The STZ-induced diabetic rats with DN were treated with silymarin nanoliposomes at three doses for consecutive 8-week. General metabolic indicators, renal functions and lipid accumulation-related factors were all measured. The renal tissue sections were stained and observed via hematoxylin-eosin (H&E) staining method. Real-time RT-PCR and WB methods were utilized to measure the expression of JAK2/STAT3/SOCS1 and TGF-β/Smad signaling pathway related factors.

KEY FINDINGS

Silymarin significantly improve the high-glucose induced up-regulation of podoxin and nephrin, as well as the expression of inflammatory cytokines IL-6, ICAM-1 and TNF-α, and the cell survival rates were also significantly increased in a dose-dependent manner. Significant improvement on body weight/kidney ratio, renal functions and lipid profiles in renal tissues were observed in STZ-induced diabetic rats after chronic silymarin treatment. The H&E staining exhibited that the pathological damages in renal tissues were obviously improved. Moreover, silymarin nanoliposomes treatment notably suppressed expression levels of inflammation-related proteins as well as IL-6 and ICAM-1, and regulated JAK2/STAT3/SOCS1 and TGF-β/Smad signaling pathway, thereby exhibited protective effects on kidney of DN model rats.

SIGNIFICANCE

Silymarin nanoliposomes ameliorate STZ-induced kidney injury by improving oxidative stress, renal fibrosis, and co-inhibiting JAK2/STAT3/SOCS1 and TGF-β/Smad signaling pathways in diabetic rats.

摘要

目的

研究水飞蓟素对高糖培养的小鼠足细胞(MPC-5)和链脲佐菌素(STZ)诱导的糖尿病肾病(DN)大鼠肾损伤的改善作用及其机制。

方法

首先,通过 CCK-8 和 Western blot(WB)方法分别评估水飞蓟素对高糖孵育的小鼠足细胞 MPC-5 细胞活力和细胞损伤相关指标的影响。用水飞蓟素纳米脂质体对 STZ 诱导的糖尿病大鼠进行为期 8 周的连续治疗。测量一般代谢指标、肾功能和脂质积累相关因素。通过苏木精-伊红(H&E)染色法对肾组织切片进行染色和观察。利用实时 RT-PCR 和 WB 方法测量 JAK2/STAT3/SOCS1 和 TGF-β/Smad 信号通路相关因子的表达。

主要发现

水飞蓟素可显著改善高糖诱导的 podoxin 和 nephrin 上调,以及炎症细胞因子 IL-6、ICAM-1 和 TNF-α的表达,且细胞存活率也呈剂量依赖性显著增加。慢性水飞蓟素治疗后,STZ 诱导的糖尿病大鼠体重/肾脏比值、肾功能和肾脏组织脂质谱均显著改善。H&E 染色显示肾脏组织的病理损伤明显改善。此外,水飞蓟素纳米脂质体治疗显著抑制了炎症相关蛋白以及 IL-6 和 ICAM-1 的表达水平,并调节了 JAK2/STAT3/SOCS1 和 TGF-β/Smad 信号通路,从而对糖尿病大鼠的肾脏起到了保护作用。

意义

水飞蓟素纳米脂质体通过改善氧化应激、肾纤维化以及共同抑制 JAK2/STAT3/SOCS1 和 TGF-β/Smad 信号通路,改善 STZ 诱导的糖尿病大鼠肾脏损伤。

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