Chondroitin sulfate from sturgeon bone protects rat chondrocytes from hydrogen peroxide-induced damage by maintaining cellular homeostasis through enhanced autophagy

鲟鱼骨中的硫酸软骨素通过增强自噬维持细胞稳态,保护大鼠软骨细胞免受过氧化氢引起的损伤

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作者:Xi Zhang, Qingsong Li, Yingjiao Sun, Lei Chen, Jianfeng Wang, Lishuang Liang

Abstract

We previously reported that treatment with chondroitin sulfate from sturgeon bone (CSSB) promoted anti-apoptotic activity in hydrogen peroxide (H2O2)-treated chondrocytes and had a protective effect on mitochondria. It is known that cells can repair damaged mitochondria through autophagy, thus inhibiting the development of apoptosis. Therefore, it is reasonable to speculate that CSSB treatment may inhibit chondrocyte apoptosis via regulation of autophagy. We observed the mitochondrial morphology of chondrocytes treated with different doses of CSSB, and confirmed that CSSB did not affect cell activity or cause damage to mitochondria. When compared with H2O2 treatment alone, CSSB treatment increased the clearance and repair of damaged mitochondria and promoted fusion of damaged mitochondria and lysosomes. CSSB treatment also increased the number of autolysosomes. However, these events could be blocked in chondrocytes pretreated with the autophagy inhibitor chloroquine, resulting in a decreased level of autophagy and increased apoptosis. These results suggest that CSSB treatment helps maintain intracellular homeostasis and prevent injury in chondrocytes treated with H2O2 by increasing autophagy.

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