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Dietary fat-associated osteoarthritic chondrocytes gain resistance to lipotoxicity through PKCK2/STAMP2/FSP27

机译:饮食脂肪相关的骨关节炎软骨细胞通过PKCK2 / STAMP2 / FSP27获得对脂毒性的抗性

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Free fatty acids (FFAs), which are elevated with metabolic syndrome, are considered the principal offender exerting lipotoxicity. Few previous studies have reported a causal relationship between FFAs and osteoarthritis pathogenesis. However, the molecular mechanism by which FFAs exert lipotoxicity and induce osteoarthritis remains largely unknown. We here observed that oleate at the usual clinical range does not exert lipotoxicity while oleate at high pathological ranges exerted lipotoxicity through apoptosis in articular chondrocytes. By investigating the differential effect of oleate at toxic and nontoxic concentrations, we revealed that lipid droplet (LD) accumulation confers articular chondrocytes, the resistance to lipotoxicity. Using high fat diet-induced osteoarthritis models and articular chondrocytes treated with oleate alone or oleate plus palmitate, we demonstrated that articular chondrocytes gain resistance to lipotoxicity through protein kinase casein kinase 2 (PKCK2)—six-transmembrane protein of prostate 2 (STAMP2)—and fat-specific protein 27 (FSP27)-mediated LD accumulation. We further observed that the exertion of FFAs-induced lipotoxicity was correlated with the increased concentration of cellular FFAs freed from LDs, whether FFAs are saturated or not. In conclusion, PKCK2/STAMP2/FSP27-mediated sequestration of FFAs in LD rescues osteoarthritic chondrocytes. PKCK2/STAMP2/FSP27 should be considered for interventions against metabolic OA.
机译:患有代谢综合症的游离脂肪酸(FFA)被认为是主要的脂肪毒性反应者。很少有先前的研究报道FFA与骨关节炎发病机制之间存在因果关系。但是,FFA发挥脂毒性并诱发骨关节炎的分子机制仍然未知。我们在这里观察到,在通常的临床范围内,油酸盐不产生脂毒性,而在高病理范围内的油酸盐则通过关节软骨细胞的凋亡而产生脂毒性。通过研究在有毒和无毒浓度下油酸盐的差异作用,我们发现脂质滴(LD)积累赋予关节软骨细胞抗脂毒性的能力。使用高脂饮食诱导的骨关节炎模型和单独用油酸酯或油酸酯加棕榈酸酯处理的关节软骨细胞,我们证明了关节软骨细胞通过蛋白激酶酪蛋白激酶2(PKCK2)—前列腺2的六跨膜蛋白(STAMP2)对脂毒性具有抗性。和脂肪特异性蛋白27(FSP27)介导的LD积累。我们进一步观察到,无论FFA是否饱和,FFA诱导的脂毒性的发挥与无LD的细胞FFA浓度增加有关。总之,LDCK中PKCK2 / STAMP2 / FSP27介导的FFA螯合可以挽救骨关节炎软骨细胞。对于代谢性OA,应考虑使用PKCK2 / STAMP2 / FSP27。

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