Department of Structural and Functional Biology, Institute of Biology, University of Campinas, Campinas, Brazil.
Obesity and Comorbidities Research Center (OCRC), Campinas, Brazil.
Cell Stress Chaperones. 2023 Nov;28(6):773-785. doi: 10.1007/s12192-023-01369-2. Epub 2023 Aug 14.
Intracellular calcium dysregulation, oxidative stress, and mitochondrial dysfunction are some of the main pathway contributors towards disease progression in Duchenne muscular dystrophy (DMD). This study is aimed at investigating the effects of light emitting diode therapy (LEDT) and idebenone antioxidant treatment, applied alone or together in dystrophic primary muscle cells from mdx mice, the experimental model of DMD. Mdx primary muscle cells were submitted to LEDT and idebenone treatment and evaluated for cytotoxic effects and calcium and mitochondrial signaling pathways. LEDT and idebenone treatment showed no cytotoxic effects on the dystrophic muscle cells. Regarding the calcium pathways, after LEDT and idebenone treatment, a significant reduction in intracellular calcium content, calpain-1, calsequestrin, and sarcolipin levels, was observed. In addition, a significant reduction in oxidative stress level markers, such as HO, and 4-HNE levels, was observed. Regarding mitochondrial signaling pathways, a significant increase in oxidative capacity (by OCR and OXPHOS levels) was observed. In addition, the PGC-1α, SIRT-1, and PPARδ levels were significantly higher in the LEDT plus idebenone treated-dystrophic muscle cells. Together, the findings suggest that LEDT and idebenone treatment, alone or in conjunction, can modulate the calcium and mitochondrial signaling pathways, such as SLN, SERCA 1, and PGC-1α, contributing towards the improvement of the dystrophic phenotype in mdx muscle cells. In addition, data from the LEDT plus idebenone treatment showed slightly better results than those of each separate treatment in terms of SLN, OXPHOS, and SIRT-1.
细胞内钙调节紊乱、氧化应激和线粒体功能障碍是杜氏肌营养不良症(DMD)疾病进展的主要途径之一。本研究旨在研究发光二极管疗法(LEDT)和抗氧化剂艾地苯醌单独或联合应用于 mdx 小鼠(DMD 的实验模型)的肌肉原代细胞对疾病的影响。将 mdx 原代肌肉细胞进行 LEDT 和艾地苯醌处理,并评估其细胞毒性以及钙和线粒体信号通路。LEDT 和艾地苯醌处理对肌肉原代细胞无细胞毒性作用。关于钙通路,在 LEDT 和艾地苯醌处理后,观察到细胞内钙含量、钙蛋白酶-1、钙结合蛋白和肌浆球蛋白水平显著降低。此外,观察到氧化应激水平标志物如 HO 和 4-HNE 水平显著降低。关于线粒体信号通路,观察到氧化能力(通过 OCR 和 OXPHOS 水平)显著增加。此外,PGC-1α、SIRT-1 和 PPARδ 水平在 LEDT 加艾地苯醌处理的肌肉原代细胞中显著升高。总之,这些发现表明,LEDT 和艾地苯醌治疗,单独或联合应用,可调节钙和线粒体信号通路,如 SLN、SERCA 1 和 PGC-1α,有助于改善 mdx 肌肉细胞的营养不良表型。此外,LEDT 加艾地苯醌治疗的数据在 SLN、OXPHOS 和 SIRT-1 方面略优于每种单独治疗的数据。