Department of Biochemistry, Cell Biology and Microbiology, Mari State University, pl. Lenina 1, 424001 Yoshkar-Ola, Russia.
Prokhorov General Physics Institute, Russian Academy of Sciences, Vavilov St. 38, 119991 Moscow, Russia.
Biomolecules. 2024 Mar 7;14(3):316. doi: 10.3390/biom14030316.
Duchenne muscular dystrophy is caused by loss of the dystrophin protein. This pathology is accompanied by mitochondrial dysfunction contributing to muscle fiber instability. It is known that mitochondria-targeted in vivo therapy mitigates pathology and improves the quality of life of model animals. In the present work, we applied mitochondrial transplantation therapy (MTT) to correct the pathology in dystrophin-deficient mice. Intramuscular injections of allogeneic mitochondria obtained from healthy animals into the hind limbs of mice alleviated skeletal muscle injury, reduced calcium deposits in muscles and serum creatine kinase levels, and improved the grip strength of the hind limbs and motor activity of recipient mice. We noted normalization of the mitochondrial ultrastructure and sarcoplasmic reticulum/mitochondria interactions in muscles. At the same time, we revealed a decrease in the efficiency of oxidative phosphorylation in the skeletal muscle mitochondria of recipient mice accompanied by a reduction in lipid peroxidation products (MDA products) and reduced calcium overloading. We found no effect of MTT on the expression of mitochondrial signature genes (, , , , ) and on the level of mtDNA. Our results show that systemic MTT mitigates the development of destructive processes in the quadriceps muscle of mice.
杜氏肌营养不良症是由肌营养不良蛋白的缺失引起的。这种病理伴随着线粒体功能障碍,导致肌肉纤维不稳定。已知线粒体靶向的体内治疗可以减轻病变,提高模型动物的生活质量。在本工作中,我们应用线粒体移植治疗(MTT)来纠正肌营养不良基因缺陷小鼠的病理。将来自健康动物的同种异体线粒体通过肌肉内注射到小鼠的后腿中,减轻了骨骼肌损伤,减少了肌肉中的钙沉积和血清肌酸激酶水平,并改善了后腿的握力和受者小鼠的运动活动。我们注意到,在接受治疗的小鼠的肌肉中,线粒体的超微结构和肌浆网/线粒体相互作用得到了正常化。同时,我们发现接受治疗的小鼠的骨骼肌线粒体氧化磷酸化效率降低,伴随着脂质过氧化产物(MDA 产物)减少和钙超载减少。我们没有发现 MTT 对线粒体特征基因( 、 、 、 、 )的表达和 mtDNA 水平有影响。我们的结果表明,系统的 MTT 减轻了 小鼠股四头肌破坏性过程的发展。