首页> 美国卫生研究院文献>Acta Neuropathologica Communications >Satellite cells maintain regenerative capacity but fail to repair disease-associated muscle damage in mice with Pompe disease
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Satellite cells maintain regenerative capacity but fail to repair disease-associated muscle damage in mice with Pompe disease

机译:卫星细胞可维持再生能力但不能修复庞贝病小鼠的疾病相关的肌肉损伤

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摘要

Pompe disease is a metabolic myopathy that is caused by glycogen accumulation as a result of deficiency of the lysosomal enzyme acid alpha glucosidase (GAA). Previously, we showed that adult muscle stem cells termed satellite cells are present at normal levels in muscle from patients with Pompe disease, but that these are insufficiently activated to repair the severe muscle pathology. Here we characterized the muscle regenerative response during disease progression in a mouse model of Pompe disease and investigated the intrinsic capacity of Gaa−/− satellite cells to regenerate muscle damage. Gaa−/− mice showed progressive muscle pathology from 15 weeks of age as reflected by increased lysosomal size, decreased fiber diameter and reduced muscle wet weight. Only during the first 15 weeks of life but not thereafter, we detected a gradual increase in centrally nucleated fibers and proliferating satellite cells in Gaa−/− muscle, indicating a mild regenerative response. The levels of Pax7-positive satellite cells were increased in Gaa−/− mice at all ages, most likely as result of enhanced satellite cell activation in young Gaa−/− animals. Surprisingly, both young and old Gaa−/− mice regenerated experimentally-induced muscle injury efficiently as judged by rapid satellite cell activation and complete restoration of muscle histology. In response to serial injury, Gaa−/− mice also regenerated muscle efficiently and maintained the satellite cell pool. These findings suggest that, similar to human patients, Gaa−/− mice have insufficient satellite cell activation and muscle regeneration during disease progression. The initial endogenous satellite cell response in Gaa−/− mice may contribute to the delayed onset of muscle wasting compared to human patients. The rapid and efficient regeneration after experimental muscle injury suggest that Gaa−/− satellite cells are functional stem cells, opening avenues for developing muscle regenerative therapies for Pompe disease.Electronic supplementary materialThe online version of this article (10.1186/s40478-018-0620-3) contains supplementary material, which is available to authorized users.
机译:庞贝病是一种代谢性肌病,由溶酶体酶酸性α葡萄糖苷酶(GAA)缺乏引起的糖原积累引起。以前,我们发现成年肌肉干细胞(称为卫星细胞)以正常水平存在于庞贝病患者的肌肉中,但这些细胞活化不足,无法修复严重的肌肉病变。在这里,我们表征了庞贝病小鼠模型在疾病进展过程中的肌肉再生反应,并研究了Gaa -// 卫星细胞再生肌肉损伤的内在能力。 Gaa -/-小鼠从15周龄开始表现出渐进性肌肉病理,表现为溶酶体大小增加,纤维直径减少和肌肉湿重减少。仅在生命的前15周内,但此后没有,我们检测到Gaa -/-肌肉中中央有核纤维和增殖卫星细胞的逐渐增加,表明有轻度的再生反应。在所有年龄段的Gaa -/-小鼠中,Pax7阳性卫星细胞的水平均增加,这很可能是由于年轻的Gaa -/-动物中卫星细胞激活增强的结果。出乎意料的是,无论是年轻还是年老的Gaa -/-小鼠都可以有效地再生实验性肌肉损伤,这可以通过快速卫星细胞激活和完全恢复的肌肉组织学来判断。作为对系列损伤的响应,Gaa -/-小鼠还可以有效地再生肌肉并维持卫星细胞池。这些发现表明,与人类患者相似,Gaa -/-小鼠在疾病进展过程中卫星细胞激活和肌肉再生不足。与人类患者相比,Gaa -/-小鼠的初始内源性卫星细胞应答可能导致肌肉消瘦的延迟发作。实验性肌肉损伤后的快速有效再生表明Gaa -/-卫星细胞是功能性干细胞,为发展庞培疾病的肌肉再生疗法开辟了道路。电子补充材料本文的在线版本(10.1186 / s40478-018-0620-3)包含补充材料,授权用户可以使用。

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