老年肌肉中的诱导性退变和再生可减少管状聚集体,但不会改善肌肉功能。

Induced degeneration and regeneration in aged muscle reduce tubular aggregates but not muscle function.

作者信息

de Vasconcelos Felipe Tadeu Galante Rocha, Ribeiro Júnior Antonio Fernando, Souza Brandow Willy, Zogbi Isabela de Aquino, Carvalho Laura Machado Lara, Feitosa Letícia Nogueira, Souza Lucas Santos, Saldys Nathália Gagliardi, Ferrari Merari de Fátima Ramires, Vainzof Mariz

机构信息

Human Genome and Stem Cell Research Center, Department of Genetics and Evolutionary Biology, Biosciences Institute, University of São Paulo, São Paulo, Brazil.

出版信息

Front Neurol. 2024 Jan 26;15:1325222. doi: 10.3389/fneur.2024.1325222. eCollection 2024.

Abstract

INTRODUCTION

Tubular aggregates (TA) are skeletal muscle structures that arise from the progressive accumulation of sarcoplasmic reticulum proteins. Cytoplasmic aggregates in muscle fibers have already been observed in mice and humans, mainly during aging and muscle disease processes. However, the effects of muscle regeneration on TA formation have not yet been reported. This study aimed to investigate the relationship between degeneration/regeneration and TA in aged murine models. We investigated the presence and quantity of TA in old males from two murine models with intense muscle degeneration and regeneration.

METHODS

One murine lineage was a model of Duchenne muscular dystrophy ( = 6). In the other model, muscle damage was induced by electroporation in C57BL/6J wild-type mice, and analyzed after 5, 15, and 30 days post-electroporation (dpe;  = 15). Regeneration was evaluated based on the quantity of developmental myosin heavy chain (dMyHC)-positive fibers.

RESULTS

The frequency of fibers containing TA was higher in aged C57BL/6J (26 ± 8.3%) than in old dystrophic mice (2.4 ± 2%). Comparing the data from induced degeneration/regeneration in normal mice revealed a reduced proportion of TA-containing fibers after 5 and 30 dpe. Normal aged muscle was able to regenerate and form dMyHC+ fibers, mainly at 5 dpe (0.1 ± 0.1 vs. 16.5 ± 2.6%). However, there was no difference in force or resistance between normal and 30 dpe animals, except for the measurements by the Actimeter device, which showed the worst parameters in the second group.

DISCUSSION

Our results suggest that TA also forms in the muscle but in smaller amounts. The intense degeneration and regeneration of the old dystrophic model resulted in the generation of new muscle fibers with a lower quantity of TA. Data from electroporated wild-type mice support the idea that muscle regeneration leads to a reduction in the amount of TA. We suggest that TA accumulates in muscle fibers throughout physiological aging and that regeneration leads to the formation of new fibers without these structures. In addition, these new fibers do not confer functional benefits to the muscle.

摘要

引言

管状聚集体(TA)是由肌浆网蛋白逐渐积累形成的骨骼肌结构。肌肉纤维中的细胞质聚集体已在小鼠和人类中被观察到,主要发生在衰老和肌肉疾病过程中。然而,肌肉再生对TA形成的影响尚未见报道。本研究旨在探讨老年鼠模型中退变/再生与TA之间的关系。我们研究了两种具有强烈肌肉退变和再生的小鼠模型中老龄雄性小鼠TA的存在情况和数量。

方法

一个小鼠品系是杜氏肌营养不良模型(n = 6)。在另一个模型中,通过电穿孔在C57BL/6J野生型小鼠中诱导肌肉损伤,并在电穿孔后5天、15天和30天进行分析(n = 15)。根据发育型肌球蛋白重链(dMyHC)阳性纤维的数量评估再生情况。

结果

老龄C57BL/6J小鼠中含有TA的纤维频率(26 ± 8.3%)高于老龄营养不良小鼠(2.4 ± 2%)。比较正常小鼠诱导退变/再生的数据发现,电穿孔后5天和30天含有TA的纤维比例降低。正常老龄肌肉能够再生并形成dMyHC+纤维,主要在电穿孔后5天(0.1 ± 0.1对16.5 ± 2.6%)。然而,正常小鼠和电穿孔后30天的小鼠之间在力量或耐力方面没有差异,除了Actimeter装置的测量结果,该结果显示第二组的参数最差。

讨论

我们的结果表明,TA也在老龄小鼠肌肉中形成,但数量较少。老龄营养不良模型的强烈退变和再生导致新肌肉纤维的产生,其中TA的数量较少。电穿孔野生型小鼠的数据支持肌肉再生导致TA数量减少的观点。我们认为,TA在整个生理衰老过程中在肌肉纤维中积累,而再生导致没有这些结构的新纤维形成。此外,这些新纤维并未给肌肉带来功能上的益处。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/302f/10853367/4c578e9730c7/fneur-15-1325222-g001.jpg

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