Histological Aspects of Skeletal Muscle Fibers Splitting of C57BL/6NCrl Mice

被引:3
作者
Makovicky, Peter [1 ]
Makovicky, Pavol [2 ]
机构
[1] Czech Acad Sci, Czech Ctr Phenogen, Inst Mol Genet, Prumyslova 595, Vestec 25250, Czech Republic
[2] J Selye Univ, Fac Educ, Dept Biol, Komarno, Slovakia
关键词
Myopathology; Skeletal muscle fiber; Regeneration; Skeletal muscles; REGENERATION;
D O I
10.33549/physiolres.934245
中图分类号
Q4 [生理学];
学科分类号
071003 ;
摘要
The objective of the current study is to present data on the splitting of skeletal muscle fibers in C57BL/6NCrl mice. Skeletal muscles (m. rectus femoris (m. quadriceps femoris)) from 500 (250 female and 250 male) C57BL/6NCrl mice in the 16th week of life were sampled during autopsy and afterwards standardly histologically processed. Results show spontaneous skeletal muscle fiber splitting which is followed by skeletal muscle fiber regeneration. One solitary skeletal muscle fiber is split, or is in contact with few localized splitting skeletal muscle fibers. Part of the split skeletal muscular fiber is phagocytosed, but the remaining skeletal muscular fiber splits are merged into one regenerating skeletal muscle fiber. Nuclei move from the periphery to the regenerating skeletal muscle fiber center during this process. No differences were observed between female and male mice and the morphometry results document <1 % skeletal muscle fiber splitting. If skeletal muscular fibers splitting occurs 5 %> of all skeletal muscular fibers, it is suggested to describe and calculate this in the final histopathological report.
引用
收藏
页码:291 / 296
页数:6
相关论文
共 28 条
  • [1] ANTONIO J, 1994, MED SCI SPORT EXER, V26, P973
  • [2] Regulation and phylogeny of skeletal muscle regeneration
    Baghdadi, Meryem B.
    Tajbakhsh, Shahragim
    [J]. DEVELOPMENTAL BIOLOGY, 2018, 433 (02) : 200 - 209
  • [3] Cabral A.J.V., 2008, Experimental Pathology and Health Sciences, V2, P9
  • [4] Cellular and molecular regulation of muscle regeneration
    Chargé, SBP
    Rudnicki, MA
    [J]. PHYSIOLOGICAL REVIEWS, 2004, 84 (01) : 209 - 238
  • [5] YY1 regulates skeletal muscle regeneration through controlling metabolic reprogramming of satellite cells
    Chen, Fengyuan
    Zhou, Jiajian
    Li, Yuying
    Zhao, Yu
    Yuan, Jie
    Cao, Yang
    Wang, Lijun
    Zhang, Zongkang
    Zhang, Baoting
    Wang, Chi Chiu
    Cheung, Tom H.
    Wu, Zhenguo
    Wong, Carmen Chak-Lui
    Sun, Hao
    Wang, Huating
    [J]. EMBO JOURNAL, 2019, 38 (10)
  • [6] Hypertrophic muscle fibers with fissures in power-lifters; fiber splitting or defect regeneration?
    Eriksson, Anders
    Lindstrom, Mona
    Carlsson, Lena
    Thornell, Lars-Eric
    [J]. HISTOCHEMISTRY AND CELL BIOLOGY, 2006, 126 (04) : 409 - 417
  • [7] Myofiber branching rather than myofiber hyperplasia contributes to muscle hypertrophy in mdx mice
    Faber, Rachel M.
    Hall, John K.
    Chamberlain, Jeffrey S.
    Banks, Glen B.
    [J]. SKELETAL MUSCLE, 2014, 4
  • [8] Giant muscle fibres in pigs with different Ryr1 genotype
    Fazarinc, G
    Candek-Potokar, M
    Ursic, M
    Vrecl, M
    Pogacnik, A
    [J]. ANATOMIA HISTOLOGIA EMBRYOLOGIA, 2002, 31 (06) : 367 - 371
  • [9] Analysis of Ca2+ Signaling Mechanisms - Our Experience on the Intercellular Communication in Muscle Remodeling
    Filip, S.
    Mokry, J.
    Forostyak, O.
    Dayanithi, G.
    [J]. PHYSIOLOGICAL RESEARCH, 2019, 68 (02) : 325 - 328
  • [10] An Overview About the Biology of Skeletal Muscle Satellite Cells
    Forcina, Laura
    Miano, Carmen
    Pelosi, Laura
    Musaro, Antonio
    [J]. CURRENT GENOMICS, 2019, 20 (01) : 24 - 37