从人类原代骨骼肌细胞培养中了解人类肌肉生物学。

IF 1.8 3区 生物学 Q4 CELL BIOLOGY
Thomas Francis, Casper Soendenbroe, Norman R Lazarus, Abigail L Mackey, Stephen D R Harridge
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引用次数: 0

摘要

这篇综述源于2024年在伦敦大学学院为纪念珍妮·摩根教授而举行的研讨会,作者想要感谢摩根教授在翻译肌肉细胞生物学领域做出的杰出贡献。摩根教授在2010年发表了一篇评论文章,题为:人类和老鼠的卫星细胞真的是一样的吗?在这篇文章中,作者强调了物种之间的差异,这些差异今天仍然与骨骼肌细胞培养研究有关。据我们所知,目前还没有全面的综述概述了使用人类初级骨骼肌起源细胞作为主要模型系统所进行的大量工作。这篇综述强调了使用人类原代细胞研究的大量肌肉生物学,并讨论了与其他细胞模型相比的优点和缺点。我们还讨论了利用细胞类型特异性和培养系统的最新技术的原代细胞培养模型的未来方向。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Insights into human muscle biology from human primary skeletal muscle cell culture.

This review arises from the symposium held in honour of Prof Jenny Morgan at UCL in 2024 and the authors would like to acknowledge the outstanding contribution that Prof Morgan has made to the field of translational muscle cell biology. Prof Morgan published a review article in 2010 entitled: Are human and mice satellite cells really the same? In which the authors highlighted differences between species which are still pertinent to skeletal muscle cell culture studies today. To our knowledge there are no comprehensive reviews which outline the considerable work that has been undertaken using human primary skeletal muscle origin cells as the main model system. This review highlights the multitude of muscle biology that has been investigated using human primary cells, as well as discussing the advantages and disadvantages over other cell models. We also discuss future directions for primary cell culture models utilising the latest technologies in cell type specificity and culture systems.

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来源期刊
CiteScore
6.20
自引率
0.00%
发文量
21
审稿时长
>12 weeks
期刊介绍: The Journal of Muscle Research and Cell Motility has as its main aim the publication of original research which bears on either the excitation and contraction of muscle, the analysis of any one of the processes involved therein, the processes underlying contractility and motility of animal and plant cells, the toxicology and pharmacology related to contractility, or the formation, dynamics and turnover of contractile structures in muscle and non-muscle cells. Studies describing the impact of pathogenic mutations in genes encoding components of contractile structures in humans or animals are welcome, provided they offer mechanistic insight into the disease process or the underlying gene function. The policy of the Journal is to encourage any form of novel practical study whatever its specialist interest, as long as it falls within this broad field. Theoretical essays are welcome provided that they are concise and suggest practical ways in which they may be tested. Manuscripts reporting new mutations in known disease genes without validation and mechanistic insight will not be considered. It is the policy of the journal that cells lines, hybridomas and DNA clones should be made available by the developers to any qualified investigator. Submission of a manuscript for publication constitutes an agreement of the authors to abide by this principle.
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