School of Sport Exercise and Rehabilitation Sciences, https://ror.org/03angcq70University of Birmingham, Birmingham, United Kingdom.
NIHR Birmingham Biomedical Research Centre, University Hospitals Birmingham NHS Foundation Trust, University of Birmingham, Birmingham, United Kingdom.
Am J Physiol Cell Physiol. 2023 Feb 1;324(2):C420-C427. doi: 10.1152/ajpcell.00473.2022. Epub 2022 Dec 26.
In vitro models provide an important platform for the investigation of cellular growth and atrophy to inform, or extend mechanistic insights from, logistically challenging in vivo trials. Although these models allow for the identification of candidate mechanistic pathways, many models involve supraphysiological dosages, nonphysiological conditions, or experimental changes relating to individual proteins or receptors, all of which limit translation to human trials. To overcome these drawbacks, the use of ex vivo human plasma and serum has been used in cellular models to investigate changes in myotube hypertrophy, cellular protein synthesis, anabolic and catabolic markers in response to differing age, disease states, and nutrient status. However, there are currently no concurrent guidelines outlining the optimal methodology for this model. This review discusses the key methodological considerations surrounding the use of ex vivo plasma and serum with a focus in application to skeletal muscle cell lines (i.e., C2C12, L6, and LHCN-M2) and human primary skeletal muscle cells (HSMCs) as a means to investigate molecular signaling in models of atrophy and hypertrophy, alongside future directions.
体外模型为研究细胞生长和萎缩提供了一个重要的平台,有助于从具有挑战性的体内试验中获得机制方面的深入了解。虽然这些模型可以确定候选机制途径,但许多模型涉及超生理剂量、非生理条件或与单个蛋白质或受体相关的实验变化,所有这些都限制了其在人体试验中的应用。为了克服这些缺点,人们已经在细胞模型中使用离体人血浆和血清来研究肌管肥大、细胞蛋白质合成、合成代谢和分解代谢标志物在不同年龄、疾病状态和营养状态下的变化。然而,目前还没有关于该模型的最佳方法的现行指南。本文讨论了使用离体血浆和血清的关键方法学考虑因素,重点是应用于骨骼肌细胞系(即 C2C12、L6 和 LHCN-M2)和人原代骨骼肌细胞(HSMCs),以研究萎缩和肥大模型中的分子信号转导,以及未来的方向。