McAleer C W, Smith A S T, Najjar S, Pirozzi K, Long C J, Hickman J J
NanoScience Technology Center, University of Central Florida, Orlando, Florida.
NanoScience Technology Center, University of Central Florida, Orlando, Florida
J Appl Physiol (1985). 2014 Dec 1;117(11):1398-405. doi: 10.1152/japplphysiol.00612.2014. Epub 2014 Oct 9.
The ability to accurately measure skeletal muscle functional performance at the single-cell level would be advantageous for exercise physiology studies and disease modeling applications. To that end, this study characterizes the functional response of individual skeletal muscle myotubes derived from adult rodent tissue to creatine treatment and chronic exercise. The observed improvements to functional performance in response to these treatments appear to correlate with alterations in hypertrophic and mitochondrial biogenesis pathways, supporting previously published in vivo and in vitro data, which highlights the role of these pathways in augmenting skeletal muscle output. The developed system represents a multiplexed functional in vitro assay capable of long-term assessment of contractile cellular outputs in real-time that is compatible with concomitant molecular biology analysis. Adoption of this system in drug toxicity and efficacy studies would improve understanding of compound activity on physical cellular outputs and provide more streamlined and predictive data for future preclinical analyses.
在单细胞水平上准确测量骨骼肌功能表现的能力,对运动生理学研究和疾病建模应用将是有益的。为此,本研究对源自成年啮齿动物组织的单个骨骼肌肌管对肌酸处理和长期运动的功能反应进行了表征。观察到的这些处理后功能表现的改善似乎与肥大和线粒体生物发生途径的改变相关,这支持了先前发表的体内和体外数据,突出了这些途径在增强骨骼肌输出中的作用。所开发的系统代表了一种多重功能性体外测定法,能够实时长期评估收缩性细胞输出,并且与同步分子生物学分析兼容。在药物毒性和疗效研究中采用该系统将增进对化合物对物理细胞输出活性的理解,并为未来临床前分析提供更简化和可预测的数据。