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在微成型明胶水凝胶上培养 C2C12 肌管可加速肌管成熟。

Culturing C2C12 myotubes on micromolded gelatin hydrogels accelerates myotube maturation.

机构信息

Department of Molecular Genetics and Microbiology, Center for Neurogenetics, Myology Institute, College of Medicine, University of Florida, Gainesville, FL, 32610, USA.

Department of Physiology and Functional Genomics, Myology Institute, College of Medicine, University of Florida, Gainesville, FL, 32610, USA.

出版信息

Skelet Muscle. 2019 Jun 7;9(1):17. doi: 10.1186/s13395-019-0203-4.

Abstract

BACKGROUND

Skeletal muscle contributes to roughly 40% of lean body mass, and its loss contributes to morbidity and mortality in a variety of pathogenic conditions. Significant insights into muscle function have been made using cultured cells, in particular, the C2C12 myoblast line. However, differentiation of these cells in vitro typically yields immature myotubes relative to skeletal muscles in vivo. While many efforts have attempted to improve the maturity of cultured myotubes, including the use of bioengineered substrates, lack of molecular characterization has precluded their widespread implementation. This study characterizes morphological, molecular, and transcriptional features of C2C12 myotubes cultured on crosslinked, micropatterned gelatin substrates fabricated using previously established methods and compares them to myotubes grown on unpatterned gelatin or traditional plasticware.

METHODS

We used immunocytochemistry, SDS-PAGE, and RNAseq to characterize C2C12 myotubes grown on micropatterned gelatin hydrogels, unpatterned gelatin hydrogels, and typical cell culture substrates (i.e., plastic or collagen-coated glass) across a differentiation time course. The ability to form aligned sarcomeres and myofilament protein concentration was assessed. Additionally, the transcriptome was analyzed across the differentiation time course.

RESULTS

C2C12 myotubes grown on micropatterned gelatin hydrogels display an increased ability to form aligned sarcomeres as well as increased contractile protein content relative to myotubes cultured on unpatterned gelatin and plastic. Additionally, genes related to sarcomere formation and in vivo muscle maturation are upregulated in myotubes grown on micropatterned gelatin hydrogels relative to control myotubes.

CONCLUSIONS

Our results suggest that growing C2C12 myotubes on micropatterned gelatin hydrogels accelerates sarcomere formation and yields a more fully matured myotube culture. Thus, the use of micropatterned hydrogels is a viable and simple approach to better model skeletal muscle biology in vitro.

摘要

背景

骨骼肌约占去脂体重的 40%,其损失会导致多种病理状况下的发病率和死亡率增加。通过培养细胞,特别是 C2C12 成肌细胞系,人们对肌肉功能有了重要的认识。然而,这些细胞在体外的分化通常会产生相对不成熟的肌管,而不是体内的骨骼肌。尽管许多研究都试图通过使用生物工程化的基质来改善培养的肌管的成熟度,但由于缺乏分子特征描述,这些方法尚未得到广泛应用。本研究对使用先前建立的方法制备的交联微图案化明胶基质上培养的 C2C12 肌管的形态、分子和转录特征进行了描述,并将其与在无图案明胶或传统塑料培养板上生长的肌管进行了比较。

方法

我们使用免疫细胞化学、SDS-PAGE 和 RNAseq 来描述在微图案化明胶水凝胶、无图案明胶水凝胶和典型细胞培养基板(即塑料或胶原蛋白涂覆玻璃)上培养的 C2C12 肌管,这些基板在分化时间过程中使用。评估了形成对齐的肌节和肌丝蛋白浓度的能力。此外,还分析了整个分化时间过程中的转录组。

结果

与在无图案明胶和塑料上培养的肌管相比,在微图案化明胶水凝胶上培养的 C2C12 肌管具有形成对齐的肌节的能力增强,并且收缩蛋白含量增加。此外,与对照肌管相比,在微图案化明胶水凝胶上培养的肌管中与肌节形成和体内肌肉成熟相关的基因上调。

结论

我们的结果表明,在微图案化明胶水凝胶上培养 C2C12 肌管可加速肌节的形成,并产生更成熟的肌管培养物。因此,使用微图案化水凝胶是一种可行且简单的方法,可以更好地在体外模拟骨骼肌生物学。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/645c/6555731/4b4e852bb532/13395_2019_203_Fig1_HTML.jpg

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