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用于鉴定和评估猪肌生成相关植物源物质的系统性肌肉生长抑制素表达筛选平台

Systematic Myostatin Expression Screening Platform for Identification and Evaluation of Myogenesis-Related Phytogenic in Pigs.

作者信息

Ou Bor-Rung, Hsu Ming-Hua, Haung Ling-Ya, Lin Chuan-Ju, Kuo Li-Li, Tsai Yu-Ting, Chang Yu-Chia, Lin Wen-Yuh, Huang Tsung-Chien, Wu Yun-Chu, Yeh Jan-Ying, Liang Yu-Chuan

机构信息

Department of Animal Science and Biotechnology, Tunghai University, Taichung 407, Taiwan.

Department of Chemistry, National Changhua University of Education, Changhua 500, Taiwan.

出版信息

Bioengineering (Basel). 2023 Sep 22;10(10):1113. doi: 10.3390/bioengineering10101113.

Abstract

Skeletal muscle growth in livestock impacts meat quantity and quality. Concerns arise because certain feed additives, like beta-agonists, may affect food safety. Skeletal muscle is a specialized tissue consisting of nondividing and multinucleated muscle fibers. Myostatin (MSTN), a protein specific to skeletal muscle, is secreted and functions as a negative regulator of muscle mass by inhibiting the proliferation and differentiation of myoblasts. To enhance livestock muscle growth, phytogenic feed additives could be an alternative as they inhibit MSTN activity. The objective of this study was to establish a systematic screening platform using MSTN activity to evaluate phytogenics, providing scientific evidence of their assessment and potency. In this study, we established a screening platform to monitor myostatin promoter activity in rat L8 myoblasts. Extract of (GUE), an oriental herbal medicine, was identified through this screening platform, and the active fractions of GUE were identified using a process-scale liquid column chromatography system. For in vivo study, GUE as a feed additive was investigated in growth-finishing pigs. The results showed that GUE significantly increased body weight, carcass weight, and lean content in pigs. Microbiota analysis indicated that GUE did not affect the composition of gut microbiota in pigs. In summary, this established rodent myoblast screening platform was used to identify a myogenesis-related phytogenic, GUE, and further demonstrated that the active fractions and compounds inhibited MSTN expression. These findings suggest a novel application for GUE in growth performance enhancement through modulation of MSTN expression. Moreover, this well-established screening platform holds significant potential for identifying and assessing a diverse range of phytogenics that contribute to the process of myogenesis.

摘要

家畜骨骼肌的生长会影响肉的数量和质量。由于某些饲料添加剂,如β-激动剂,可能会影响食品安全,因此引发了人们的担忧。骨骼肌是一种由不分裂的多核肌纤维组成的特殊组织。肌肉生长抑制素(MSTN)是骨骼肌特有的一种蛋白质,它通过抑制成肌细胞的增殖和分化来分泌并发挥肌肉质量负调节因子的作用。为了促进家畜肌肉生长,植物源饲料添加剂可能是一种替代选择,因为它们可以抑制MSTN的活性。本研究的目的是建立一个利用MSTN活性评估植物源物质的系统筛选平台,为其评估和效力提供科学依据。在本研究中,我们建立了一个筛选平台来监测大鼠L8成肌细胞中肌肉生长抑制素启动子的活性。通过这个筛选平台鉴定出了一种东方草药(GUE)的提取物,并使用制备规模的液相柱色谱系统鉴定了GUE的活性成分。在生长育肥猪中研究了作为饲料添加剂的GUE的体内作用。结果表明,GUE显著增加了猪的体重、胴体重量和瘦肉含量。微生物群分析表明,GUE不影响猪肠道微生物群的组成。总之,这个建立的啮齿动物成肌细胞筛选平台被用于鉴定一种与肌生成相关的植物源物质GUE,并进一步证明活性成分和化合物抑制了MSTN的表达。这些发现表明GUE通过调节MSTN表达在提高生长性能方面有新的应用。此外,这个成熟的筛选平台在鉴定和评估多种有助于肌生成过程的植物源物质方面具有巨大潜力。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/95b8/10604025/6f2ad4a9de9a/bioengineering-10-01113-g001.jpg

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