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通过基于细胞的体外试验分析当归对鸡成肌细胞的功能功效。

Functional efficacy analysis of Angelica gigas Nakai on chicken myoblast cells through cell-based in vitro assay.

机构信息

Institute of Green-Bio Science and Technology, Seoul National University, Pyeongchang, Gangwon, Korea.

Graduate School of International Agricultural Technology, Seoul National University, Pyeongchang, Gangwon, Korea.

出版信息

Anim Sci J. 2019 Jul;90(7):903-912. doi: 10.1111/asj.13212. Epub 2019 Apr 22.

Abstract

The value-added products in livestock industry is one of the key issues in order to maximize the revenue and to create a new business model. Numerous studies have suggested application of herbal plants as feed additives to increase health, productivity, and/or high-quality product in livestock. In this study, the first experiment was designed to develop in vitro evaluation system by using primary chicken myoblast (pCM) cells isolated from pectoralis major of 10-day-old male embryos. Subsequently, to evaluate effects of Korean Danggui Angelica gigas Nakai (AGN), we optimized the concentration of AGN root extract for treatment of primary pCM cells. After the treatment of AGN root extract, we compared proliferation and differentiation capacity, and also examined the gene expression. In the second experiment, the next generation sequencing analysis was performed to compare the different patterns of the global gene expression in pCM cells treated with AGN extract. Three up-regulated (pancreas beta cells, fatty acid metabolism and glycolysis) and one down-regulated (adipogenesis) gene sets were characterized suggesting that the AGN extract affected the metabolic pathways for the utilization of fat and glucose in chicken muscle cells. Furthermore, we validated the expression patterns of the up-regulated genes (GCLC, PTPN6, ISL1, SLC25A13, TGFBI, and YWHAH) in the AGN-treated pCM cells by quantitative RT-PCR. These results demonstrated that the treatment of AGN extract decreased proliferation and differentiation of pCM cells, and affected the metabolic pathways of glucose and fatty acids. Moreover, AGN extract derived from byproducts such as stem and leaf also showed the reduced proliferation patterns on AGN-treated pCM cells. Taken together, pCM cell-based in vitro assay system could be primarily and efficiently applied for evaluating the biofunctional efficacy of various feed additive candidates.

摘要

畜牧业的增值产品是实现收入最大化和创造新商业模式的关键问题之一。大量研究表明,应用草药作为饲料添加剂可以提高牲畜的健康、生产力和/或高质量产品。在这项研究中,首先设计了一个体外评估系统,使用从 10 日龄雄性胚胎胸大肌分离的原代鸡肌母细胞(pCM)细胞。随后,为了评估韩国当归(Angelica gigas Nakai,AGN)的作用,我们优化了 AGN 根提取物的浓度,用于治疗原代 pCM 细胞。在 AGN 根提取物处理后,我们比较了增殖和分化能力,并检查了基因表达。在第二个实验中,进行了下一代测序分析,以比较用 AGN 提取物处理的 pCM 细胞的全球基因表达的不同模式。三个上调(胰岛β细胞、脂肪酸代谢和糖酵解)和一个下调(脂肪生成)的基因集表明,AGN 提取物影响了鸡肌肉细胞中脂肪和葡萄糖利用的代谢途径。此外,我们通过定量 RT-PCR 验证了 AGN 处理的 pCM 细胞中上调基因(GCLC、PTPN6、ISL1、SLC25A13、TGFBI 和 YWHAH)的表达模式。这些结果表明,AGN 提取物处理降低了 pCM 细胞的增殖和分化,并影响了葡萄糖和脂肪酸的代谢途径。此外,茎和叶等副产物来源的 AGN 提取物也显示出对 AGN 处理的 pCM 细胞增殖模式的降低。总之,基于 pCM 细胞的体外测定系统可用于初步且有效地评估各种饲料添加剂候选物的生物功能功效。

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