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用于培养肉生产的猪肌肉干细胞培养传代数不同的培养基中的代谢组学变化。

Metabolomic changes in culture media with varying passage numbers of pig muscle stem cell culture for cultured meat production.

机构信息

Department of Agricultural Biotechnology, Center for Food and Bioconvergence, and Research Institute of Agriculture and Life Sciences, Seoul National University, Seoul 08826, Republic of Korea.

Department of Agricultural Biotechnology, Center for Food and Bioconvergence, and Research Institute of Agriculture and Life Sciences, Seoul National University, Seoul 08826, Republic of Korea; Institute of Green Bio Science and Technology, Seoul National University, Pyeongchang 25354, Republic of Korea; Department of Animal Product Technology, Faculty of Animal Husbandry, Universitas Padjadjaran, West Java 45363, Indonesia.

出版信息

Food Res Int. 2024 Apr;182:114138. doi: 10.1016/j.foodres.2024.114138. Epub 2024 Feb 27.

Abstract

Selecting the primary cells in an optimal state for cultured meat production is a crucial challenge in commercializing cultured meat. We investigated the metabolomic changes in culture media according to passage numbers for indirectly assessing the state of primary cells. Pig skeletal muscle stem cells (PSCs) harvested from the biceps femoris muscles of 7-d-old crossbred pigs (Landrace × Yorkshire × Duroc, LYD) were used for cell characterization. Fresh media (FM) and spent media (SM) of PSCs during passages 1 to 3 in vitro culture were prepared for metabolomics analysis. SM was collected on the third day of proliferation for each passage of PSCs. Cell characterization analysis revealed that the proliferation rate was highest at passage 2; however, a significant loss of expression of myogenic marker genes was observed at passage 3. Based on metabolomic profiles of culture media, FM and SM groups (SM1, SM2, and SM3) were clearly separated by partial least squares-discriminant analysis. A total of seven differentially abundant metabolites (DAMs) were identified from FM and SM for each passage, based on the following criteria: P < 0.05, fold change > 1.5 or < 0.66, and a variable importance in projection score > 1.5. All seven DAMs and their interconnected metabolites might be primarily used as substrates for energy production and most of them were relatively abundant in SM3. Among the seven DAMs, the three potential biomarkers (γ-glutamyl-L-leucine, cytosine, and ketoleucine), which showed significant changes exclusively in SM3, each had an area under the curve value of 1. Therefore, monitoring the levels of these key metabolites in culture media could serve as a quality control measure for cultured meat production by enabling the indirect detection of suboptimal PSCs based on their proliferation ability.

摘要

选择最适合生产培养肉的原代细胞是培养肉商业化的关键挑战。我们根据传代数研究了培养基中的代谢组学变化,以间接评估原代细胞的状态。猪骨骼肌干细胞(PSCs)取自 7 日龄杂交猪(长白猪×约克夏猪×杜洛克猪,LYD)的股二头肌,用于细胞特征分析。为代谢组学分析制备了 PSCs 第 1 至 3 代体外培养的新鲜培养基(FM)和耗竭培养基(SM)。SM 是在 PSCs 每代第 3 天增殖时收集的。细胞特征分析表明,增殖率在第 2 代最高;然而,在第 3 代观察到肌生成标记基因的表达显著丢失。基于培养基的代谢组学特征,FM 和 SM 组(SM1、SM2 和 SM3)通过偏最小二乘判别分析清楚地分开。根据以下标准从 FM 和 SM 中鉴定出每个传代的 7 种差异丰度代谢物(DAMs):P < 0.05,倍数变化 > 1.5 或 < 0.66,以及投影得分变量重要性 > 1.5。所有 7 种 DAMs 及其相互连接的代谢物可能主要用作能量产生的底物,并且它们大多数在 SM3 中相对丰富。在这 7 种 DAMs 中,三种潜在的生物标志物(γ-谷氨酰-L-亮氨酸、胞嘧啶和酮亮氨酸),仅在 SM3 中显示出显著变化,每个标志物的曲线下面积值为 1。因此,监测培养基中这些关键代谢物的水平可以作为培养肉生产的质量控制措施,通过基于其增殖能力间接检测到次优的 PSCs。

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