组织工程与重建外科杂志 ›› 2022, Vol. 18 ›› Issue (2): 103-.

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免过滤酶消化法在成纤维细胞提取中的应用

  

  • 出版日期:2022-04-01 发布日期:2022-06-21

The application of enzyme digestion without filtration in the isolation of fibroblasts 

  • Online:2022-04-01 Published:2022-06-21

摘要: 目的 探索一种操作简单且高效的成纤维细胞提取方法,并对免过滤酶消化法提取成纤维细胞的效果进行评价。方法 将瘢痕疙瘩标本分别采用免过滤酶消化法、传统酶消化法、组织块贴壁法进行细胞提取。记录细胞长满瓶底80%所需时间,并检测3组细胞的增殖活性及胶原分泌情况。结果 免过滤酶消化法提取细胞,在接种后2~3 d可观察到瓶底的组织碎屑周边有芽状细胞游出,向四周呈放射状生长;单独贴壁的细胞生长良好。该组细胞长满瓶底80%所需时间较传统酶消化法节约(3.25±0.89) d,较组织块贴壁法节约(9.50±1.64) d,差异有统计学意义(P<0.01)。3组成纤维细胞均未出现污染,并且3组细胞的24 h细胞增殖活性、增长率及羟脯氨酸产生量均无统计学差异(P>0.05)。结论 免过滤酶消化法步骤少,操作简单,且不会增加污染概率或对细胞增殖活性及胶原分泌功能产生明显影响,是一种高效提取成纤维细胞的方法,值得推广。

关键词: 瘢痕,  瘢痕疙瘩,  成纤维细胞,  细胞提取,  酶消化法

Abstract: Objective To explore a simple and efficient method for the isolation of fibroblasts, and to evaluate the outcomes of fibroblasts isolation using enzyme digestion without filtration from keloids. Methods Keloid tissues were divided into three parts with the same volume, and cells were isolated using enzyme digestion without filtration, traditional enzyme digestion and tissue cultivation respectively. Cell growth was observed and the time required for cells to coat 80% of the bottom of the cell culture flasks was recorded. In addition, the cell proliferation and the function of collagen secretion in each group were detected and compared. Results In the group of enzyme digestion without filtration, there were small bud-like adherent cells swimming out from the tissue debris in only 2-3 days after plating and the single adherent cells grew well. The time required for cells to coat 80% of the bottom of the flasks in this group was 3.25±0.89 days, less than that in the traditional enzyme digestion group, and 9.50±1.64 days less than that in the tissue cultivation group (P<0.01). Contamination was not found in all groups. There were no significant differences in the growth rate of 24-hour cell proliferation activity and the hydroxyproline content among the three groups (P>0.05). Conclusion Enzyme digestion without filtration contains fewer steps and is easy to operate, which will not increase the rate of contamination or influence the cell viability or the function of collagen secretion. It is an efficient method for fibroblasts extraction and worth spreading.

Key words: Scar,  Keloid,  Fibroblasts,  Cell isolation,  Enzyme digestion