小鼠和人毛囊膨出区成体干细胞的分离、培养及形态学特征

B. Molina, H. Finol
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引用次数: 1

摘要

皮肤含有各种各样的干细胞(SCs)。其中包括毛囊干细胞(HFSCs)在凸起区域。由于其鉴定、分离和扩增所带来的益处,HFSCs的行为值得广泛研究。使用新生小鼠(n = 32)和成人(n = 10)的皮肤样本,分离培养凸起区域。主要使用CD34和CD200单克隆抗体,通过免疫细胞化学和免疫荧光对细胞进行分离和鉴定。最初,细胞从外植体在凸起区域周围缓慢生长,形成小鼠和人类不同形态的细胞,后者多为多角形;小鼠细胞到达汇合的时间(5 ~ 7天)比人(12 ~ 15天)快。可分离到直径10 ~ 13 μm、圆形、细胞质少、细胞核中心突出、有核仁的传代培养细胞,形成集落,表型维持率高(小鼠77% ~ 83%,人91%),在小鼠近7个月和人1个半月内形态未发生变化。这些结果表明,选择、分离和条件培养基允许凸起细胞的数量增加,并表明培养的细胞可能保持其严峻性,因为它们保持了其表型特征,表达了特定的SCs标记,并长期显示出高增殖能力。小鼠和人类的毛囊是多能干细胞的重要储存库,因为它们倾向于分化成角质形成细胞。通过脱毛获得的人HFSCs保留了其增殖的潜力,并且证明很容易获得。这表明凸起细胞可能为组织工程和再生医学提供另一种自体干细胞来源。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Isolation, Cultivation, and Morphological Characteristics of Hair Follicle Adult Stem Cells in the Bulge Region in Mouse and Human
Skin contains various populations of stem cells (SCs). Among these are hair follicle stem cells (HFSCs) in the bulge region. The behavior of HFSCs deserves to be widely studied due to the benefits to be derived from their identification, isolation, and amplification. Skin samples of newborn mice (n = 32) and human adults (n = 10) were used, and the bulge region was isolated and cultured. The isolation and characterization of cells were conducted through immunocytochemistry and immunofluorescence, using mainly CD34 and CD200 monoclonal antibodies. Initially, cells grew slowly from the explant around the bulge region, accruing cells with different morphology in both mouse and human, latter being mostly polygonal; the mouse cells reaching confluence faster (5 to 7 days) than the human (12 to 15 days). It was possible to isolate into subcultures cells with small size (10 - 13 μm diameter), round-shape, scant cytoplasm, central prominent nucleus and with nucleolus, which formed colonies, maintaining their phenotype in a high proportion (77% - 83% and 91% in mouse and human, respectively), without showing changes in their morphology during almost 7 months in the mouse cells, and a month and a half in the human. These results demonstrate that the selection, the isolation, and the conditioned mediums allowed population increases of bulge cells and indicate that cultured cells may retain their sternness in that they maintained their phenotypic characteristics, expressed specific markers for SCs, and showed a high proliferative capacity for long periods. Hair follicles, in mice and humans, are important repositories of multipotent stem cells, due to their tendency to differentiate into keratinocytes. Human HFSCs, obtained by depilation, preserve their potential for proliferation and prove to be easily accessible. This suggests that the bulge cells may present an alternative source of autologous stem cells for tissue engineering and regenerative medicine.
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