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CD146 确定了培养的纤维环细胞向表达收缩表型的定向分化。

CD146 defines commitment of cultured annulus fibrosus cells to express a contractile phenotype.

作者信息

Nakai Tomoko, Sakai Daisuke, Nakamura Yoshihiko, Nukaga Tadashi, Grad Sibylle, Li Zhen, Alini Mauro, Chan Danny, Masuda Koichi, Ando Kiyoshi, Mochida Joji, Watanabe Masahiko

机构信息

Department of Orthopedic Surgery, Surgical Science, Tokai University School of Medicine, Isehara, Kanagawa, 259-1143, Japan.

Research Center for Regenerative Medicine and Cancer Stem Cell, Tokai University School of Medicine, Isehara, Kanagawa, 259-1193, Japan.

出版信息

J Orthop Res. 2016 Aug;34(8):1361-72. doi: 10.1002/jor.23326. Epub 2016 Aug 8.

Abstract

Characterization of cells is important for facilitating cell-based therapies for degenerative diseases of intervertebral discs. For this purpose, we analyzed mouse annulus fibrosus cells by flowcytometory to detect phenotypic change in their primary cultures. After examination of sixteen cell surface proteins, we focused on CD146 that solely increased during culture expansion. CD146 is known to be a marker for mesenchymal stem cells and for their vascular smooth muscle commitment with expression of contractile phenotype enhanced by SM22α. We sorted CD146+ cells to elucidate their characteristics and the key factors that play a role in this change. Whole cell cultures showed the ability for tripotent differentiation toward mesenchymal lineages, whereas sorted CD146+ cells did not. Expression of CD146 was elevated by addition of transforming growth factor β1, and sorted CD146+ cells expressed higher levels of mRNA for SM22α and Elastin than did CD146- cells. Morphologically, CD146+ cells more broadly deposited extracellular type I collagen than CD146- cells and showed filamentous actin bundles traversing their cytoplasm and cell-cell junctions. Moreover, CD146+ cells demonstrated significantly higher gel contraction properties than CD146- cells when they were embedded in collagen gels. Human annulus fibrosus CD146+ cells also showed higher contractility. Immunohistochemistry determined CD146+ cells localized to the outermost annulus layers of mouse intervertebral disc tissue with co-expression of SM22α. These results suggest that increment of CD146 expression indicates gradual change of cultured annulus fibrosus cells to express a contractile phenotype and that transforming growth factor β1 enhances this cellular commitment. © 2016 Orthopaedic Research Society. Published by Wiley Periodicals, Inc. J Orthop Res 34:1361-1372, 2016.

摘要

细胞表征对于推动基于细胞的椎间盘退行性疾病治疗至关重要。为此,我们通过流式细胞术分析了小鼠纤维环细胞,以检测其原代培养中的表型变化。在检测了16种细胞表面蛋白后,我们聚焦于仅在培养扩增过程中增加的CD146。已知CD146是间充质干细胞及其血管平滑肌定向分化的标志物,其收缩表型的表达通过SM22α增强。我们分选了CD146 +细胞以阐明其特征以及在此变化中起作用的关键因素。全细胞培养物显示出向间充质谱系进行三向分化的能力,而分选的CD146 +细胞则没有。添加转化生长因子β1可提高CD146的表达,分选的CD146 +细胞比CD146 -细胞表达更高水平的SM22α和弹性蛋白mRNA。在形态学上,CD146 +细胞比CD146 -细胞更广泛地沉积细胞外I型胶原蛋白,并显示丝状肌动蛋白束穿过其细胞质和细胞间连接。此外,当CD146 +细胞嵌入胶原凝胶中时,它们表现出比CD146 -细胞明显更高的凝胶收缩特性。人纤维环CD146 +细胞也显示出更高的收缩性。免疫组织化学确定CD146 +细胞定位于小鼠椎间盘组织的最外环层,并与SM22α共表达。这些结果表明,CD146表达的增加表明培养的纤维环细胞逐渐转变为表达收缩表型,并且转化生长因子β1增强了这种细胞定向分化。©2016骨科研究协会。由Wiley Periodicals, Inc.出版。《矫形外科研究杂志》34:1361 - 1372, 2016年。

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