Takano Hirotsugu, Nakazawa Shunsuke, Okuno Yasushi, Shirata Naritoshi, Tsuchiya Sohken, Kainoh Takayuki, Takamatsu Seigoh, Furuta Kazuyuki, Taketomi Yoshitaka, Naito Yuko, Takematsu Hiromu, Kozutsumi Yasunori, Tsujimoto Gozoh, Murakami Makoto, Kudo Ichiro, Ichikawa Atsushi, Nakayama Kazuhisa, Sugimoto Yukihiko, Tanaka Satoshi
Department of Physiological Chemistry, Graduate School of Pharmaceutical Sciences, Kyoto University, Sakyo-ku, Kyoto 606-8501, Japan.
FEBS Lett. 2008 Apr 30;582(10):1444-50. doi: 10.1016/j.febslet.2008.03.033. Epub 2008 Mar 31.
To understand physiological roles of tissue mast cells, we established a culture system where bone marrow-derived immature mast cells differentiate into the connective tissue-type mast cell (CTMC)-like cells through modifying the previous co-culture system with Swiss 3T3 fibroblasts. Our system was found to reproducibly mimic the differentiation of CTMCs on the basis of several criteria, such as granule maturation and sensitivity to cationic secretagogues. The gene expression profile obtained by the microarray analyses was found to reflect many aspects of the differentiation. Our system is thus helpful to gain deeper insights into terminal differentiation of CTMCs.
为了解组织肥大细胞的生理作用,我们建立了一种培养系统,在该系统中,通过改进先前与瑞士3T3成纤维细胞的共培养系统,使骨髓来源的未成熟肥大细胞分化为结缔组织型肥大细胞(CTMC)样细胞。基于颗粒成熟和对阳离子促分泌剂的敏感性等多项标准,我们发现该系统能够可重复地模拟CTMC的分化过程。通过微阵列分析获得的基因表达谱反映了分化的多个方面。因此,我们的系统有助于更深入地了解CTMC的终末分化。