Preferential Proliferation of Murine Colony-forming Units in Culture in a Chemically Defined Condition with a Macrophage Colony-stimulating Factor–negative Stromal Cell Clone

间质细胞 生物 造血 干细胞 细胞培养 细胞生物学 人口 骨髓 巨噬细胞集落刺激因子 克隆(Java方法) 免疫学 祖细胞 生长因子 表皮生长因子 分子生物学 体外 巨噬细胞 癌症研究 生物化学 医学 遗传学 受体 DNA 环境卫生
作者
Nobuyuki Takakura,Hiroaki Kodama,Satomi Nishikawa,Shin‐Ichi Nishikawa
出处
期刊:Journal of Experimental Medicine [Rockefeller University Press]
卷期号:184 (6): 2301-2310 被引量:27
标识
DOI:10.1084/jem.184.6.2301
摘要

The establishment of culture conditions that selectively support hematopoietic stem cells is an important goal of hematology. In this study, we investigated the possibility of using for this purpose a defined medium, mSFO2, which was developed for stromal cell–dependent bone marrow cultures. We found that a combination of epidermal growth factor (EGF), the OP9 stromal cell line, which lacks macrophage colony-stimulating factor, recombinant stem cell factor, and the chemically defined medium mSFO2 provides a microenvironment where c-Kit+ Thy-1+/lo Mac-1+/lo B220− TER119− commonβ+ IL-2Rγ+ gp130+ cells are selectively propagated from normal, unfractionated bone marrow cells. This cell population produced an in vitro colony at a very high efficiency (50%), whereas it has only limited proliferative ability in the irradiated recipient. Thus, the cells selected in this culture condition might represent colony-forming units in culture (CFU-c) with short-term reconstituting ability. Transferring this cell population into medium containing differentiation signals resulted in the rapid production of mature myelomonocytic and B cell lineages in vitro and in vivo. The fact that a similar culture condition was created by erb-B2–transduced OP9 in the absence of EGF indicated that EGF exerts its effect by acting on OP9 rather than directly on CFU-c. These results suggested that the balance between self-renewal and differentiation of CFU-c can be regulated by extracellular signals.

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