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在骨髓基质上培养人胎儿B细胞前体可维持高增殖性CD20dim细胞。

Culture of human fetal B-cell precursors on bone marrow stroma maintains highly proliferative CD20dim cells.

作者信息

Moreau I, Duvert V, Banchereau J, Saeland S

机构信息

Schering-Plough Laboratory for Immunological Research, Dardilly, France.

出版信息

Blood. 1993 Mar 1;81(5):1170-8.

PMID:7680240
Abstract

Growth of human B-cell precursors (BCP) was achieved by plating fetal CD10+ surface-mu (s mu)- cells in liquid medium onto bone marrow-derived fibroblastic stromal cell layers deprived of hematopoietic cells. Proliferation of the fetal BCP was strongly potentiated by the addition of interleukin-7 (IL-7) to the cultures. Cultures included both a stroma-adherent and -nonadherent fraction of lymphoid cells, allowing us to expand the number of input BCP to 13-fold. In the presence of exogenous IL-7, proliferation was dose-dependent relative to the number of stromal cells, demonstrating that soluble IL-7 does not act alone to promote optimal growth. We further showed that the lymphoid cells recovered remain CD10+ sIg- BCP and that most cells expressed the maturation-associated CD20 antigen when IL-7 was added to the cultures. Whereas both freshly isolated CD20- and CD20bright BCP proliferated in the presence of stroma, we observed that high-proliferative capacity CD20dim cells were maintained in the cultures. Finally, CD20dim sorted cells were shown to subsequently acquire high levels of CD20 expression in culture, thus demonstrating a partial maturation sequence. The present culture system thus represents a useful model for studying the regulatory signals in early human B lymphopoiesis.

摘要

通过将胎儿CD10 +表面μ(sμ)细胞接种于不含造血细胞的骨髓来源的成纤维细胞基质细胞层上的液体培养基中,实现了人B细胞前体(BCP)的生长。向培养物中添加白细胞介素-7(IL-7)可强烈增强胎儿BCP的增殖。培养物包括淋巴样细胞的基质黏附部分和非黏附部分,这使我们能够将输入的BCP数量扩大至13倍。在存在外源性IL-7的情况下,增殖相对于基质细胞数量呈剂量依赖性,表明可溶性IL-7并非单独起作用来促进最佳生长。我们进一步表明,回收的淋巴样细胞仍然是CD10 + sIg - BCP,并且当向培养物中添加IL-7时,大多数细胞表达与成熟相关的CD20抗原。尽管新鲜分离的CD20 -和CD20bright BCP在有基质存在的情况下都能增殖,但我们观察到高增殖能力的CD20dim细胞在培养物中得以维持。最后,分选的CD20dim细胞在培养中随后显示出高水平的CD20表达,从而证明了部分成熟序列。因此,目前的培养系统代表了一种用于研究早期人类B淋巴细胞生成中调节信号的有用模型。

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