Miralles G D, Smith C A, Whichard L P, Morse M A, Haynes B F, Patel D D
Department of Medicine, Duke University Medical Center, Durham, NC 27710, USA.
J Immunol. 1998 Apr 1;160(7):3290-8.
Thymic dendritic cells (DCs) appear to have distinct biologic and functional properties compared with DCs in other tissues. Currently, little is known about human thymic DCs because they have been difficult to isolate and culture in vitro. Here, we report that human thymic stroma can support the development of primitive human hemopoietic stem cells into mature DCs without cytokine or serum supplementation. Coculture of CD34+CD38-lineage (lin)- and CD34+CD38+lin- umbilical cord blood cells with thymic stromal monolayers induced 43 +/- 17-fold and 32 +/- 16-fold expansions, respectively, of umbilical cord blood progenitors and also generated large numbers of cells with the morphologic, phenotypic, and functional characteristics of mature DCs. These cells expressed class I and class II MHC, CD1a, CD2, CD4, CD11c, CD40, CD45, CD80, CD83, and CD86 and were potent stimulators of allogeneic T cell activation. Primitive hemopoietic progenitors also developed into mature DCs in a novel tissue culture system of thymic nodules wherein thymic epithelial cells and fibroblasts were grown in nodular aggregates in vitro. These results demonstrate that human thymic stroma efficiently supports the development of CD34+CD38-lin- cord blood cells into mature DCs. In addition, the culture conditions described in this report are useful systems for studying the ontogeny of human DCs in thymic microenvironments.
与其他组织中的树突状细胞(DCs)相比,胸腺树突状细胞似乎具有独特的生物学和功能特性。目前,对人类胸腺DCs了解甚少,因为它们很难在体外分离和培养。在此,我们报告人类胸腺基质能够支持原始人类造血干细胞发育为成熟DCs,而无需添加细胞因子或血清。将CD34 + CD38 - 谱系(lin)- 和CD34 + CD38 + lin - 脐带血细胞与胸腺基质单层共培养,分别使脐带血祖细胞扩增了43±17倍和32±16倍,并且还产生了大量具有成熟DCs形态、表型和功能特征的细胞。这些细胞表达I类和II类主要组织相容性复合体(MHC)、CD1a、CD2、CD4、CD11c、CD40、CD45、CD80、CD83和CD86,并且是同种异体T细胞活化的有效刺激剂。在一种新的胸腺结节组织培养系统中,原始造血祖细胞也发育为成熟DCs,其中胸腺上皮细胞和成纤维细胞在体外以结节状聚集体形式生长。这些结果表明,人类胸腺基质有效地支持CD34 + CD38 - lin - 脐带血细胞发育为成熟DCs。此外,本报告中描述的培养条件是研究胸腺微环境中人类DCs个体发生的有用系统。