Griffin J D, Meuer S C, Schlossman S F, Reinherz E L
J Immunol. 1984 Oct;133(4):1863-8.
Colony-stimulating factor (CSF) production by a series of cloned human T lymphocyte cell lines was examined by substituting cloned T cells for peripheral blood mononuclear cells in the feeder layer of a double-layer agar CFU-C assay system. Of 12 T cell lines tested, all produced CSF when stimulated by specific antigen, whereas CSF production in the absence of stimulation was generally negligible. In the case of soluble antigen-specific (ragweed or tetanus toxoid) clones, this required both nominal antigen and the appropriate MHC gene product on autologous antigen-presenting cells, whereas in the case of clones specific for EBV-transformed B cell lines (allogeneic or autologous), surface-bound EBV-related antigen and MHC was necessary. When tested in this manner, CSF production by different cloned T cells was heterogeneous in both amount and subclass. Thus, although most clones stimulated growth of granulocyte, monocyte, and eosinophil colonies, certain clones were identified which preferentially stimulated some colony types but not others. This heterogeneity was particularly evident with respect to eosinophil colony production. In addition, a soluble inhibitor of granulocyte colony growth was produced by one clone. These findings provide further support for the notion that antigen-specific T cells may, on activation, regulate myelopoiesis in a precise way, and provide a possible cellular basis for selective eosinophilia, monocytosis, or neutrophilia seen in certain disease states.
通过在双层琼脂CFU-C检测系统的饲养层中用克隆的T细胞替代外周血单核细胞,检测了一系列克隆的人T淋巴细胞系产生集落刺激因子(CSF)的情况。在检测的12个T细胞系中,所有细胞系在受到特异性抗原刺激时都会产生CSF,而在无刺激情况下CSF的产生通常可忽略不计。对于可溶性抗原特异性(豚草或破伤风类毒素)克隆,这需要名义抗原和自体抗原呈递细胞上适当的MHC基因产物,而对于EBV转化的B细胞系(同种异体或自体)特异性克隆,表面结合的EBV相关抗原和MHC是必需的。以这种方式检测时,不同克隆的T细胞产生CSF的情况在数量和亚类上都是异质性的。因此,尽管大多数克隆刺激粒细胞、单核细胞和嗜酸性粒细胞集落的生长,但也鉴定出某些克隆优先刺激某些集落类型而不刺激其他类型。这种异质性在嗜酸性粒细胞集落产生方面尤为明显。此外,一个克隆产生了一种粒细胞集落生长的可溶性抑制剂。这些发现进一步支持了这样一种观点,即抗原特异性T细胞在激活后可能以精确的方式调节骨髓生成,并为某些疾病状态下出现的选择性嗜酸性粒细胞增多、单核细胞增多或中性粒细胞增多提供了可能的细胞基础。