Park J H, Cho E W, Lee Y J, Hahm K S, Kim K L
Peptide Engineering Research Unit, Korea Research Institute of Bioscience and Biotechnology (KRIBB), Taejon, Korea.
Hybridoma. 1997 Dec;16(6):551-6. doi: 10.1089/hyb.1997.16.551.
Macrophages are important constituents of the immune system by exerting phagocytosis on invading pathogens as well as secreting various immunoregulatory factors. Generation of human macrophage hybridoma has not been possible so far due to the lack of an appropriate fusion partner cell line. In the present study, an 8'-azaguanine resistant cell line, termed HL-60R, was established by drug selection of the promyelocytic cell line HL-60. This novel cell line showed resistance to high concentrations of 8'-azaguanine and was sensitive to aminopterin. These characteristics make it suitable for serving as a potential fusion partner cell line in the development of macrophage hybridoma. Cell-surface analysis by FACS revealed that HL-60R cells per se do not express MHC-class II molecules or the macrophage marker, CD11b. PEG-mediated fusion of HL-60R was performed with PBMC-derived human macrophages. Fluorescence labelling of ex vivo isolated macrophages prior to fusion and subsequent FACS analysis showed that PEG-4000 is a more effective fusion agent than PEG-1500. The generation of this novel fusion partner cell line opens the possibility for development of human macrophage hybridoma or other cell lines from myelocytic origin. Such hybridoma clones will not only enable a more convenient study of these cell but will also provide an excellent host site for the proper production and expression of various recombinant proteins from myelocytic origin in vitro.
巨噬细胞是免疫系统的重要组成部分,可对入侵病原体进行吞噬作用,并分泌各种免疫调节因子。由于缺乏合适的融合伴侣细胞系,迄今为止人类巨噬细胞杂交瘤的产生尚不可能。在本研究中,通过对早幼粒细胞系HL-60进行药物筛选,建立了一种对8'-氮杂鸟嘌呤具有抗性的细胞系,称为HL-60R。这种新型细胞系对高浓度的8'-氮杂鸟嘌呤具有抗性,对氨基蝶呤敏感。这些特性使其适合作为巨噬细胞杂交瘤开发中潜在的融合伴侣细胞系。通过荧光激活细胞分选术(FACS)进行的细胞表面分析显示,HL-60R细胞本身不表达MHC-II类分子或巨噬细胞标志物CD11b。用PBMC来源的人巨噬细胞进行HL-60R的聚乙二醇(PEG)介导的融合。在融合前对离体分离的巨噬细胞进行荧光标记,随后的FACS分析表明,PEG-4000是比PEG-1500更有效的融合剂。这种新型融合伴侣细胞系的产生为人类巨噬细胞杂交瘤或其他髓细胞来源的细胞系的开发开辟了可能性。这样的杂交瘤克隆不仅将使对这些细胞的研究更加方便,而且还将为体外从髓细胞来源正确生产和表达各种重组蛋白提供一个优良的宿主位点。