Kasai M, Akatsuka Y, Emi N, Taji H, Kohno A, Abe A, Tanimoto M, Kodera Y, Saito H
First Department of Internal Medicine, Nagoya University School of Medicine, Japan.
Int J Hematol. 1999 Feb;69(2):112-8.
We have established a pre-B acute lymphoblastic leukemia (ALL) cell line, NAGL-1, from the bone marrow of a patient diagnosed with pre-B ALL. The patient has been disease-free for the 4 years since allogeneic bone marrow transplantation from her HLA-genotypically identical sister. NAGL-1 showed a pre-B cell phenotype (CD19+, CD10+, c mu+, s mu-) mostly identical to freshly isolated leukemic cells from the patient. This cell line strongly expressed HLA class I and HLA-DR molecules, as well as the costimulatory molecules CD54, CD40, and CD86. Cytotoxic T-lymphocyte (CTL) lines were generated by stimulating the donor-derived peripheral blood mononuclear cells with either irradiated leukemic cells or NAGL-1. Both CTL lines showed specific lysis against NAGL-1 in 51Cr release assays. Lytic activity was partially inhibited by anti-CD8 and anti-HLA class I monoclonal antibodies. Treatment of NAGL-1 with TNF-alpha increased its susceptibility to the CTL line. One CD8+ T cell clone derived from the CTL line killed both the patient phytohemagglutinin (PHA) blasts and NAGL-1 but not the donor PHA blasts, suggesting that the clone recognized the patient-specific minor antigen presented on both PHA blasts and NAGL-1. Utilization of leukemic cell lines could be a useful model for the development of CTL lines and clones for immunological study and potential immunotherapy.
我们从一名被诊断为前B细胞急性淋巴细胞白血病(ALL)的患者骨髓中建立了一个前B细胞急性淋巴细胞白血病细胞系NAGL-1。自接受来自其HLA基因型相同的姐姐的异基因骨髓移植以来,该患者已无病生存4年。NAGL-1表现出前B细胞表型(CD19+、CD10+、cμ+、sμ-),与从该患者新鲜分离的白血病细胞基本相同。该细胞系强烈表达HLA I类和HLA-DR分子,以及共刺激分子CD54、CD40和CD86。通过用照射过的白血病细胞或NAGL-1刺激供体来源的外周血单个核细胞,产生了细胞毒性T淋巴细胞(CTL)系。在51Cr释放试验中,两个CTL系均对NAGL-1表现出特异性裂解。裂解活性被抗CD8和抗HLA I类单克隆抗体部分抑制。用TNF-α处理NAGL-1可增加其对CTL系的敏感性。从CTL系衍生的一个CD8+T细胞克隆可杀死患者的植物血凝素(PHA)刺激的细胞和NAGL-1,但不杀死供体PHA刺激的细胞,这表明该克隆识别在PHA刺激的细胞和NAGL-1上呈现的患者特异性次要抗原。利用白血病细胞系可能是开发用于免疫学研究和潜在免疫治疗的CTL系和克隆的有用模型。