Laatikainen A, Karjalainen H, Sarkkinen H, Syrjänen K, Mäntyjärvi R
Department of Clinical Microbiology, University of Kuopio, Finland.
Cancer Immunol Immunother. 1990;30(6):351-6. doi: 10.1007/BF01786884.
The immunogenicity and immunosensitivity of primary mouse cell lines transformed by bovine papilloma virus 1 (BPV1) DNA were studied in a syngeneic mouse model by determining cell-mediated cytotoxicity in the spleens of mice immunized with the transformed cells. One of the cell lines induced the generation of cell-line-specific Thy1.2-positive cytotoxic effector cells. However, most of the cell lines tested induced the generation of Thy1.2-positive effector cells, which in addition to BPV1-transformed cells were able to lyse a syngeneic cell line transformed by methylcholanthrene. The lysis of BPV1- and methylcholanthrene-transformed cell lines was mediated by recognition of the same antigenic determinants expressed on these cells, and all the BPV1-transformed cell lines were sensitive to lysis by these nonspecific effector cells of the lymphokine-activated killer (LAK) type.
通过在同基因小鼠模型中测定用转化细胞免疫的小鼠脾脏中的细胞介导细胞毒性,研究了牛乳头瘤病毒1(BPV1)DNA转化的原代小鼠细胞系的免疫原性和免疫敏感性。其中一个细胞系诱导产生细胞系特异性的Thy1.2阳性细胞毒性效应细胞。然而,大多数测试的细胞系诱导产生Thy1.2阳性效应细胞,这些细胞除了能裂解BPV1转化的细胞外,还能裂解经甲基胆蒽转化的同基因细胞系。BPV1和甲基胆蒽转化细胞系的裂解是通过识别这些细胞上表达的相同抗原决定簇介导的,并且所有BPV1转化细胞系对淋巴因子激活的杀伤(LAK)型非特异性效应细胞的裂解敏感。