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Prolongation of the survival of breast cancer-bearing mice immunized with GM-CSF-secreting syngeneic/allogeneic fibroblasts transfected with a cDNA expression library from breast cancer cells

机译:用分泌GM-CSF的同基因/同基因成纤维细胞免疫乳腺癌细胞的cDNA表达文库转染的乳腺癌小鼠的存活期延长

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摘要

Breast cancer cells, like other types of neoplastic cells, form weakly immunogenic tumor-associated antigens. The antigenic properties of the tumor-associated antigens can be enhanced if they are expressed by highly immunogenic cells. In this study, a cancer vaccine was prepared by transfer of a cDNA expression library from SB5b breast carcinoma into mouse fibroblast cells of C3H/He mouse origin (H-2(k)), that had been previously modified to secrete GM-CSF and to express allogeneic class I-determinants (H-2(b)). The transfected syngeneic/allogeneic fibroblasts secreting GM-CSF were used as a vaccine in C3H/He mice. Robust cell-mediated immunity toward the breast cancer cells was generated in mice immunized with the cDNA-based vaccine. The immunity, mediated predominantly by CD8(+) T lymphocytes, was directed toward the breast cancer cells, but not against either of two other non-cross-reactive neoplasms of C3H/He mice. The immunity was sufficient to prolong the survival of mice with established breast cancer. Among other advantages, preparation of the vaccine by cDNA-transfer into a fibroblast cell line enabled the recipient cells to be modified in advance of DNA-transfer to augment their immunogenic properties. As the transferred DNA is replicated as the transfected cells divide, the vaccine could be prepared from microgram quantities of tumor tissue.
机译:乳腺癌细胞与其他类型的肿瘤细胞一样,形成免疫原性弱的肿瘤相关抗原。如果肿瘤相关抗原由高度免疫原性细胞表达,则可以增强它们的抗原特性。在这项研究中,通过将cDNA表达文库从SB5b乳腺癌转移到C3H / He小鼠来源的成纤维细胞(H-2(k))中制备了癌症疫苗,该细胞先前经过修饰可以分泌GM-CSF和表达同种异体I类决定簇(H-2(b))。分泌GM-CSF的转染的同基因/异基因成纤维细胞被用作C3H / He小鼠的疫苗。用基于cDNA的疫苗免疫的小鼠产生了针对乳腺癌细胞的强大的细胞介导免疫力。主要由CD8(+)T淋巴细胞介导的免疫针对乳腺癌细胞,而不针对C3H / He小鼠的其他两个非交叉反应性肿瘤。免疫力足以延长患有乳腺癌的小鼠的存活。除其他优点外,通过将cDNA转移到成纤维细胞系中制备疫苗使得接受者细胞可以在DNA转移之前被修饰以增强其免疫原性。当转移的DNA随着转染的细胞分裂而复制时,可以从微克量的肿瘤组织中制备疫苗。

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