重组和合成形式的模型肿瘤相关抗原诱导的细胞毒性T淋巴细胞的抗肿瘤活性。

M Wang, P W Chen, V Bronte, S A Rosenberg, N P Restifo
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引用次数: 29

摘要

近年来,CD8+ T淋巴细胞(TCD8+)识别的肿瘤相关抗原(TAAs)的克隆使得利用重组和合成形式的TAAs产生具有抗肿瘤活性的TCD8+成为可能。为了在小鼠模型中探索新的治疗策略,我们用lacZ基因对实验性小鼠肿瘤CT26(H-2d)进行了逆转录转导,该基因编码我们的模型TAA, β -半乳糖苷酶(β -gal)。转导细胞系CT26。CL25,在正常的、免疫功能正常的动物体内生长得和亲本细胞系一样快,一样致命。为了利用我们的TAA模型的纯重组和合成形式诱导针对我们的TAA模型的TCD8+,我们合成了一个9个氨基酸的β -gal长免疫优势肽(TPH-PARIGL),对应于氨基酸残基876-884,已知由Ld主要组织相容性复合体(MHC) I类分子呈现,以及一个编码全长β -gal蛋白的重组痘苗病毒(VJS6)。从naïve小鼠获得并与β -半乳糖肽共培养的脾细胞不能在原代离体培养中扩增。然而,用VJS6而不是对照重组痘苗病毒免疫的小鼠,产生了能够特异性裂解CT26的脾细胞。与β -半乳糖肽共培养后的体外CL25。最重要的是,这些细胞的过继性转移可以有效地治疗3天大的肺转移瘤小鼠。这些观察结果表明,使用该抗原的纯重组和合成形式可以产生针对模型TAA的治疗性TCD8+。这些发现为一种潜在有用的免疫治疗策略指明了道路,最近克隆了由人类恶性肿瘤表达的免疫原性TAAs,使之成为可能。
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Anti-tumor activity of cytotoxic T lymphocytes elicited with recombinant and synthetic forms of a model tumor-associated antigen.

The recent cloning of tumor-associated antigens (TAAs) recognized by CD8+ T lymphocytes (TCD8+) has made it possible to use recombinant and synthetic forms of TAAs to generate TCD8+ with anti-tumor activity. To explore new therapeutic strategies in a mouse model, we retrovirally transduced the experimental murine tumor CT26(H-2d), with the lacZ gene encoding our model TAA, beta-galactosidase (beta-gal). The transduced cell line, CT26.CL25, grew as rapidly and as lethally as the parental cell line in normal, immunocompetent animals. In an attempt to elicit TCD8+ directed against our model TAA by using purely recombinant and synthetic forms of our model TAA, we synthesized a nine-amino-acid long immunodominant peptide of beta-gal (TPH-PARIGL), corresponding to amino acid residues 876-884, which was known to be presented by the Ld major histocompatibility complex (MHC) class I molecule, and a recombinant vaccinia virus encoding the full-length beta-gal protein (VJS6). Splenocytes obtained from naïve mice and co-cultured with beta-gal peptide could not be expanded in primary ex vivo cultures. However, mice immunized with VJS6, but not with a control recombinant vaccinia virus, yielded splenocytes that were capable of specifically lysing CT26.CL25 in vitro after co-culture with beta-gal peptide. Most significantly, adoptive transfer of these cells could effectively treat mice bearing 3-day-old established pulmonary metastases. These observations show that therapeutic TCD8+ directed against a model TAA could be generated by using purely recombinant and synthetic forms of this antigen. These findings point the way to a potentially useful immunotherapeutic strategy, which has been made possible by the recent cloning of immunogenic TAAs that are expressed by human malignancies.

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