通过mRNA表达谱鉴定肿瘤相关抗原作为肿瘤排斥表位。

Marie Louise Andersen, Morten Ruhwald, Mette Thorn, Anders Elm Pedersen, Susanne Mathiassen, Soren Buus, Mogens H Claesson
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引用次数: 17

摘要

研究了p53-/-胸腺瘤(SM7)细胞中6种潜在过表达蛋白衍生的13种h -2b结合肽在接种SM7肿瘤细胞小鼠中的免疫原性和疫苗诱导的肿瘤生长预防作用。其中6种多肽在免疫后产生特异性CTL反应,但其中只有2种多肽(RAD23-31和RAD24-31)能够产生弱的疫苗诱导的保护作用,防止过继性肿瘤生长。SM7接种的小鼠用抗抑制性T细胞信号转导分子CTLA4的阻断抗体处理后,似乎可以延缓肿瘤的发生,这表明SM7胸腺瘤细胞被宿主的适应性免疫系统识别。然而,预防性接种RAD23-31和RAD24-31肽联合抗ctla4 Ab治疗并没有提高肿瘤的耐药性。我们的数据表明,通过p53-/-胸腺瘤细胞的mRNA表达谱鉴定,接种来自潜在过表达肿瘤蛋白的免疫原性肽最多只能产生微弱的肿瘤保护作用,因此对这种检测新肿瘤排斥表位的方法提出了质疑。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Tumor-associated antigens identified by mRNA expression profiling as tumor rejection epitopes.

Tumor-associated antigens identified by mRNA expression profiling as tumor rejection epitopes.

Tumor-associated antigens identified by mRNA expression profiling as tumor rejection epitopes.

Tumor-associated antigens identified by mRNA expression profiling as tumor rejection epitopes.

Thirteen H-2b-binding peptides derived from six potentially overexpressed proteins in p53-/- thymoma (SM7) cells were studied for immunogenecity and vaccine-induced prevention of tumor growth in mice inoculated with SM7 tumor cells. Six of the peptides generated specific CTL responses after immunization, but only two of these peptides (RAD23-31 and RAD24-31) were capable of generating a weak vaccination-induced protection against adoptive tumor growth. SM7 inoculated mice treated with a blocking antibody against the inhibitory T cell signal transducing molecule CTLA4 appeared to delay tumor take, suggesting that SM7 thymoma cells are recognized by the adaptive immune system of the host. However, prophylactic vaccination with RAD23-31 and RAD24-31 peptides combined with anti-CTLA4 Ab treatment and did not improve tumor resistance. Our data would indicate that vaccination with immunogenic peptides derived from potentially overexpressed tumor proteins, as identified by mRNA expression profiling of p53-/- thymoma cells, at best results in a weak tumor protection thus questioning this way of detection of new tumor rejection epitopes.

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