首页> 外文期刊>The Journal of Urology >PTEN knockout prostate cancer as a model for experimental immunotherapy.
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PTEN knockout prostate cancer as a model for experimental immunotherapy.

机译:PTEN基因敲除前列腺癌作为实验性免疫疗法的模型。

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PURPOSE: Testing immunotherapeutic strategies for prostate cancer has been impeded by the lack of relevant tumor models in immunocompetent animals. This opportunity is now provided by the recent development of prostate specific PTEN knockout mice, which show spontaneous development of true adenocarcinoma arising from prostate epithelium and more faithfully recapitulate the human disease than any previous model. We investigated the feasibility of using tumor cells derived from this model to test tumor vaccination and adoptive immunotherapeutic strategies for prostate cancer. MATERIALS AND METHODS: PTEN-CaP8 adenocarcinoma cells derived from the biallelic PTEN knockout prostate cancer model were used to vaccinate nontumor bearing litter mates. Tumor specific effector cells were generated from splenocytes of vaccinated mice by mixed lymphocyte-tumor reactions, and antiproliferative effects and cytokine generation were examined in vitro. The effect of vaccination or adoptive immunotherapy on luciferase marked PTEN-CaP8 subcutaneous tumors was monitored by tumor volumetric measurements and noninvasive bioluminescence imaging. RESULTS: Vaccination of litter mate mice with irradiated PTEN-CaP8 cells showed a significant prophylactic effect against the subsequent tumor challenge. Effector cells harvested from vaccinated litter mates showed significant interferon-gamma secretion upon co-incubation with PTEN-CaP8 target cells and they were capable of efficient target cell growth inhibition in vitro. Intratumor adoptive transfer of effector cells resulted in significant growth inhibition of preestablished prostate tumors in vivo. CONCLUSIONS: The PTEN knockout model serves as a highly useful model in which to investigate tumor cell vaccination and adoptive immunotherapeutic strategies in the context of true adenocarcinoma of the prostate. This model should accelerate efforts to develop effective immunotherapies for human prostate cancer.
机译:目的:由于缺乏免疫功能动物的相关肿瘤模型,阻碍了前列腺癌免疫治疗策略的测试。现在,这种机会是由前列腺特异性PTEN基因敲除小鼠的最新发展提供的,该小鼠显示出由前列腺上皮引起的真正腺癌的自发发展,并且比任何先前的模型更忠实地概括了人类疾病。我们调查了使用衍生自该模型的肿瘤细胞测试前列腺癌的疫苗接种和过继免疫治疗策略的可行性。材料与方法:用双等位基因PTEN基因敲除前列腺癌模型衍生的PTEN-CaP8腺癌细胞用于接种无肿瘤的同窝伴侣。通过混合的淋巴细胞-肿瘤反应从接种的小鼠的脾细胞产生肿瘤特异性效应细胞,并在体外检查抗增殖作用和细胞因子的产生。通过肿瘤体积测量和无创生物发光成像监测了接种疫苗或过继免疫疗法对荧光素酶标记的PTEN-CaP8皮下肿瘤的影响。结果:用辐照过的PTEN-CaP8细胞对同窝小鼠进行疫苗接种显示出对随后的肿瘤攻击的显着预防作用。与PTEN-CaP8靶细胞共孵育后,从接种的同窝动物中收获的效应细胞显示出明显的干扰素-γ分泌,并且它们能够在体外有效抑制靶细胞的生长。效应器细胞的肿瘤内过继转移导致体内预先建立的前列腺肿瘤的显着生长抑制。结论:PTEN基因敲除模型作为一种非常有用的模型,可用于在真正的前列腺腺癌的背景下研究肿瘤细胞的疫苗接种和过继免疫治疗策略。该模型应加快开发针对人类前列腺癌的有效免疫疗法的努力。

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