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免疫系统可防止致癌基因失活治疗后移植但非同源抗原性肿瘤的复发。

The immune system prevents recurrence of transplanted but not autochthonous antigenic tumors after oncogene inactivation therapy.

机构信息

Max-Delbrück-Center for Molecular Medicine, Berlin, Germany.

Institute of Veterinary Pathology, Berlin, Germany.

出版信息

Int J Cancer. 2017 Dec 15;141(12):2551-2561. doi: 10.1002/ijc.31009. Epub 2017 Aug 31.

Abstract

Targeted oncogene inactivation by small molecule inhibitors can be very effective but tumor recurrence is a frequent problem in the clinic. Therapy by inactivation of the cancer-driving oncogene in transplanted tumors was shown to be augmented in the presence of T cells. However, these experiments did not take into account the long-term, usually tolerogenic, interaction of de novo malignancies with the immune system. Here, we employed mice, in which SV40 large T (Tag) and firefly luciferase (Luc) as fusion protein (TagLuc) could be regulated with the Tet-on system and upon activation resulted in tumors after a long latency. TagLuc inactivation induced profound tumor regression, demonstrating sustained oncogene addiction. While tumor relapse after TagLuc inactivation was prevented in immunocompetent mice bearing transplanted tumors, autochthonous tumors relapsed or recurred after therapy discontinuation indicating that the immune system that coevolved with the malignancy over an extended period of time lost the potency to mount an efficient anti-tumor immune response. By contrast, adoptively transferred CD8 T cells targeting the cancer-driving oncogene eradicated recurrent autochthonous tumors, highlighting a suitable therapy option in a clinically relevant model.

摘要

通过小分子抑制剂靶向失活致癌基因可能非常有效,但肿瘤复发是临床中的一个常见问题。在存在 T 细胞的情况下,已经证明失活移植肿瘤中驱动癌症的致癌基因的疗法会增强。然而,这些实验没有考虑到新发生的恶性肿瘤与免疫系统之间的长期、通常是耐受的相互作用。在这里,我们使用了小鼠,其中 SV40 大 T(Tag)和萤火虫荧光素酶(Luc)作为融合蛋白(TagLuc)可以通过 Tet-on 系统进行调节,并且在激活后经过长时间潜伏期后会导致肿瘤。TagLuc 失活诱导了深刻的肿瘤消退,证明了持续的致癌基因成瘾。虽然在携带移植肿瘤的免疫功能正常的小鼠中,TagLuc 失活后的肿瘤复发得到了预防,但在治疗停止后,同源肿瘤复发或再次出现,表明与恶性肿瘤在较长时间内共同进化的免疫系统失去了产生有效抗肿瘤免疫反应的能力。相比之下,针对致癌基因的过继转移 CD8 T 细胞根除了复发性同源肿瘤,突出了在临床相关模型中一种合适的治疗选择。

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