CELL INTELLIGENCE · 肿瘤细胞治疗研究
肿瘤细胞治疗研究
英文原题:MYC inhibition reprograms tumor immune microenvironment by recruiting T lymphocytes and activating the CD40/CD40L system in osteosarcoma.
MYC inhibition reprograms tumor immune microenvironment by recruiting T lymphocytes and activating the CD40/CD40L system in osteosarcoma.
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免疫检查点阻断(ICB)疗法的疗效取决于肿瘤微环境中足够多的已致敏肿瘤特异性细胞毒性T淋巴细胞(CTL)的浸润和激活。然而,包括骨肉瘤在内的许多肿瘤类型主要呈现免疫荒漠或免疫排斥表型,其特征是缺乏TIL(肿瘤浸润淋巴细胞)以及对ICB单药治疗反应不佳。
因此,迫切需要新的治疗策略来克服这些障碍。在本研究中,我们发现c-Myc癌基因的表达与骨肉瘤中T细胞浸润率呈负相关。在免疫健全的同系小鼠骨肉瘤模型(K7M2)中,使用JQ-1对c-Myc进行药理学抑制可显著降低肿瘤负荷并改善总生存期。机制研究揭示,JQ-1给药显著重编程了K7M2肿瘤内的肿瘤免疫微环境(TIME)。一方面,JQ-1可通过增加T细胞招募趋化因子的表达和分泌,促进T细胞向肿瘤内转运。另一方面,JQ-1能够通过CD40/CD40L共刺激通路促进抗原呈递树突状细胞与T细胞之间的串扰,从而导致肿瘤特异性CTL的激活。抗PD-1抗体与JQ-1联合治疗比任一单药治疗均产生更明显的肿瘤消退,显示出明显的协同效应。这些发现首次揭示了抑制c-Myc可通过多种方式促进骨肉瘤中T细胞的浸润和激活,为调控TIME提供了组合拳。
本研究也为确立c-Myc抑制剂与ICB联合给药作为骨肉瘤患者的新型治疗方案提供了依据。
The efficacy of immune checkpoint blockade (ICB) therapy depends on sufficient infiltration and activation of primed tumor-specific cytotoxic T lymphocytes (CTLs) in the tumor microenvironment.
However, many tumor types, including osteosarcoma, mainly display immune-desert or immune-excluded phenotypes, which are characterized by a lack of tumor-infiltrating lymphocytes and a poor response to ICB monotherapy.
Thus, novel therapeutic strategies are urgently needed to surmount these obstacles. In this study, we found that the expression of the c-Myc oncogene is negatively correlated with the T cell infiltration rate in osteosarcoma. Pharmacological inhibition of c-Myc with JQ-1 significantly reduced tumor burden and improved overall survival in an immunocompetent syngeneic murine model of osteosarcoma (K7M2). A mechanistic study revealed that JQ-1 administration dramatically reprogrammed the tumor immune microenvironment (TIME) within K7M2 tumors.
On the one hand, JQ-1 can promote T cell trafficking into tumors by increasing the expression and secretion of T cell-recruiting chemokines. On the other hand, JQ-1 is capable of facilitating crosstalk between antigen-presenting dendritic cells and T cells through the CD40/CD40L costimulatory pathway, leading to activation of tumor-specific CTLs. Combined treatment with anti-PD-1 antibody and JQ-1 resulted in more pronounced tumor regression than either monotherapy, showing an obvious synergistic effect.
These findings uncover for the first time that c-Myc inhibition can promote T cell infiltration and activation in osteosarcoma in multiple ways, delivering a one-two punch for modulating TIME. The present work also provides the basis for establishing c-Myc inhibitor and ICB coadministration as a novel therapeutic regimen for patients with osteosarcoma.
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