通过靶向肿瘤相关巨噬细胞的嵌合受体工程化溶瘤病毒重振内源性抗肿瘤免疫
Rejuvenating endogenous antitumor immunity via a chimeric receptor-engineered oncolytic virus targeting tumor-associated macrophages.
我们的研究结果定义了一个精准溶瘤平台,该平台能够解除TAM介导的免疫抑制,同时增强适应性免疫,为癌症免疫治疗提供了一条有前景的转化途径。
英文原题:Treatment with oncolytic vaccinia virus infects tumor-infiltrating regulatory and exhausted T cells.
这些发现表明,OV在治疗后不仅能感染恶性细胞,还能感染其他细胞,且这种感染可能是OV机制的重要组成部分。我们发现,在治疗后早期时间点,耗竭的CD8+ T细胞和调节性CD4+ T细胞优先被感染并随后死亡。当T细胞死亡被减轻时,小鼠对VV治疗反应不佳,这表明这些细胞群体的删除对于VV的治疗反应至关重要。
溶瘤病毒(OVs)是增加免疫细胞浸润到冷肿瘤的一种有吸引力的方法。虽然OVs被设计为选择性感染肿瘤细胞,但有证据表明它们可以感染肿瘤中的其他非恶性细胞。我们试图确定溶瘤痘苗病毒(VV)是否能感染肿瘤中的淋巴细胞,如果能,这与治疗效果有何关联。
为了研究VV对淋巴细胞的感染,我们在小鼠头颈部鳞状细胞癌肿瘤模型中使用了一种表达GFP的VV。我们还进行了体外感染研究,以确定VV感染淋巴细胞的机制和后果。
我们的研究结果表明,VV在瘤内治疗后具备感染部分免疫细胞的能力,其中最显著的是T细胞。值得注意的是,这种感染优先发生于倾向于驻留在缺氧环境中的终末分化T细胞。T细胞的感染既导致T细胞产生病毒,也导致这些细胞最终死亡。使用一种在所有T细胞中过表达抗凋亡蛋白Bcl2的小鼠模型,我们发现,与同窝对照小鼠相比,在MEER肿瘤中减少VV感染后的T细胞死亡会减少完全消退的数量并缩短生存时间。
BACKGROUND: Oncolytic viruses (OVs) are an attractive way to increase immune infiltration into an otherwise cold tumor. While OVs are engineered to selectively infect tumor cells, there is evidence that they can infect other non-malignant cells in the tumor. We sought to determine if oncolytic vaccinia virus (VV) can infect lymphocytes in the tumor and, if so, how this was linked to therapeutic efficacy. METHODS: To investigate infection of lymphocytes by VV, we used a GFP reporting VV in a murine head and neck squamous cell carcinoma tumor model. We also performed in vitro infection studies to determine the mechanism and consequences of VV lymphocyte infection by VV. RESULTS: Our findings show that VV carries the capacity to infect proportions of immune cells, most notably T cells, after intratumoral treatment. Notably, this infection is preferential to terminally differentiated T cells that tend to reside in hypoxia. Infection of T cells leads to both virus production by the T cells as well as the eventual death of these cells. Using a mouse model which overexpressed the antiapoptotic protein Bcl2 in all T cells, we found that reducing T cell death following VV infection in MEER tumors reduced the number of complete regressions and reduced survival time compared with littermate control mice. CONCLUSIONS: These findings suggest that OVs are capable of infecting more than just malignant cells after treatment, and that this infection may be an important part of the OV mechanism. We found that exhausted CD8+ T cells and regulatory CD4+ T cells were preferentially infected at early timepoints after treatment and subsequently died. When cell death in T cells was mitigated, mice responded poorly to VV treatment, suggesting that the deletion of these populations is critical to the therapeutic response to VV.
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