RNF43 p.G659fs 通过 PI3K/AKT/mTOR 信号通路和 HLA-E 上调导致 MSI-high 结直肠癌中 NK 细胞功能障碍
RNF43 p.G659fs leads to natural killer cell dysfunction in MSI-high colorectal cancer through PI3K/AKT/mTOR signaling and HLA-E up-regulation.
CELL INTELLIGENCE · 肿瘤细胞治疗研究
肿瘤细胞治疗研究
英文原题:Oxygen-carrying nanoemulsions and respiratory hyperoxia eliminate tumor hypoxia-induced immunosuppression.
Oxygen-carrying nanoemulsions and respiratory hyperoxia eliminate tumor hypoxia-induced immunosuppression.
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缺氧/缺氧诱导因子1α驱动的免疫抑制转录以及通过A2A腺苷受体(A2AR)升高的cAMP信号传导,是使免疫逃逸得以实现的主要肿瘤保护通路。近期在对所有其他治疗均难治的患者中,阻断腺苷生成酶CD73和A2AR所取得的令人鼓舞的临床结果,已证实靶向缺氧-腺苷能信号传导的重要性。
我们报告了一种使用携氧纳米乳剂(全氟化碳血液替代品)靶向缺氧-腺苷能免疫抑制上游阶段的可行方法。我们表明,氧合剂治疗(a)消除肿瘤缺氧,(b)提高内源性产生和过继转移T细胞的疗效,从而(c)促进不同解剖位置肿瘤的消退。
我们表明,T细胞和NK细胞均避开缺氧肿瘤区域,而通过氧合剂治疗逆转缺氧可因肿瘤微环境(TME)的重编程而增加活化T细胞和NK细胞的瘤内浸润。
因此,将氧合剂与补充氧气联合重新定位使用,可能通过预防缺氧-腺苷能抑制、促进免疫细胞浸润和增强效应应答来改善当前的癌症免疫治疗。这些数据还提示,在过继细胞治疗或其他形式的免疫治疗之前,用氧合剂治疗对患者进行预处理,可能将TME从免疫抑制性重编程为免疫允许性。
Hypoxia/hypoxia-inducible factor 1α-driven immunosuppressive transcription and cAMP-elevating signaling through A2A adenosine receptors (A2ARs) represent a major tumor-protecting pathway that enables immune evasion. Recent promising clinical outcomes due to the blockade of the adenosine-generating enzyme CD73 and A2AR in patients refractory to all other therapies have confirmed the importance of targeting hypoxia-adenosinergic signaling.
We report a feasible approach to target the upstream stage of hypoxia-adenosinergic immunosuppression using an oxygen-carrying nanoemulsion (perfluorocarbon blood substitute).
We show that oxygenation agent therapy (a) eliminates tumor hypoxia, (b) improves efficacy of endogenously developed and adoptively transferred T cells, and thereby (c) promotes regression of tumors in different anatomical locations.
We show that both T cells and NK cells avoid hypoxic tumor areas and that reversal of hypoxia by oxygenation agent therapy increases intratumoral infiltration of activated T cells and NK cells due to reprogramming of the tumor microenvironment (TME).
Thus, repurposing oxygenation agents in combination with supplemental oxygen may improve current cancer immunotherapies by preventing hypoxia-adenosinergic suppression, promoting immune cell infiltration and enhancing effector responses. These data also suggest that pretreating patients with oxygenation agent therapy may reprogram the TME from immunosuppressive to immune-permissive prior to adoptive cell therapy, or other forms of immunotherapy.
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