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:Overcoming Resistance to Checkpoint Inhibitors: Natural Killer Cells in Non-Small Cell Lung Cancer.
Overcoming Resistance to Checkpoint Inhibitors: Natural Killer Cells in Non-Small Cell Lung Cancer.
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过去十年,免疫检查点抑制剂(ICI)彻底改变了癌症治疗,其适应证不断扩展至多种肿瘤。非小细胞肺癌(NSCLC)具有较强免疫原性,ICI 已广泛用于早期和晚期治疗线,显著改变患者预后。遗憾的是,并非所有患者都能获益,且任何治疗阶段均可能产生 ICI 耐药。除主要靶细胞 T 淋巴细胞外,肿瘤微环境(TME)中的多种其他细胞还参与肿瘤、基质和免疫细胞之间复杂的相互作用。激活和抑制信号失衡会使 TME 在“抗肿瘤”和“促肿瘤”表型间转换。NK 细胞(NK 细胞)可根据 MHC I(自身或非自身)识别癌细胞,且不依赖抗原呈递,是连接先天与适应性免疫应答的重要环节。目前关于促炎性 NK 细胞在 NSCLC 中作用及其如何影响 ICI 应答的资料有限。NK 细胞表达多种免疫检查点家族配体,例如 PD-1、TIGIT、TIM-3、LAG3、CD96、IL1R8 和 NKG2A。
我们及其他研究者已显示,TME 也可重塑 NK 细胞,通过“蜕膜化”使其转变为促肿瘤、促血管生成的“滋养”表型。这类 NK 细胞表达 CD56、CD9、CD49a 和 CXCR3,CD16 低表达且细胞毒性弱。ICI 治疗期间,肿瘤浸润或肿瘤相关 NK 细胞可对抑制剂产生应答,也可能通过促炎活性抵消其作用。人们日益关注将 NK 细胞作为有前景的治疗靶点,用于过继治疗和嵌合抗原受体(CAR)-NK 技术。本综述分析 NK 细胞在 NSCLC 中功能的现有证据,聚焦其对 ICI 治疗反应和耐药发展的潜在影响,讨论其预后和预测作用及利用 NK 细胞克服 NSCLC 耐药的依据,并展望如何使肺癌中的蜕膜样 NK(dNK)细胞重新极化。
Immune checkpoint inhibitors (ICIs) have revolutionized cancer treatments over the last 10 years, with even increasing indications in many neoplasms. Non-small cell lung cancer (NSCLC) is considered highly immunogenic, and ICIs have found a wide set of applications in this area, in both early and advanced lines of treatment, significantly changing the prognosis of these patients. Unfortunately, not all patients can benefit from the treatment, and resistance to ICIs can develop at any time.
In addition to T lymphocytes, which are the major target, a variety of other cells present in the tumor microenvironment (TME) act in a complex cross-talk between tumor, stromal, and immune cells. An imbalance between activating and inhibitory signals can shift TME from an "anti-" to a "pro-tumorigenic" phenotype and vice versa.
Natural killer cells (NKs) are able to recognize cancer cells, based on MHC I (self and non-self) and independently from antigen presentation. They represent an important link between innate and adaptive immune responses. Little data are available about the role of pro-inflammatory NKs in NSCLC and how they can influence the response to ICIs. NKs express several ligands of the checkpoint family, such as PD-1, TIGIT, TIM-3, LAG3, CD96, IL1R8, and NKG2A.
We and others have shown that TME can also shape NKs, converting them into a pro-tumoral, pro-angiogenic "nurturing" phenotype through "decidualization." The features of these NKs include expression of CD56, CD9, CD49a, and CXCR3; low CD16; and poor cytotoxicity. During ICI therapy, tumor-infiltrating or associated NKs can respond to the inhibitors or counteract the effect by acting as pro-inflammatory.
There is a growing interest in NKs as a promising therapeutic target, as a basis for adoptive therapy and chimeric antigen receptor (CAR)-NK technology. In this review, we analyzed current evidence on NK function in NSCLC, focusing on their possible influence in response to ICI treatment and resistance development, addressing their prognostic and predictive roles and the rationale for exploiting NKs as a tool to overcome resistance in NSCLC, and envisaging a way to repolarize decidual NK (dNK)-like cells in lung cancer.
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