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:TIGIT Expression on Activated NK Cells Correlates with Greater Anti-Tumor Activity but Promotes Functional Decline upon Lung Cancer Exposure: Implications for Adoptive Cell Therapy and TIGIT-Targeted Therapies.
TIGIT Expression on Activated NK Cells Correlates with Greater Anti-Tumor Activity but Promotes Functional Decline upon Lung Cancer Exposure: Implications for Adoptive Cell Therapy and TIGIT-Targeted Therapies.
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靶向TIGIT的治疗因强有力的临床前和早期临床结果而备受关注,尤其是与抗PD-(L)1治疗联合时。然而,该联合方案在III期试验中未能达到PFS终点。
我们对TIGIT的大部分理解来自T细胞功能的研究。然而,这种抑制性受体在癌症中的NK细胞上往往以相同或更高的程度上调。小鼠模型研究已证明,TIGIT抑制NK细胞并促进耗竭,其对肿瘤控制的影响也依赖于NK细胞。
然而,评估TIGIT对人NK细胞(hNK)功能影响的研究有限,尤其是在肺癌中。大多数研究使用NK细胞系或测试TIGIT阻断以重新激活从癌症患者中获得的耗竭细胞。为了推进治疗进展,更好地理解TIGIT在活化hNK细胞背景下的作用至关重要,这与耗竭NK细胞不同,并且在可能与TIGIT阻断联合使用的过继性NK细胞治疗背景下尤为关键。
在本研究中,在肺癌背景下,于体外评估了TIGIT阻断对人离体扩增NK细胞抗肿瘤活性的影响。与静息NK细胞相比,TIGIT在活化和/或扩增NK细胞上的表达更高。与TIGIT-细胞相比,更多的TIGIT+ NK细胞表达主要活化受体并发挥抗肿瘤反应,表明具有更强抗肿瘤功能的NK细胞表达更多TIGIT。
然而,暴露于PVR+肿瘤后长期的TIGIT结合会下调扩增NK细胞的细胞毒性功能,而加入TIGIT阻断则增加了细胞毒性,恢复了对PVR阳性靶点的效应功能,并上调了免疫炎症相关基因集。这些综合结果表明,TIGIT阻断能够在暴露于PVR+肿瘤期间保持NK细胞的激活状态。这些结果支持以下观点:功能性的NK细胞区室对抗肿瘤反应至关重要,且抗TIGIT/过继性NK细胞联合疗法具有改善预后的潜力。
Treatments targeting TIGIT have gained a lot of attention due to strong preclinical and early clinical results, particularly with anti-PD-(L)1 therapeutics.
However, this combination has failed to meet progression-free survival endpoints in phase III trials. Most of our understanding of TIGIT comes from studies of T cell function. Yet, this inhibitory receptor is often upregulated to the same, or higher, extent on NK cells in cancers. Studies in murine models have demonstrated that TIGIT inhibits NK cells and promotes exhaustion, with its effects on tumor control also being dependent on NK cells.
However, there are limited studies assessing the role of TIGIT on the function of human NK cells (hNK), particularly in lung cancer. Most studies used NK cell lines or tested TIGIT blockade to reactivate exhausted cells obtained from cancer patients. For therapeutic advancement, a better understanding of TIGIT in the context of activated hNK cells is crucial, which is different than exhausted NK cells, and critical in the context of adoptive NK cell therapeutics that may be combined with TIGIT blockade.
In this study, the effect of TIGIT blockade on the anti-tumor activities of human ex vivo-expanded NK cells was evaluated in vitro in the context of lung cancer. TIGIT expression was higher on activated and/or expanded NK cells compared to resting NK cells. More TIGIT + NK cells expressed major activating receptors and exerted anti-tumor response as compared to TIGIT - cells, indicating that NK cells with greater anti-tumor function express more TIGIT.
However, long-term TIGIT engagement upon exposure to PVR + tumors downregulated the cytotoxic function of expanded NK cells while the inclusion of TIGIT blockade increased cytotoxicity, restored the effector functions against PVR-positive targets, and upregulated immune inflammation-related gene sets.
These combined results indicate that TIGIT blockade can preserve the activation state of NK cells during exposure to PVR + tumors. These results support the notion that a functional NK cell compartment is critical for anti-tumor response and anti-TIGIT/adoptive NK cell combinations have the potential to improve outcomes.
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