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.
肿瘤细胞治疗研究
英文原题:NK cell-based immunotherapy.
NK cell-based immunotherapy.
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NK细胞迅速成为癌症免疫治疗的重要平台。与T细胞不同,NK细胞通过整合抑制性和激活性受体信号识别转化细胞,因此可开发异基因“现货型”疗法,且无移植物抗宿主病风险,细胞因子释放综合征和神经毒性发生率也较低。通过改进异基因NK细胞来源,尤其是脐带血和诱导多能干细胞来源细胞,优化离体活化和扩增、CAR工程化,并与新型衔接器联合,已获得具有临床应用潜力且安全性良好的产品,显示出令人鼓舞的活性。
然而,体内持久性有限、宿主排斥异基因细胞以及向实体瘤迁移效率低等障碍仍然存在。当前进展方向包括多抗原及逻辑门控CAR平台、诱导型安全开关、细胞因子装甲,以及通过代谢和转录重编程改善NK细胞适应性。随着NK细胞疗法进入临床,仍需研究其与免疫检查点抑制剂、小分子激酶抑制剂、化疗和放疗的合理联合方案。NK细胞属于先天免疫系统。它们与T细胞具有相同的细胞毒机制,但无需既往接触抗原;其细胞毒性最终取决于每个NK细胞独有的一系列激活性和抑制性受体之间的平衡。本综述将考察治疗用NK细胞的来源,以及如何改造NK细胞使其有效杀伤癌细胞,并讨论开发有效异基因NK细胞疗法所面临的挑战。
我们还将回顾解决这些问题的先进NK细胞基因工程技术,特别关注CAR-NK细胞及未来进展方向。
NK cells have rapidly become a leading platform for cancer immunotherapy. Unlike T cells, NK cells recognize transformed cells through integrated signals from inhibitory and activating receptors, enabling allogeneic "off-the-shelf" therapies without risk of graft-versus-host disease and low rates of cytokine release syndrome and neurotoxicity.
Refinement in sourcing of allogenic NK cells, especially umbilical cord blood and induced pluripotent stem cells, ex vivo activation and expansion, CAR engineering, and combinations with novel engagers have resulted in clinically applicable products with encouraging activity and excellent safety.
However, barriers remain, including limited in vivo persistence, host rejection of allogeneic cells, and inefficient trafficking into solid tumors. Venues of progress include multiantigen and logic-gated CAR platforms, inducible safety switches, cytokine armoring, and metabolic and transcriptional rewiring to improve NK fitness. As NK cell therapies progress into the clinic, exploration of rational combinations with checkpoint inhibitors, small-molecule kinase inhibitors, chemotherapy, and radiotherapy warrant study.
NK cells are part of the innate immune system. They share their cytotoxic mechanisms with T cells, but in contrast to these, NK cells don t require a previous exposure to antigen and their cytotoxicity ultimately depends on the balance of an array of activating and inhibitory receptors that is unique to each NK cell. This review will examine the sources of the NK cells for therapeutic use and how NK cells have been modified to effectively kill cancer cells. The challenges to developing effective allogeneic NK cell-based therapy will be discussed.
We will review advanced genetic engineering of the NK cells to address these problems with a particular focus on CAR-NK cells, and future directions of progress.
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