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:The role and novel use of natural killer cells in graft-versus-leukemia reactions after allogeneic transplantation.
The role and novel use of natural killer cells in graft-versus-leukemia reactions after allogeneic transplantation.
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过去数十年间,异基因造血细胞移植(HCT)因支持治疗加强、减低强度预处理(RIC)、人类白细胞抗原(HLA)分型改进,以及移植物抗宿主病(GVHD)预防和治疗策略创新而发生了重大变革。尤其是移植后环磷酰胺(PTCy)的应用,大幅提高了这一挽救生命疗法的安全性和可及性。随着这些进展降低非复发死亡率(NRM),HCT 领域更加重视开发降低复发风险的方法,因为复发是 HCT 后死亡的首要原因。采用 RIC HCT 时,防止复发主要依赖移植物抗白血病(GVL)反应。供者淋巴细胞输注(DLI)、过继细胞疗法、免疫检查点抑制和 HCT 后维持治疗等策略正在研究中,旨在增强或协同 HCT 的 GVL 效应。优化供者选择算法以发挥 GVL 作用,也是活跃的研究领域。许多策略旨在利用 T 细胞效应;数十年来,T 细胞被认为是 GVL 的主要介导者,也是降低复发研究的重点。
然而,人们越来越关注利用自然杀伤(NK)细胞产生强效抗肿瘤作用。相比 T 细胞介导疗法,NK 细胞策略的潜在优势是除减少复发外,还可能降低 NRM。NK 细胞可减少感染风险,且不增加 GVHD 风险;通过识别并清除癌细胞,它们可能在降低 NRM 的同时减少复发。多数聚焦 T 细胞的复发预防策略必须权衡降低复发的益处与 GVHD 导致 NRM 风险升高之间的关系。相比之下,NK 细胞有可能同时降低两类风险,从而显著提高生存获益。本综述将介绍 NK 细胞在 GVL 中的作用、NK 细胞匹配或不匹配的优化,以及 NK 细胞疗法快速发展的研究领域,如过继转移和嵌合抗原受体(CAR)NK 细胞。
Allogeneic hematopoietic cell transplantation (HCT) has transformed over the past several decades through enhanced supportive care, reduced intensity conditioning (RIC), improved human leukocyte antigen (HLA) typing, and novel graft-versus-host disease (GVHD)-prevention and treatment strategies. Most notably, the implementation of post-transplantation cyclophosphamide (PTCy) has dramatically increased the safety and availability of this life-saving therapy. Given reductions in nonrelapse mortality (NRM) with these advances, the HCT community has placed even greater emphasis on developing ways to reduce relapse - the leading cause of death after HCT.
When using RIC HCT, protection from relapse relies predominantly on graft-versus-leukemia (GVL) reactions. Donor lymphocyte infusion (DLI), adoptive cellular therapy, checkpoint inhibition, and post-HCT maintenance strategies represent approaches under study that aim to augment or synergize with the GVL effects of HCT.
Optimizing donor selection algorithms to leverage GVL represents another active area of research. Many of these strategies seek to harness the effects of T cells, which for decades were felt to be the primary mediators of GVL and the focus of investigation in relapse reduction.
However, there is growing interest in capitalizing on the ability of natural killer (NK) cells to yield potent anti-tumor effects. A potential advantage of NK cell-based approaches over T cell-mediated is the potential to reduce NRM in addition to relapse. By decreasing infection, without increasing the risk of GVHD, NK cells may mitigate NRM, while still yielding relapse reduction through identification and clearance of cancer cells.
Most T cell-focused relapse-prevention strategies must weigh the benefits of relapse reduction against the increased risk of NRM from GVHD. In contrast, NK cells have the potential to reduce both, potentially tipping the scales significantly in favor of survival.
Here, we will review the role of NK cells in GVL, optimization of NK cell match or mismatch, and burgeoning areas of research in NK cell therapy such as adoptive transfer and chimeric antigen receptor (CAR) NK cells.
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