CAR-T(CAR-T)细胞疗法在非肿瘤性疾病中的应用
Chimeric antigen receptor T (CAR-T) cell therapy in non-oncological diseases.
CAR-T(CAR-T)细胞在血液系统恶性肿瘤中的应用推动了这种免疫治疗形式的显著进展。
CELL INTELLIGENCE · 肿瘤细胞治疗研究
肿瘤细胞治疗研究
英文原题:Co-expression of IL-4/IL-15-based inverted cytokine receptor in CAR-T cells overcomes IL-4 signaling in immunosuppressive pancreatic tumor microenvironment.
Co-expression of IL-4/IL-15-based inverted cytokine receptor in CAR-T cells overcomes IL-4 signaling in immunosuppressive pancreatic tumor microenvironment.
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CAR-T 细胞疗效受到多种肿瘤微环境内在因素的限制。研究人员正在采用多种策略克服这些障碍并提高免疫治疗效果。肿瘤细胞可在肿瘤微环境中释放白细胞介素4(IL-4),并通过与T细胞表面IL-4受体结合,抑制T细胞效应功能。为克服IL-4介导的免疫抑制信号,研究人员设计了一种新型反向细胞因子受体(ICR)。新型4/15NKG2D-CAR由NKG2D型嵌合抗原受体构成,其共表达胞外结构域IL-4R以及跨膜和胞内结构域IL-15R,从而将IL-4R抑制信号转换为下游IL-15R活化信号。该策略在体内外均提高了NKG2D CAR-T 细胞对胰腺肿瘤微环境的疗效。针对IL-4阳性胰腺癌细胞系,4/15NKG2D-CAR-T 细胞表现出更强活化、脱颗粒、细胞因子释放和细胞毒能力。与NKG2D-CAR-T 相比,4/15NKG2D-CAR-T 体外扩增更多、耗竭更少,低分化T细胞表型比例更高。
因此,IL-4R/IL-15R改造CAR-T 可在体内清除更多肿瘤,疗效优于NKG2D-CAR-T。本研究报告了一种可克服实体瘤IL-4介导免疫抑制的新型NKG2D-CAR-T。
The efficacy of CAR-T cell therapy has been hindered by several factors that are intrinsic to the tumor microenvironment. Many strategies are being employed to overcome these barriers and improve immunotherapies efficacy. Interleukin (IL)- 4 is a cytokine released by tumor cells inside the tumor microenvironment and it can oppose T cell effector functions via engagement with the IL-4 receptor on the surface of T cells. To overcome IL-4-mediated immunosuppressive signals, we designed a novel inverted cytokine receptor (ICR).
Our novel CAR construct (4/15NKG2D-CAR), consisted of an NKG2D-based chimeric antigen receptor, co-expressing IL-4R as an extracellular domain and IL-15R as a transmembrane and intracellular domain. In this way, IL-4R inhibitory signals were converted into IL-15R activation signals downstream.
This strategy increased the efficacy of NKG2D-CAR-T cells in the pancreatic tumor microenvironment in vitro and in vivo. 4/15NKG2D-CAR-T cells exhibited increased activation, degranulation, cytokine release, and cytotoxic ability of NKG2D-CAR-T cells against IL-4 + pancreatic cell lines.
Furthermore, 4/15NKG2D-CAR-T cells exhibited more expansion, less exhaustion, and an increased percentage of less differentiated T cell phenotypes in vitro when compared with NKG2D-CAR-T cells. That is why IL-4R/IL-15R-modified CAR-T cells eradicated more tumors in vivo and outperformed NKG2D-CAR-T cells.
Thus, we report here a novel NKG2D-CAR-T cells that could overcome IL-4-mediated immunosuppression in solid tumors.
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