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.
CELL INTELLIGENCE · 肿瘤细胞治疗研究
肿瘤细胞治疗研究
英文原题:Installation of dominant-negative mutations in FAS and TGFβR2 via base editing in primary T cells.
Installation of dominant-negative mutations in FAS and TGFβR2 via base editing in primary T cells.
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工程化T细胞过继转移(ACT)可有效治疗B细胞恶性肿瘤,但在实体瘤治疗中进展受阻,原因是免疫抑制性肿瘤微环境(TME)。FAS配体(FASL)和转化生长因子(TGF-β)是TME中导致T细胞功能障碍的关键介质;在T细胞中表达相应受体的显性负性(dn)形式,可提高实体瘤模型中的抗肿瘤疗效。
然而,直接靶向内源性基因更适合多重编辑,也能减少与野生型等位基因的竞争。本研究在原代人T细胞中采用碱基编辑(BE),引入天然存在的显性负性FAS和TGFβR2突变。体外存活和增殖实验显示,BE编辑的T细胞可抵抗FAS和TGF-β信号引起的促凋亡和抗增殖作用。通过BE引入dn TGFβR2或dn FAS的CAR-T 细胞细胞毒性增强;与对照相比,表达dn TGFβR2的CAR-T 细胞持续存在能力提高,耗竭表型标志物表达减少。
此外,在多项功能检测中,BE工程化dn CAR-T 细胞优于慢病毒介导的互补DNA过表达细胞。鉴于BE效率较高且适合多重编辑,该方法可用于开发克服实体瘤中T细胞功能障碍所需的工程化策略。
Adoptive cell transfer (ACT) of engineered T cells is effective against B cell malignancies but has faltered against solid tumors due to the immunosuppressive tumor microenvironment (TME). FAS ligand (FASL) and transforming growth factor (TGF- ) are key mediators of T cell dysfunction in the TME and overexpressing dominant negative (dn) forms of their receptors in T cells increases anti-tumor efficacy in solid tumor models.
However, an approach that directly targets the endogenous genes would be more amenable to multiplex editing and reduce competition with WT alleles.
Here, we employ base editing (BE) in primary human T cells to install naturally occurring dominant negative FAS and TGF R2 mutations. In vitro survival and proliferation assays demonstrate that BE T cells are resistant to pro-apoptotic and anti-proliferative effects of FAS and TGF- signaling. Chimeric antigen receptor (CAR)-T cells with BE-installed dn TGF R2 or dn FAS exhibit improvements in cytotoxicity, while dn TGF R2 CAR T demonstrate increased persistence and reduced expression of phenotypic markers of exhaustion compared to controls.
Moreover, BE-engineered dn CAR T outperform lentiviral-engineered cDNA over expression counterparts in several functional assays. Considering the efficiency of BE and its amenability for multiplex editing, our approach lends itself to engineering strategies necessary to overcome T cell dysfunction in solid tumors.
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