下一代肿瘤不可知靶点即将出现
Next-generation tumor-agnostic targets on the horizon.
肿瘤不可知药物开发将肿瘤学重新聚焦于共享的分子依赖性而非组织来源,从而能够针对跨肿瘤的罕见可操作驱动因素进行高效开发。
英文原题:Engineering Cancer Antigen-Specific T Cells to Overcome the Immunosuppressive Effects of TGF-β.
表达亲和力增强型 TCR 的 T 细胞过继性 T 细胞疗法在实体瘤和血液肿瘤的 1/2 期临床试验中已显示出令人鼓舞的结果。
采用表达亲和力增强TCR的T细胞进行的过继性T细胞治疗在实体瘤和血液肿瘤的1/2期临床试验中已显示出有希望的结果。然而,过继性T细胞治疗的应答深度和持久性可能受到抑制性肿瘤微环境的影响。一种常见的免疫抑制因子是TGF-β,由肿瘤细胞和募集至肿瘤的细胞分泌。我们研究了是否可以将人T细胞工程化改造为对TGF-β的抑制具有抗性。截短TGF-β受体(TGFβR)II的胞内信号结构域可产生一种显性负性受体(dnTGFβRII),该受体与内源性TGFβRI二聚化,形成一种能够结合TGF-β但无法传递信号的受体。我们此前已制备了特异性肽增强亲和力受体TCR,分别识别HLA-A*02限制性肽纽约食管鳞状细胞癌1(NY-ESO-1)157-165/l-Ag家族成员-1A(TCR:GSK3377794,原NY-ESO-1 c259)和黑色素瘤Ag基因A10 254-262(TCR:ADP-A2M10,原黑色素瘤Ag基因A10 c796)。在本文中,我们显示外源性TGF-β在体外抑制了表达这些第一代高亲和力TCR的人T细胞的增殖和效应功能,而与dnTGFβRII共表达的第二代TCR(如GSK3845097)的抑制作用则减弱或消失。TGF-β亚型及一组TGF-β相关基因在NY-ESO-1常表达的一系列癌症适应症中过表达,尤其是滑膜肉瘤。举例而言,免疫组织化学/RNAscope在非小细胞肺癌环境中鉴定出肿瘤巢和间质中靠近T细胞的TGF-β阳性细胞,而这些区域表达IFN-γ的细胞频率较低。因此,dnTGFβRII的共表达可能提高TCR转导T细胞的疗效。
Adoptive T cell therapy with T cells expressing affinity-enhanced TCRs has shown promising results in phase 1/2 clinical trials for solid and hematological tumors. However, depth and durability of responses to adoptive T cell therapy can suffer from an inhibitory tumor microenvironment. A common immune-suppressive agent is TGF-β, which is secreted by tumor cells and cells recruited to the tumor. We investigated whether human T cells could be engineered to be resistant to inhibition by TGF-β. Truncating the intracellular signaling domain from TGF-β receptor (TGFβR) II produces a dominant-negative receptor (dnTGFβRII) that dimerizes with endogenous TGFβRI to form a receptor that can bind TGF-β but cannot signal. We previously generated specific peptide enhanced affinity receptor TCRs recognizing the HLA-A*02-restricted peptides New York esophageal squamous cell carcinoma 1 (NY-ESO-1) 157-165 /l-Ag family member-1A (TCR: GSK3377794, formerly NY-ESO-1 c259 ) and melanoma Ag gene A10 254-262 (TCR: ADP-A2M10, formerly melanoma Ag gene A10 c796 ). In this article, we show that exogenous TGF-β inhibited in vitro proliferation and effector functions of human T cells expressing these first-generation high-affinity TCRs, whereas inhibition was reduced or abolished in the case of second-generation TCRs coexpressed with dnTGFβRII (e.g., GSK3845097). TGF-β isoforms and a panel of TGF-β-associated genes are overexpressed in a range of cancer indications in which NY-ESO-1 is commonly expressed, particularly in synovial sarcoma. As an example, immunohistochemistry/RNAscope identified TGF-β-positive cells close to T cells in tumor nests and stroma, which had low frequencies of cells expressing IFN-γ in a non-small cell lung cancer setting. Coexpression of dnTGFβRII may therefore improve the efficacy of TCR-transduced T cells.
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