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:Engineered T-cell Receptor T Cells for Cancer Immunotherapy.
Engineered T-cell Receptor T Cells for Cancer Immunotherapy.
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通过工程化改造免疫细胞来靶向癌症,是一项快速发展的技术。首批商业化产品嵌合抗原受体(CAR)T细胞已获批用于血液系统恶性肿瘤。
然而,实体瘤对细胞疗法构成更大挑战,部分原因是难以识别合适的癌症特异性抗原,也难以避免损伤周围正常组织。此外,免疫细胞向实体瘤迁移受损、肿瘤局部强烈的免疫抑制环境,以及靶抗原密度和呈递水平不一,均可帮助肿瘤逃避针对癌症特异性抗原的免疫攻击。为克服这些障碍,研究者正在工程化改造T细胞,使其表达特定T细胞受体(TCR)。由于TCR靶向肿瘤MHC分子呈递的细胞内肽段,与CAR-T 细胞靶向的细胞表面抗原相比,可供选择的潜在肿瘤特异性抗原范围更广。调节TCR T细胞亲和力,可使其更好地识别肿瘤,即使肿瘤和周围正常组织的抗原呈递水平不同亦然。
进一步优化包括改进细胞平台以增强扩增和持久性;联合能够增强肿瘤识别和免疫活化的小分子;以及共表达细胞因子、活化性共受体或解除免疫检查点抑制的介质。早期临床试验还面临生产、规模化制造等后勤挑战。本文讨论成功开展TCR T细胞治疗所面临的障碍,以及克服这些困难、提高抗癌活性和疗效的策略。
Engineering immune cells to target cancer is a rapidly advancing technology. The first commercial products, chimeric-antigen receptor (CAR) T cells, are now approved for hematologic malignancies.
However, solid tumors pose a greater challenge for cellular therapy, in part because suitable cancer-specific antigens are more difficult to identify and surrounding healthy tissues are harder to avoid.
In addition, impaired trafficking of immune cells to solid tumors, the harsh immune-inhibitory microenvironment, and variable antigen density and presentation help tumors evade immune cells targeting cancer-specific antigens. To overcome these obstacles, T cells are being engineered to express defined T-cell receptors (TCR).
Given that TCRs target intracellular peptides expressed on tumor MHC molecules, this provides an expanded pool of potential targetable tumor-specific antigens relative to the cell-surface antigens that are targeted by CAR T cells. The affinity of TCR T cells can be tuned to allow for better tumor recognition, even with varying levels of antigen presentation on the tumor and surrounding healthy tissue.
Further enhancements to TCR T cells include improved platforms that enable more robust cell expansion and persistence; coadministration of small molecules that enhance tumor recognition and immune activation; and coexpression of cytokine-producing moieties, activating coreceptors, or mediators that relieve checkpoint blockade.
Early-phase clinical trials pose logistical challenges involving production, large-scale manufacturing, and more. The challenges and obstacles to successful TCR T-cell therapy, and ways to overcome these and improve anticancer activity and efficacy, are discussed herein.
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