借力推动前列腺癌 CAR-T 细胞治疗进展
Piggybacking toward Progress for CAR T-Cell Therapy in Prostate Cancer.
CELL INTELLIGENCE · 肿瘤细胞治疗研究
肿瘤细胞治疗研究
英文原题:TCR-Based Therapy Directed against Kallikrein-Related Peptidase 4 Is Safe and Effective against Prostate Cancer.
TCR-Based Therapy Directed against Kallikrein-Related Peptidase 4 Is Safe and Effective against Prostate Cancer.
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大多数前列腺癌免疫疗法受限于肿瘤免疫原性较差,其表现之一是T细胞浸润极少。采用经工程化改造、表达靶向前列腺特异性抗原的T细胞受体(TCR)的T细胞治疗,有望绕过内源性T细胞库有限的问题。通过差异基因表达分析,我们鉴定出激肽释放酶相关肽酶2、3、4(KLK2、KLK3、KLK4)和同源框B13(HOXB13),它们是严格的前列腺谱系特异性基因,在前列腺癌中高表达,而在存在风险的健康组织中不表达。研究鉴定了由这些抗原自然加工产生的肽,并利用肽-MHC多聚体富集T细胞。从异基因且HLA不匹配的供者中分离出靶向这些抗原的高亲和力T细胞。在筛查靶肿瘤特异性并排除脱靶反应后,对识别HLA-A*02:01呈递KLK4和HLA-B*35:01呈递KLK3的TCR进行了测序和进一步测试。通过TCR基因转移将TCR导入T细胞,并筛选性能最佳者。研究通过组合肽库扫描分析KLK4-A2和KLK3-B35 TCR的交叉反应潜力。KLK3-B35 TCR对来自LOXHD1和CDH23的另外两种肽存在交叉反应,而这两种蛋白在多种组织中广泛表达,因此该TCR被排除。KLK4-A2 TCR对KLK4肽高度特异。
进一步测试证实,KLK4-A2 TCR在体内外均具有有效的细胞毒性杀伤能力,凸显其治疗潜力。这些发现显示KLK4-A2 TCR有望用于前列腺癌免疫治疗,并证明可通过TCR基因转移策略有效靶向前列腺特异性抗原。
The efficacy of most immunotherapies for prostate cancer is limited by poor tumor immunogenicity as evidenced by minimal T-cell infiltration. Treatment with T cells engineered to express T-cell receptors (TCR) targeting prostate-specific antigens offers a potential solution by bypassing endogenous T-cell repertoire limitations. Through differential gene expression analysis, we have identified kallikrein-related peptidases 2, 3, and 4 (KLK2, KLK3, and KLK4) and homeobox B13 (HOXB13) as strictly prostate lineage-specific genes with high expression in prostate cancer and no expression in healthy tissues of risk. Naturally processed peptides derived from these antigens were identified, enabling T-cell enrichment using peptide-MHC multimers.
High-avidity T cells targeting these antigens were isolated from allogeneic HLA-mismatched donors. After screening for on-target tumor specificity and absence of off-target reactivity, TCRs recognizing KLK4 in HLA-A*02:01 and KLK3 in HLA-B*35:01 were sequenced and further tested. TCRs were expressed in T cells through TCR gene transfer and TCRs with best performance were selected.
Using combinatorial peptide library scanning, the cross-reactive potential of the KLK4-A2 and KLK3-B35 TCRs was analyzed. The KLK3-B35 TCR exhibited cross-reactivity against two additional peptides derived from LOXHD1 and CDH23, with broad tissue expression, and was therefore excluded. The KLK4-A2 TCR was highly specific for the KLK4 peptide.
Further testing confirmed effective cytotoxic killing potential of KLK4-A2 TCR in vitro and in vivo, underscoring its therapeutic potential.
These findings highlight the promise of the KLK4-A2 TCR for prostate cancer immunotherapy and demonstrate that prostate-specific antigens can be effectively targeted using TCR gene transfer strategies.
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