葡萄糖剥夺的肿瘤微环境激活 AMP 活化蛋白激酶驱动过继转移的 T 辅助 9 细胞衰老
Glucose-deprived tumor microenvironment activates AMP-activated protein kinase to drive adoptively transferred T helper 9 cell senescence.
辅助性T细胞9(Th9)细胞在针对实体瘤的过继细胞治疗(ACT)中显示出前景。
CELL INTELLIGENCE · 肿瘤细胞治疗研究
肿瘤细胞治疗研究
英文原题:Quantitative immunopeptidomics reveals a tumor stroma-specific target for T cell therapy.
Quantitative immunopeptidomics reveals a tumor stroma-specific target for T cell therapy.
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基于T细胞受体(TCR)的免疫疗法已成为治疗实体瘤患者的一种有前景的治疗方法。鉴定在肿瘤上高呈现、在健康组织中很少表达的多肽-人类白细胞抗原(pHLA)复合物,并结合高亲和力TCR,当将其导入T细胞后能够重定向T细胞以消除肿瘤而不损伤健康组织,是安全有效的TCR-based疗法的关键要求。为了发现可通过TCR-based过继性T细胞疗法靶向的有前景的共享肿瘤抗原,我们采用了群体规模的免疫肽组学,利用定量质谱分析了约1500份肿瘤和正常组织样本。
我们在VI型胶原α-3(COL6A3)基因中鉴定出一个HLA-A*02:01限制性的泛癌表位,由于一种肿瘤特异性的替代剪接事件在肿瘤微环境之外很少发生,该表位在多种实体瘤的肿瘤基质上高度呈现。表达天然COL6A3特异性TCR的T细胞对呈现高拷贝数COL6A3 pHLA的细胞仅表现出有限的活性。其中一种TCR经过亲和力增强,使转导的T细胞能够在体内特异性消除与原发性肿瘤标本表达相似拷贝数pHLA的肿瘤。增强的TCR变体表现出良好的安全性特征,未检测到脱靶反应性,为使用COL6A3特异性TCR靶向一系列实体瘤启动临床试验铺平了道路。
T cell receptor (TCR)-based immunotherapy has emerged as a promising therapeutic approach for the treatment of patients with solid cancers. Identifying peptide-human leukocyte antigen (pHLA) complexes highly presented on tumors and rarely expressed on healthy tissue in combination with high-affinity TCRs that when introduced into T cells can redirect T cells to eliminate tumor but not healthy tissue is a key requirement for safe and efficacious TCR-based therapies.
To discover promising shared tumor antigens that could be targeted via TCR-based adoptive T cell therapy, we employed population-scale immunopeptidomics using quantitative mass spectrometry across ~1500 tumor and normal tissue samples.
We identified an HLA-A*02:01-restricted pan-cancer epitope within the collagen type VI α-3 ( COL6A3 ) gene that is highly presented on tumor stroma across multiple solid cancers due to a tumor-specific alternative splicing event that rarely occurs outside the tumor microenvironment. T cells expressing natural COL6A3-specific TCRs demonstrated only modest activity against cells presenting high copy numbers of COL6A3 pHLAs.
One of these TCRs was affinity-enhanced, enabling transduced T cells to specifically eliminate tumors in vivo that expressed similar copy numbers of pHLAs as primary tumor specimens. The enhanced TCR variants exhibited a favorable safety profile with no detectable off-target reactivity, paving the way to initiate clinical trials using COL6A3-specific TCRs to target an array of solid tumors.
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