单细胞追踪揭示黑色素瘤 TIL 治疗过程中肿瘤反应性 T 细胞的可塑性
Single-cell tracking reveals tumor-reactive T cell plasticity during melanoma TIL therapy.
CELL INTELLIGENCE · 肿瘤细胞治疗研究
肿瘤细胞治疗研究
英文原题:Using patient-derived tumor organoids from common epithelial cancers to analyze personalized T-cell responses to neoantigens.
Using patient-derived tumor organoids from common epithelial cancers to analyze personalized T-cell responses to neoantigens.
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TIL(肿瘤浸润淋巴细胞)的过继细胞转移可在部分常见上皮癌患者中诱导持久完全缓解,但这种情况并不常见。更好地理解T细胞对新抗原的反应以及肿瘤相关免疫逃逸机制,需要将自体肿瘤作为试剂。
我们研究了患者来源的肿瘤类器官(PDTO)满足这一需求的能力,并评估了其作为选择用于过继细胞治疗的T细胞工具的实用性。从结直肠癌、乳腺癌、胰腺癌、胆管癌、食管癌、肺癌和肾癌患者的转移灶建立的PDTO接受了全外显子组测序(WES),以确定突变。随后评估类器官能否被自体TIL或转导了识别已确定新抗原的克隆T细胞受体的T细胞所识别。PDTO还被用于从TIL中鉴定并克隆靶向私有新抗原的TCR,并确定这些肿瘤特异性靶点。PDTO在38/47次尝试中成功建立。75%可在2个月内获得,这一时间范围与筛选用于临床给药的TIL相容。这些细胞系与其亲本肿瘤表现出良好的遗传保真度,尤其是对于克隆性较高的突变。免疫学识别试验证明了存在pan-HLA免疫组织化学未发现的HLA等位基因缺失,在某些情况下,新鲜肿瘤的WES也未发现。PDTO还可用于显示识别同一抗原的TCR之间的差异,以及发现并克隆识别私有新抗原的TCR。PDTO能够检测阻断T细胞识别的肿瘤特异性缺陷,并可能作为过继细胞治疗中所用TCR和TIL的选择工具发挥作用。
Adoptive cell transfer of tumor-infiltrating lymphocytes (TIL) can mediate durable complete responses in some patients with common epithelial cancers but does so infrequently. A better understanding of T-cell responses to neoantigens and tumor-related immune evasion mechanisms requires having the autologous tumor as a reagent.
We investigated the ability of patient-derived tumor organoids (PDTO) to fulfill this need and evaluated their utility as a tool for selecting T-cells for adoptive cell therapy. PDTO established from metastases from patients with colorectal, breast, pancreatic, bile duct, esophageal, lung, and kidney cancers underwent whole exomic sequencing (WES), to define mutations. Organoids were then evaluated for recognition by autologous TIL or T-cells transduced with cloned T-cell receptors recognizing defined neoantigens. PDTO were also used to identify and clone TCRs from TIL targeting private neoantigens and define those tumor-specific targets. PDTO were successfully established in 38/47 attempts.
75% were available within 2 months, a timeframe compatible with screening TIL for clinical administration. These lines exhibited good genetic fidelity with their parental tumors, especially for mutations with higher clonality. Immunologic recognition assays demonstrated instances of HLA allelic loss not found by pan-HLA immunohistochemistry and in some cases WES of fresh tumor.
PDTO could also be used to show differences between TCRs recognizing the same antigen and to find and clone TCRs recognizing private neoantigens. PDTO can detect tumor-specific defects blocking T-cell recognition and may have a role as a selection tool for TCRs and TIL used in adoptive cell therapy.
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