重编程工程化自体 T 细胞以克服 Merkel 细胞癌患者的耐药性
Reprogramming engineered autologous T cells to overcome resistance in patients with Merkel cell carcinoma.
CELL INTELLIGENCE · 肿瘤细胞治疗研究
肿瘤细胞治疗研究
英文原题:Identification of Epstein-Barr virus nuclear antigen 1 (EBNA1)-specific T-cell receptors: implications for immunotherapy targeting EBV-associated malignancies.
Identification of Epstein-Barr virus nuclear antigen 1 (EBNA1)-specific T-cell receptors: implications for immunotherapy targeting EBV-associated malignancies.
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本研究确立了扩增功能性 EBNA1 特异性 TCR-T 细胞的可行性,为靶向所有 EBV 相关恶性肿瘤(包括潜伏期 I 型)的过继性细胞疗法提供了基础。
EB病毒核抗原(EBNA1)在三种EBV潜伏类型中均有独特表达,使其成为针对EBV相关恶性肿瘤的TCR工程化T细胞治疗的理想靶点。然而,EBNA1特异性TCR-T细胞的制备,尤其是针对EBV潜伏I型的,仍处于探索阶段。
EBNA1特异性T细胞使用负载了根据EBV株B95-8的EBNA1完整序列(除外甘氨酸-丙氨酸重复区)合成的多肽的自体树突状细胞(DCs)进行刺激。对于刺激前和刺激后的T细胞,使用高通量单细胞TCR V(D)J测序鉴定频率显著增加的候选EBNA1特异性TCR。EBNA1特异性TCR工程化T细胞的功能在体外针对淋巴母细胞样细胞系(LCLs)和EBNA1多肽负载的DCs进行了评估。
EBNA1特异性T细胞被成功扩增。分离出候选EBNA1特异性TCR,构建了相应的TCR基因序列并将其导入外周血T细胞。表达EBNA1特异性TCR的工程化T细胞在体外表现出对自体LCLs和DCs呈递的EBNA1的特异性识别。
Epstein-Barr virus nuclear antigen (EBNA1) is uniquely expressed across all three EBV latency types, making it an ideal target for TCR-engineered T-cell therapy against EBV-associated malignancies. However, preparation of EBNA1-specific TCR-T cells, particularly for EBV latency I type, remains exploratory.
EBNA1-specific T cells were stimulated using autologous dendritic cells (DCs) pulsed with peptides synthesized from the complete sequence (except the glycine-alanine repeat region) of the EBNA1 of EBV strain B95-8. For pre-stimulated and post-stimulated T cells, candidate EBNA1-specific TCRs with significantly increased frequencies were identified using high-throughput single-cell TCR V(D) J sequencing. The functionality of EBNA1-specific TCR-engineered T cells was assessed in vitro against lymphoblastoid cell lines (LCLs) and EBNA1 peptide-pulsed DCs.
EBNA1-specific T cells were successfully expanded. Candidate EBNA1-specific TCRs were isolated, corresponding TCR gene sequences were constructed and introduced into peripheral blood T cells. Engineered T cells expressing EBNA1-specific TCR demonstrated specific recognition of EBNA1 presented by autologous LCLs and DCs in vitro.
This study establishes the feasibility of expanding functional EBNA1-specific TCR-T cells, providing a foundation for adoptive cell therapy targeting all EBV-associated malignancies, including latency I.
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