CELL INTELLIGENCE · 肿瘤细胞治疗研究
肿瘤细胞治疗研究
英文原题:EBV T-cell immunotherapy generated by peptide selection has enhanced effector functionality compared to LCL stimulation.
EBV T-cell immunotherapy generated by peptide selection has enhanced effector functionality compared to LCL stimulation.
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使用EBV特异性T细胞的过继性免疫治疗是治疗复发/难治性EBV诱导的移植后淋巴增殖性疾病(PTLD)的有效方法,总生存率高达69%。EBV特异性T细胞通常通过用EBV转化的淋巴母细胞样细胞系(LCL)反复刺激来制备,LCL充当抗原呈递细胞。
然而,该过程昂贵、耗时数月,并且存在与活病毒相关的实际风险。我们开发了一种基于肽、无病毒、无血清的封闭系统,用于制造供临床使用的病毒特异性T细胞(VST)库。
我们通过全面的表征和效力测定将这些细胞与标准LCL来源的VST进行比较,以确定可能影响临床获益的差异。多参数流式细胞术显示,与LCL来源的VST相比,肽来源的VST具有扩增的中央记忆细胞群和更低的耗竭标志物表达。定量HLA匹配的同种异体细胞毒性试验显示对EBV感染靶细胞的特异性杀伤相似,但肽来源的EBV T细胞在抗原再刺激后抗病毒细胞因子和脱颗粒标志物的表达显著更高。高通量T细胞受体β(TCRβ)测序显示寡克隆 repertoire,肽来源的EBV T细胞与已知EBV结合互补决定区3(CDR3)序列的匹配更多。肽来源的产品在CD8和CD4区室中均显示出对EBV核抗原(EBNA)更广泛和增强的特异性,这可能改善对PTLD中高表达潜伏期抗原的靶向。
重要的是,基于肽的分离和扩增允许快速制造,并且与传统基于LCL的方法相比显著提高了产品产量。
Adoptive immunotherapy with Epstein-Barr virus (EBV)-specific T cells is an effective treatment for relapsed or refractory EBV-induced post-transplant lymphoproliferative disorders (PTLD) with overall survival rates of up to 69%. EBV-specific T cells have been conventionally made by repeated stimulation with EBV-transformed lymphoblastoid cell lines (LCL), which act as antigen-presenting cells.
However, this process is expensive, takes many months, and has practical risks associated with live virus.
We have developed a peptide-based, virus-free, serum-free closed system to manufacture a bank of virus-specific T cells (VST) for clinical use.
We compared these with standard LCL-derived VST using comprehensive characterization and potency assays to determine differences that might influence clinical benefits. Multi-parameter flow cytometry revealed that peptide-derived VST had an expanded central memory population and less exhaustion marker expression than LCL-derived VST. A quantitative HLA-matched allogeneic cytotoxicity assay demonstrated similar specific killing of EBV-infected targets, though peptide-derived EBV T cells had a significantly higher expression of antiviral cytokines and degranulation markers after antigen recall.
High-throughput T cell receptor-beta (TCRβ) sequencing demonstrated oligoclonal repertoires, with more matches to known EBV-binding complementary determining region 3 (CDR3) sequences in peptide-derived EBV T cells. Peptide-derived products showed broader and enhanced specificities to EBV nuclear antigens (EBNAs) in both CD8 and CD4 compartments, which may improve the targeting of highly expressed latency antigens in PTLD.
Importantly, peptide-based isolation and expansion allows rapid manufacture and significantly increased product yield over conventional LCL-based approaches.
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