肿瘤细胞治疗研究
英文原题:The ancestral haplotype of P2RX5 yields a B-cell surface marker and a multi-lineage immunotherapy target.
The ancestral haplotype of P2RX5 yields a B-cell surface marker and a multi-lineage immunotherapy target.
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靶向CD19和BCMA的免疫疗法改善了B淋巴细胞及浆细胞恶性肿瘤的结局,但抗原丢失或下调导致的频繁复发凸显了寻找新靶点的必要性。本研究结合转录组数据和新开发的单克隆抗体,发现长期以来被认为是人类假基因的P2RX5,在携带祖先单倍型的非洲裔人群中约80%可编码稳定蛋白。与CD19相似,正常组织中的P2RX5表达局限于B细胞谱系;但与CD19不同,P2RX5不仅表达于B细胞肿瘤,也表达于T细胞白血病(T-ALL)和多发性骨髓瘤(MM)。研究者开发了靶向P2RX5的双特异性T细胞衔接器和CAR-T 细胞,可杀伤T-ALL细胞,且未见T细胞自相残杀证据。在伯基特淋巴瘤和MM细胞培养及异种移植模型中,这些药物不劣于FDA批准的CD19和BCMA靶向免疫疗法,同时对CD19和BCMA阴性变异株仍保持效力。因此,P2RX5是一个独特的多谱系靶点,可用于一线或挽救性免疫治疗。
While CD19- and BCMA-directed immunotherapies have improved outcomes for B-lymphoid and plasma cell malignancies, frequent relapses with antigen loss/downregulation highlight the need for new targets.
Here, using transcriptomic datasets and newly-developed monoclonal antibodies, we show that P2RX5 , long considered a pseudogene in humans, encodes a stable protein in 80% of individuals of African descent carrying the ancestral haplotype. Like CD19, P2RX5 displays B-cell lineage-restricted expression in normal tissues. Unlike CD19, P2RX5 is expressed not only in B-cell neoplasms, but also in T-cell leukemia (T-ALL) and multiple myeloma (MM).
We developed P2RX5-directed bispecific T-cell engagers and CAR T cells, which killed T-ALL cells with no evidence of T-cell fratricide. These agents were non-inferior to FDA-approved CD19- and BCMA-directed immunotherapeutics in cell culture and xenograft models of Burkitt lymphoma and MM, while maintaining potency against CD19- and BCMA-negative variants. Hence, P2RX5 is a unique multi-lineage target for frontline or salvage immunotherapy.
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