CAR-T(CAR-T)细胞疗法在非肿瘤性疾病中的应用
Chimeric antigen receptor T (CAR-T) cell therapy in non-oncological diseases.
CELL INTELLIGENCE · 肿瘤细胞治疗研究
肿瘤细胞治疗研究
英文原题:Relapsed disease: off-the-shelf immunotherapies vs customized engineered products.
Relapsed disease: off-the-shelf immunotherapies vs customized engineered products.
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淋巴瘤免疫肿瘤学的创新已超越任何其他癌症组织学类型的治疗进展。20世纪90年代,利妥昔单抗——一种CD20单克隆抗体——彻底改变了B细胞非霍奇金淋巴瘤(B-NHL)的治疗范式。与此同时,T细胞可被基因重编程和调控以应对肿瘤细胞逃逸的概念得以发展。二十年后,这一概念已成为现实——3种定制化工程化CD19CAR-T 细胞构建体已被接受作为侵袭性B-NHL的三线及以后治疗。CAR-T 的缓解在30%至40%的患者中持久,在老年患者、原发性难治性疾病、高级别B细胞淋巴瘤以及合并继发性中枢神经系统疾病的患者中结果一致,而这些特征在历史上均与较差预后相关。与CAR-T 给药相关的挑战包括繁琐且耗时的制造过程、毒性以及成本,更不用说显著的复发风险。幸运的是,随着我们对如何操纵免疫系统以实现完全抗肿瘤潜能的理解不断增长,现成免疫疗法也迅速发展,其中CD20/CD3双特异性抗体脱颖而出。这些药物在侵袭性B-NHL中显示出有前景的活性,并有可能规避定制化工程化产品所遇到的一些挑战。
然而,这些药物的毒性仍然显著,给药方案密集,经验有限。新型定制化和现成治疗药物以及这些药物的合理联合正在研发中。最终,定制化工程化和现成免疫疗法方面不断增长的经验将为最佳给药和序贯方法提供指导。
Innovations in immuno-oncology for lymphomas have outpaced therapeutic developments in any other cancer histology. In the 1990s, rituximab, a CD20 monoclonal antibody, drastically changed treatment paradigms for B-cell non-Hodgkin lymphomas (B-NHLs). In parallel, the concept that T cells could be genetically reprogrammed and regulated to address tumor cell evasion was developed. Twenty years later, this concept has materialized-3 customized engineered CD19 chimeric antigen receptor T-cell (CART) constructs have been embraced as third-line therapies and beyond for aggressive B-NHL. Responses with CARTs are durable in 30% to 40% of patients, with consistent results in older patients, primary refractory disease, high-grade B-cell lymphoma, and patients with concurrent secondary central nervous system disease, all features historically associated with poorer outcomes.
Challenges associated with the administration of CARTs include cumbersome and time-consuming manufacturing processes, toxicities, and cost, not to mention a substantial risk of relapse.
Fortunately, as our understanding of how to manipulate the immune system to achieve full antitumor potential has grown, so has the rapid development of off-the-shelf immunotherapies, with CD20/CD3 bispecific antibodies standing out above all others. These agents have shown promising activity in aggressive B-NHL and have the potential to circumvent some of the challenges encountered with customized engineered products.
However, toxicities remain substantial, dosing schedules intensive, and experience limited with these agents. Novel customized and off-the-shelf therapeutics as well as rational combinations of these agents are underway. Ultimately, growing experience with both customized engineered and off-the-shelf immunotherapies will provide guidance on optimal methods of delivery and sequencing.
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