决定异体 CAR T 细胞排斥与扩增的细胞和分子机制
Cellular and molecular mechanisms determining allogeneic CAR T cell rejection and expansion.
我们评估了11例接受单一批次cemacabtagene ansegedleucel(cema-cel)治疗的大B细胞淋巴瘤患者,cemacabtagene ansegedleucel是一种异体抗CD19 CAR T产品。
英文原题:Senolytics for Cancer treatment: complexities and opportunities.
衰老细胞清除疗法的转化受到以下因素制约:TIS异质性产生耐药亚群、潜在的增殖恢复、衰老细胞清除相关不良反应、无法保留有益衰老细胞,以及缺乏经过验证的临床试验设计。新兴的免疫策略——纳米疫苗、纳米抗原呈递机制和CAR-T平台——提供了更具选择性的替代方案,但需要经过验证的临床前和临床测试才能进一步实施。
目前,针对衰老肿瘤细胞作为一种提高癌症治疗疗效的策略,正受到越来越多的关注。尽管该策略前景可观,但在消除衰老细胞的药物(统称为 senolytics)的实用性方面,已出现若干局限性。首先,这些化合物在衰老和肿瘤细胞模型中显示出不同的结果。其次,基于肿瘤背景,它们在消除衰老肿瘤细胞方面的疗效存在差异。第三,有效的药物并不一定能消除可能反映疾病复发的增殖恢复风险。第四,一些对衰老肿瘤细胞表现出最高疗效的化合物与已确定或潜在的不良反应相关,这将限制其转化应用。涵盖领域:在此,我们概述了现有 senolytics 的优势与劣势,并探讨了严格在肿瘤细胞模型中测试的新发现药物的潜力。
INTRODUCTION: There is currently growing interest in targeting senescent tumor cells as a strategy for improving the efficacy of cancer therapy. Despite the promise of this strategy, a number of limitations have emerged relating to the utility of senescence-eliminating agents, collectively termed senolytics. First, these compounds show different outcomes in aging and tumor cell models. Second, they exhibit variable efficacy in eliminating senescent tumor cells based on tumor background. Third, efficacious agents do not necessarily eliminate the risk of proliferative recovery that could reflect disease recurrence. Fourth, several of the compounds that demonstrate the highest efficacy against senescent tumor cells are associated with established or potential adverse effects that would limit their translation. AREAS COVERED: Here, we provide an overview of the advantages and disadvantages of established senolytics and explore the potential for newly identified agents strictly tested in tumor cell models. EXPERT OPINION: Senolytic translation is constrained by TIS heterogeneity generating resistant subpopulations, potential proliferative recovery, senolytic-associated adverse effects, inability to spare beneficial senescent cells, and absence of validated clinical trial designs. Emerging immune-based strategies nanovaccines, nano-antigen-presenting machinery, and CAR-T platforms offer more selective alternatives, but require validated preclinical and clinical testing for further implementation.
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