一种用于克服非小细胞肺癌治疗中抗原异质性的多靶向 CAR-T 细胞平台
A Multi-Targeting Chimeric Antigen Receptor-T Cell Platform to Overcome Antigen Heterogeneity in the Treatment of Non-Small Cell Lung Cancer.
肿瘤细胞治疗研究
英文原题:Improving lung cancer tumor-infiltrating lymphocyte (TIL) manufacturing.
Improving lung cancer tumor-infiltrating lymphocyte (TIL) manufacturing.
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传统 TIL 生产方案可以优化和精简为更具成本效益的工艺,用于生产对肿瘤细胞具有细胞毒性且产量适合临床研究的 TIL 产品。
使用自体体外扩增的TIL(肿瘤浸润淋巴细胞)成功治疗黑色素瘤,激发了评估TIL对其他癌症(包括非小细胞肺癌(NSCLC))疗效的临床试验。TIL临床应用的增长增加了对改进、更精简且更具成本效益的生产方案的需求。本研究的目的是在保持GMP生产合规性、TIL产品的产量和质量的同时,简化并降低传统TIL生产方案的成本。
切除的肺肿瘤被培养以扩增TIL。在平行实验中,我们评估了培养基配方、补充试剂、试剂浓度、TIL激活方法和冷冻保存方案。这些优化旨在减少人力、试剂成本、培养时间和开放步骤操作。将所得的TIL产品与使用Moffitt癌症中心已发表方案生产的TIL进行比较。我们比较了细胞产量、活力、表型以及TIL对匹配肿瘤类器官的细胞毒活性。
使用T细胞特异性培养基替代RPMI、人AB血清替代人血小板裂解液、-CD3/CD28纳米珠替代饲养细胞进行细胞激活,成功从35份碎片化肿瘤样本中扩增出TIL。培养时间从6至7周缩短至4周,最终产品平均含有200e9 TIL,主要为记忆表型,并能有效杀伤匹配的肿瘤细胞。虽然TIL产量和表型与Moffitt癌症中心方案所生产的相当,但对匹配肿瘤细胞的细胞毒性更优。
The successful treatment of melanoma using autologous in vitro expanded tumor infiltrating lymphocytes (TILs) has sparked clinical trials for the assessment of TIL efficacy against other cancers, including non-small cell lung cancer (NSCLC). This rise in clinical applications of TILs has increased the need for improved, more streamlined and cost-effective manufacturing protocols. The aim of this study was to simplify and reduce the cost of traditional TIL manufacturing protocols while maintaining GMP manufacturing compliance, yields, and quality of the TIL product.
Resected lung tumors were cultured to expand TILs. In side-by-side experiments, we evaluated media formulations, supplementing reagents, reagent concentrations, TIL activation methods and cryopreservation protocols. The optimizations aim to reduce labor, reagent cost, culture times, and open step manipulations. The resulting TIL products were compared against TILs produced using the Moffitt Cancer Center published protocol. We compared cell yields, viabilities, phenotypes, and TIL cytotoxic activity against matched tumor organoids.
TILs were successfully expanded from 35 fragmented tumor samples using T-cell specific media in place of RPMI, human AB serum in place of human platelet lysate and -CD3/CD28 nanobeads in place of feeder cells for cell activation. Culture duration was reduced from 6 to 7 weeks to 4 weeks and the final product contained an average of 200e9 TILs that were predominantly of the memory phenotype and effectively killed matched tumor cells. While TIL yields and phenotypes were comparable to those produced by the Moffitt Cancer Center protocol, cytotoxicity against matched tumor cells was superior.
Traditional TIL manufacturing protocols could be optimized and streamlined into a more cost-effective process for a TIL product that is cytotoxic to tumor cells and yields quantities suitable for clinical studies.
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