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:Discovery of a Transferrin Receptor 1-Binding Aptamer and Its Application in Cancer Cell Depletion for Adoptive T-Cell Therapy Manufacturing.
Discovery of a Transferrin Receptor 1-Binding Aptamer and Its Application in Cancer Cell Depletion for Adoptive T-Cell Therapy Manufacturing.
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临床制备嵌合抗原受体(CAR)T细胞包括细胞选择、活化、基因转导和扩增。不同公司采用的T细胞选择方法不一,但目前方法不会主动从患者单采产品的健康免疫细胞中清除癌细胞。令人担忧的是,已有研究发现,单个白血病B细胞转导CAR基因即可导致其对CAR-T 治疗耐药并造成治疗失败。
本研究发现一种新型高亲和力DNA适配体tJBA8.1,可结合癌细胞普遍上调的转铁蛋白受体1(TfR1)。通过竞争实验、高分辨率冷冻电镜及将适配体从头建模至电子密度图,研究者发现tJBA8.1与TfR1天然配体全铁转铁蛋白共享结合位点。利用tJBA8.1可有效从外周血单个核细胞中清除人为掺入的B淋巴瘤细胞,同时对健康免疫细胞组成影响极小。研究还提出提高tJBA8.1亲和力的方向。由于TfR1在许多癌症(包括难治性T细胞白血病和淋巴瘤)中均广泛上调,本研究提供了一种简便、通用且低成本的方法,可从患者单采产品中全面去除癌细胞,支持安全制备过继T细胞疗法。
The clinical manufacturing of chimeric antigen receptor (CAR) T cells includes cell selection, activation, gene transduction, and expansion. While the method of T-cell selection varies across companies, current methods do not actively eliminate the cancer cells in the patient's apheresis product from the healthy immune cells. Alarmingly, it has been found that transduction of a single leukemic B cell with the CAR gene can confer resistance to CAR T-cell therapy and lead to treatment failure.
In this study, we report the identification of a novel high-affinity DNA aptamer, termed tJBA8. 1, that binds transferrin receptor 1 (TfR1), a receptor broadly upregulated by cancer cells. Using competition assays, high resolution cryo-EM, and de novo model building of the aptamer into the resulting electron density, we reveal that tJBA8. 1 shares a binding site on TfR1 with holo-transferrin, the natural ligand of TfR1.
We use tJBA8. 1 to effectively deplete B lymphoma cells spiked into peripheral blood mononuclear cells with minimal impact on the healthy immune cell composition. Lastly, we present opportunities for affinity improvement of tJBA8. 1. As TfR1 expression is broadly upregulated in many cancers, including difficult-to-treat T-cell leukemias and lymphomas, our work provides a facile, universal, and inexpensive approach for comprehensively removing cancerous cells from patient apheresis products for safe manufacturing of adoptive T-cell therapies.
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