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:Establishing reverse chimeric antigen receptor T cells for precise targeting of immunemediated thrombotic thrombocytopenic purpura.
Establishing reverse chimeric antigen receptor T cells for precise targeting of immunemediated thrombotic thrombocytopenic purpura.
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免疫介导性血栓性血小板减少性紫癜 (iTTP) 是一种危及生命的自身免疫性疾病,由靶向金属蛋白酶 ADAMTS13 的自身抗体引起。这会阻止超大 von Willebrand 因子 (UL-VWF) 的裂解,从而在微血管系统中形成微血栓。尽管当前治疗有效,但在给予 rituximab 后,高达 15% 的患者会出现 ADAMTS13 复发。
在本研究中,我们提出了一种新方法,以解决 ADAMTS13 难治性患者以及需要重复治疗的患者未满足的治疗需求。我们的策略涉及开发两种靶向疗法,旨在实现高效且安全的 B 细胞清除。
我们首次采用称为反向 CAR (RevCAR) T 细胞的适配器嵌合抗原受体 (CAR) T 细胞,以 (i) 通过靶向 CD19 实现更广泛、更深入的 B 细胞清除,以及 (ii) 选择性清除致病性抗 ADAMTS13 自身反应性 B 细胞,从而提高 iTTP 治疗的精确性和安全性。
因此,我们开发了针对 CD19+ 和抗 ADAMTS13 自身反应性 B 细胞的新型靶向模块 (RevTMs)。我们表明,RevCAR T 细胞能够以 RevTM 依赖的方式,并在低效应细胞与靶细胞比例下,成功且特异性地杀死靶杂交瘤和 Nalm-6 细胞。
此外,即使存在高浓度的 ADAMTS13 自身抗体,RevCAR T 细胞也能够消除靶细胞。总体而言,我们的研究结果首次证明,抗 ADAMTS13 自身反应性 B 细胞可通过 RevCAR T 细胞平台被选择性清除,这为 iTTP 的有效且安全治疗铺平了道路。
Immune-mediated Thrombotic Thrombocytopenic Purpura (iTTP) is a life-threatening autoimmune disorder caused by autoantibodies that target the metalloprotease ADAMTS13. This prevents the cleavage of Ultra-Large von Willebrand Factor (UL-VWF), thereby forming microthrombi in the microvasculature.
While current treatments are effective, ADAMTS13 relapses occur in up to 15% of the patients after rituximab administration. In this study, we propose a novel approach addressing the unmet need for treatment of patients with ADAMTS13 refractoriness and for patients requiring repeated treatment.
Our strategy involves developing two targeted therapies that aim to achieve highly effective and safe B cell depletion. For the first time, we employ adapter Chimeric Antigen Receptor (CAR) T cells called Reverse CAR (RevCAR) T cells to (i) achieve a broader and deeper B cell depletion by targeting CD19 and (ii) selectively deplete the disease-causing anti-ADAMTS13 autoreactive B cells to increase precision and safety in iTTP treatment.
Therefore, we have developed novel Target Modules (RevTMs) against CD19+ and anti-ADAMTS13 autoreactive B cells.
We show that the RevCAR T cells successfully and specifically kill target hybridomas and Nalm-6 cells in a RevTM-dependent manner and at low effector-to-target cell ratios.
Moreover, the RevCAR T cells are able to eliminate the target cells even in the presence of high concentrations of ADAMTS13 autoantibodies.
Overall, our findings demonstrate for the first time, a proof-ofconcept that anti-ADAMTS13 autoreactive B cells can be selectively depleted by the RevCAR T cell platform paving the way for an effective and safe therapy for iTTP.
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