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:The construction of modular universal chimeric antigen receptor T (MU-CAR-T) cells by covalent linkage of allogeneic T cells and various antibody fragments.
The construction of modular universal chimeric antigen receptor T (MU-CAR-T) cells by covalent linkage of allogeneic T cells and various antibody fragments.
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综合来看,我们的策略使 CAR-T 细胞的生产更加模块化,并使 CAR-T 细胞的质量控制和制药生产更加可行。
CAR-T(CAR-T)细胞疗法是取得显著临床成功的新型免疫疗法之一,但制备时间长、成本高及个体差异限制了其应用。通用CAR-T(U-CAR-T)制备技术虽有显著改进,仍未形成稳定统一的细胞库。
我们进一步通过构建新型模块化通用CAR-T(MU-CAR-T)细胞,提高U-CAR-T 的便利性和灵活性。首先筛选健康供者并培养其T细胞,以获得较高比例的干细胞样记忆T(TSCM)细胞,该类细胞具有较强自我更新能力、持久性和细胞毒性。为降低异体反应性,利用CRISPR/Cas9系统敲除T细胞受体(TCR)及I类人白细胞抗原(HLA-I)基因。将生长良好且遗传稳定、携带CAR结构的通用细胞储存为稳定统一的细胞库。随后使用可形成异肽键的SDcatcher/GVoptiTag系统,将针对不同抗原的纯化抗体scFv共价连接至复苏后的CAR-T 细胞。
所得CAR-T 细胞可通过特异性靶向不同细胞发挥多种功能,例如清除人类免疫缺陷病毒1型(HIV-1)潜伏感染细胞或T细胞淋巴瘤细胞,且效率与传统CAR-T 相近。
该策略可使CAR-T 制备更加模块化,也使其质量控制和药品生产更易实施。
Chimeric antigen receptor-T (CAR-T) cells therapy is one of the novel immunotherapeutic approaches with significant clinical success. However, their applications are limited because of long preparation time, high cost, and interpersonal variations. Although the manufacture of universal CAR-T (U-CAR-T) cells have significantly improved, they are still not a stable and unified cell bank.
Here, we tried to further improve the convenience and flexibility of U-CAR-T cells by constructing novel modular universal CAR-T (MU-CAR-T) cells. For this purpose, we initially screened healthy donors and cultured their T cells to obtain a higher proportion of stem cell-like memory T (T SCM ) cells, which exhibit robust self-renewal capacity, sustainability and cytotoxicity. To reduce the alloreactivity, the T cells were further edited by double knockout of the T cell receptor (TCR) and class I human leukocyte antigen (HLA-I) genes utilizing the CRISPR/Cas9 system. The well-growing and genetically stable universal cells carrying the CAR-moiety were then stored as a stable and unified cell bank. Subsequently, the SDcatcher/GVoptiTag system, which generate an isopeptide bond, was used to covalently connect the purified scFvs of antibody targeting different antigens to the recovered CAR-T cells.
The resulting CAR-T cells can perform different functions by specifically targeting various cells, such as the eradication of human immunodeficiency virus type 1 (HIV-1)-latenly-infected cells or elimination of T lymphoma cells, with similar efficiency as the traditional CAR-T cells did.
Taken together, our strategy allows the production of CAR-T cells more modularization, and makes the quality control and pharmaceutic manufacture of CAR-T cells more feasible.
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