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:Efficient nonviral integration of large transgenes into human T cells using Cas9-CLIPT.
与线性化 dsDNA 相比,Cas9-CLIPT 纳米质粒产生的精确敲入率最高可达 1.7 倍,在抑制非同源末端连接时效率可达 60%。
CRISPR-Cas9 核糖核蛋白(RNP)与编码嵌合抗原受体(CAR)转基因的核酸模板结合,可编辑人细胞,使 CAR 精确插入单一基因位点并生成 CAR-T 细胞。然而,许多人类细胞会对外源核酸产生不良先天免疫应答,尤其是环状双链 DNA(dsDNA)。本文介绍 Cleaved, LInearized with Protein Template(Cas9-CLIPT):一种含有 Cas9 RNP 单一靶序列的环状质粒。制备过程中,Cas9 RNP 与质粒结合并切割,使 dsDNA 在体外线性化;Cas9 RNP 随后仍与线性化模板结合,并被递送至细胞,通过 Cas9-CLIPT 同源定向修复促进精确敲入。与线性化 dsDNA 相比,Cas9-CLIPT 纳米质粒可将精确敲入率提高至多 1.7 倍;在抑制非同源末端连接后,效率最高达 60%。通过 Cas9-CLIPT 制备的 GD2 TRAC-CAR T 细胞可有效对抗 GD2 阳性神经母细胞瘤细胞,并富集干细胞记忆表型。研究者使用多种电穿孔设备,并在接近临床相关产量的条件下,成功利用含有大型转基因(2–6 kb)的 Cas9-CLIPT 质粒制备 TRAC-CAR T 细胞。Cas9-CLIPT 策略有望简化供体模板制备并整合大型转基因,从而更高效地非病毒制备多功能基因组编辑免疫细胞疗法。
CRISPR-Cas9 ribonucleoproteins (RNPs) combined with a nucleic acid template encoding a chimeric antigen receptor (CAR) transgene can edit human cells to produce CAR T cells with precise CAR insertion at a single locus. However, many human cells have adverse innate immune responses to foreign nucleic acids, particularly circular double-stranded DNA (dsDNA). Here, we introduce Cleaved, LInearized with Protein Template (Cas9-CLIPT), a circular plasmid containing a single target sequence for the Cas9 RNP, such that during manufacturing, Cas9-RNP binds and cleaves the plasmid to linearize the dsDNA in vitro . Cas9-RNP remains bound to the linearized template and is delivered to cells to promote precise knock-in via homology-directed repair with Cas9-CLIPT. Cas9-CLIPT Nanoplasmids generate up to 1.7-fold higher rates of precise knock-in relative to linearized dsDNA, reaching efficiencies up to 60% with non-homologous end joining inhibition. Cas9-CLIPT-manufactured GD2 TRAC -CAR T cells are potent against GD2 + neuroblastoma cells and exhibit an enriched stem cell memory phenotype. On several electroporation instruments and approaching clinically relevant yields, we successfully manufactured TRAC -CAR T cells using Cas9-CLIPT plasmids containing large (2-6 kb) transgenes. Cas9-CLIPT strategies have the potential to simplify donor template production and integrate large transgenes, allowing for more efficient nonviral manufacturing of multifunctional, genome-edited immune cell therapies.
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