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SLC1A5 增强绕开 NK 细胞转导屏障以递送复杂 CAR 载荷

英文原题:SLC1A5 augmentation bypasses NK cell transduction barriers to deliver complex CAR payloads.

PubMed 2026/06/07(内容时间) J Immunol Q2 · IF 4(JCR 2025)

研究概要

对人 NK 细胞进行可重复且高效的基因工程改造,仍是下一代嵌合抗原受体(CAR)疗法面临的主要挑战,尤其是对于含多个质粒和转基因的较大构建体。

中文摘要

可重复且高效地对人NK细胞进行基因工程改造,仍是新一代嵌合抗原受体(CAR)治疗面临的主要挑战,尤其当构建体较大并含有多个质粒和转基因时。采用狒狒包膜(BaEV)假型化的慢病毒载体(LV)在转导造血干细胞、T细胞、B细胞和NK细胞方面优于水泡性口炎病毒G蛋白,但存在生产细胞融合毒性和病毒颗粒产量较低的问题(BaEV-TR)。本研究构建了一种整合型病毒受体平台,克服了这些限制,并可转导新鲜分离的静息NK细胞。首先,我们利用Sleeping Beauty系统构建稳定表达非融合型BaEV-TR糖蛋白的HEK293T包装细胞系,从而实现高滴度BaEV-TR假型LV的稳定、可扩展生产。利用该系统,我们制备了编码SLC1A5及大型(9.6 kb)多功能CD73-GD2-NKG2D CAR(mCAR)的LV。其次,我们使用PDK1抑制剂BX-795和BaEV-TR假型LV,提高新鲜分离的人NK细胞中的SLC1A5表达。NK细胞中SLC1A5快速过表达后,无需预先扩增即可转导静息细胞,并显著提高NK细胞对mCAR递送的易感性,从而实现复杂CAR表达盒的稳定表达,同时保留NK细胞表型、细胞因子产生、脱颗粒、增殖以及对侵袭性实体瘤细胞靶标的细胞毒性。该联合方法直接解决了CAR-NK细胞制造中的主要瓶颈,为利用复杂且大型的载荷编程NK细胞提供了模块化平台。

展开英文摘要原文

Reproducible and efficient genetic engineering of human NK cells remains a primary challenge to next-generation chimeric antigen receptor (CAR) therapies, specifically for larger constructs with multiple plasmids and transgenes. Lentiviral vectors (LVs) pseudotyped with baboon envelope (BaEV) outperform vesicular stomatitis virus G protein in transducing hematopoietic stem cells, T cells, B cells, and NK cells, but suffer from fusogenic toxicity in producer cells and lower virion yields (BaEV-TR). Here, we engineer an integrated viral receptor platform that overcomes these constraints and enables transduction of freshly isolated, resting NK cells. First, we generated a Sleeping Beauty-engineered HEK293T packaging cell line stably expressing the nonfusogenic BaEV-TR glycoprotein, enabling consistent and scalable production of high titer BaEV-TR-pseudotyped LVs. Using this system, we generated LVs encoding SLC1A5 and a large ( 9.6 kb) multifunctional CD73-GD2-NKG2D CAR (mCAR). Second, we augmented SLC1A5 expression in freshly-isolated human NK cells using PDK1 inhibitor BX-795 and BaEV-TR-pseudotyped LVs. Rapid SLC1A5 overexpression in NK cells enabled transduction of resting cells without prior expansion and significantly increased NK cell susceptibility to mCAR delivery, achieving robust expression of the complex CAR cassette and preserving NK cell phenotype, cytokine production, degranulation, proliferation, and cytotoxicity against aggressive solid tumor cell targets. This combined approach directly addresses major bottlenecks in CAR-NK cell manufacturing, providing a modular platform for programming NK cells with challenging and large payloads.

论文信息

作者
Das S、Nguyen KH、Fritsch T、Borde S、Verhoeyen E、Matosevic S
单位
Department of Industrial and Molecular Pharmaceutics, Purdue University, West Lafayette, IN, United States.United States
期刊
Journal of immunology (Baltimore, Md. : 1950)2026 Jun 7
原文标识
PubMed 42358009 · DOI 10.1093/jimmun/vkag133