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整合免疫检查点抑制的可电离脂质纳米颗粒用于 mRNA CAR-T 细胞工程

英文原题:Ionizable Lipid Nanoparticles with Integrated Immune Checkpoint Inhibition for mRNA CAR T Cell Engineering.

查看英文原题

Ionizable Lipid Nanoparticles with Integrated Immune Checkpoint Inhibition for mRNA CAR T Cell Engineering.

PubMed 2023/08/31(内容时间) Adv Healthc Mater Q1 · IF 11(JCR 2025)

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中文摘要

程序性死亡蛋白 1(PD-1)信号通路是肿瘤微环境中 T 细胞活性减弱的重要原因。通过抗体阻断 PD-1 通路的临床方法已广泛取得成功,但这种方法会导致全身范围的 PD-1 抑制,增加自身免疫反应风险。

本研究报告开发了一种可离子化脂质纳米颗粒(LNP)平台,可同时实现治疗性基因表达和 RNA 干扰(RNAi)介导的 T 细胞基因瞬时敲低。在开发该平台的过程中,研究人员观察到两种 RNA 载荷共包封时存在有趣的相互作用;与单独递送任一载荷相比,共递送可改善表达和敲低特征。研究随后使用这一信使 RNA(mRNA)/小干扰 RNA(siRNA)共递送平台,将 CAR mRNA 和靶向 PD-1 的 siRNA 递送至离体培养的人原代 T 细胞;结果观察到强 CAR 表达和 PD-1 敲低,且总体 T 细胞活化状态未见明显改变。该递送平台在多种免疫工程应用中实现免疫基因瞬时调节方面前景广阔,其中包括开发更优的癌症免疫疗法。

展开英文摘要原文

The programmed cell death protein 1 (PD-1) signaling pathway is a major source of dampened T cell activity in the tumor microenvironment. While clinical approaches to inhibiting the PD-1 pathway using antibody blockade have been broadly successful, these approaches lead to widespread PD-1 suppression, increasing the risk of autoimmune reactions.

This study reports the development of an ionizable lipid nanoparticle (LNP) platform for simultaneous therapeutic gene expression and RNA interference (RNAi)-mediated transient gene knockdown in T cells. In developing this platform, interesting interactions are observed between the two RNA cargoes when co-encapsulated, leading to improved expression and knockdown characteristics compared to delivering either cargo alone.

This messenger RNA (mRNA)/small interfering RNA (siRNA) co-delivery platform is adopted to deliver chimeric antigen receptor (CAR) mRNA and siRNA targeting PD-1 to primary human T cells ex vivo and strong CAR expression and PD-1 knockdown are observed without apparent changes to overall T cell activation state. This delivery platform shows great promise for transient immune gene modulation for a number of immunoengineering applications, including the development of improved cancer immunotherapies.

论文信息

作者
Hamilton AG、Swingle KL、Joseph RA、Mai D、Gong N、Billingsley MM、Alameh MG、Weissman D
单位
Department of Bioengineering, University of Pennsylvania, Philadelphia, PA, 19104, USA.United States
文献类型
非美国政府资助研究 · 美国 NIH 资助研究
期刊
Advanced healthcare materials2023 Dec
原文标识
PubMed 37602495 · DOI 10.1002/adhm.202301515