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颗粒内双散射解码声遗传学用于增强免疫检查点阻断与 CAR-T 疗法

英文原题:Intraparticle Double-Scattering-Decoded Sonogenetics for Augmenting Immune Checkpoint Blockade and CAR-T Therapy.

查看英文原题

Intraparticle Double-Scattering-Decoded Sonogenetics for Augmenting Immune Checkpoint Blockade and CAR-T Therapy.

PubMed 2022/09/25(内容时间) Adv Sci (Weinh) Q1 · IF 14.1(JCR 2025)

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中文摘要

在T细胞上基因改造新的嵌合抗原受体(CAR)是实现CAR-T 免疫治疗的一种普遍方法。然而,该方法无法完全解决浸润不良、复杂的免疫抑制性肿瘤微环境(ITM)以及免疫细胞不足这三大障碍,这三大障碍被认为是阻碍CAR-T 和免疫检查点阻断(ICB)免疫疗法对实体瘤的运输和持久性的主要难题。为解决这三大障碍,设计了一种声免疫工程纳米平台,其中摇铃型结构载体能够在声动力过程中通过颗粒内双散射产生大量活性氧(ROS)。丰富的ROS积累可直接杀死肿瘤细胞、释放抗原并激活系统性免疫应答以扩增效应T细胞或CAR-T 细胞,同时通过免疫抑制性巨噬细胞极化和减少促肿瘤细胞因子分泌来缓解ITM。

此外,共载的磷酸二酯酶-5抑制剂释放一氧化氮(NO)以推动血管正常化并打开浸润屏障(IB),使更多T细胞进入肿瘤。系统性实验证明了这种颗粒内双散射解码声遗传学在声免疫工程纳米平台中扩增效应T细胞或CAR-T 细胞的可行性,从而促进其浸润肿瘤并缓解ITM。这些有力的作用促成了优异的CAR-T 和ICB免疫疗法对抗实体瘤并抑制肿瘤转移。

展开英文摘要原文

Genetically arming new chimeric antigen receptors (CARs) on T cells is a prevalent method to fulfill CAR-T immunotherapy.

However, this approach fails to completely address the poor infiltration, complex immunosuppressive tumor microenvironment (ITM), and insufficient immune cells, which are recognized as the three dominant hurdles to discouraging the trafficking and persistence of CAR-T and immune checkpoint blockade (ICB) immunotherapies against solid tumors.

To address the three hurdles, a sonoimmunity-engineered nanoplatform is designed in which a rattle-type-structured carrier enables intraparticle-double-scattering to generate massive reactive oxygen species (ROS) during the sonodynamic process. Abundant ROS accumulation can directly kill tumor cells, release antigens, and activate systematic immune responses for expanding effector T or CAR-T cells, while alleviating ITM via immunosuppressive macrophage polarization and reduction in pro-tumorigenic cytokine secretion.

Furthermore, the co-loaded phosphodiesterase-5 inhibitors release nitric oxide (NO) to impel vascular normalization and open the infiltration barrier (IB) for allowing more T cells to enter into the tumor.

Systematic experiments demonstrate the feasibility of such intraparticle-double-scattering-decoded sonogenetics in the sonoimmunity-engineered nanoplatforms for expanding effector T or CAR-T cells, thereby promoting their infiltration into tumors and alleviating ITM. These compelling actions lead to excellent CAR-T and ICB immunotherapies against solid tumors with repressed tumor metastasis.

论文信息

作者
Wang D、Zhang M、Zhang Y、Qiu G、Chen J、Zhu X、Kong C、Lu X
单位
Department of Medical Ultrasound, Department of Interventional Therapy and Department of Gastrointestinal Surgery, Guangxi Medical University Cancer Hospital, Guangxi Medical University, No. 71 Hedi Road, Nanning, 530021, P. R. China.China
文献类型
非美国政府资助研究
期刊
Advanced science (Weinheim, Baden-Wurttemberg, Germany)2022 Nov
原文标识
PubMed 36156442 · DOI 10.1002/advs.202203106