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原位 Au 生物反应器增强的微波遗传学重编程细胞外基质黏度阻断 CAR-T 免疫治疗中的肿瘤逃逸

英文原题:Extracellular Matrix Viscosity Reprogramming by In Situ Au Bioreactor-Boosted Microwavegenetics Disables Tumor Escape in CAR-T Immunotherapy.

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Extracellular Matrix Viscosity Reprogramming by In Situ Au Bioreactor-Boosted Microwavegenetics Disables Tumor Escape in CAR-T Immunotherapy.

PubMed 2023/03/14(内容时间) ACS Nano Q1 · IF 17.3(JCR 2025)

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中文摘要

由热量扩散不受控制所致的不完全微波消融(iMWA)会加剧免疫抑制性肿瘤微环境(ITM),进而削弱常用的免疫检查点阻断联合免疫疗法对肿瘤复发的控制。

本研究成功构建一种瘤内合成金(Au)生物反应器,可在填充热敏水凝胶的肿瘤中分散热量并提高能量利用效率,从而扩大有效消融区(EAZ)、克服iMWA,并同时建立和增强由多种生物过程调控的微波遗传效应。更重要的是,我们将细胞外基质(ECM)黏度确定为一种普遍的免疫逃逸“靶点”。通过重塑ECM成分和细胞黏附分子等,利用黏度重编程阻断这一物理靶点,为调控黏度靶点提供有效工具。

因此,原位Au生物反应器扩大EAZ并增强微波遗传效应,可逆转免疫荒漠型肿瘤微环境、减轻ITM、分泌募集免疫细胞的趋化因子,并募集和极化多种免疫细胞及激活或重新激活它们,包括树突状细胞、NK 细胞、M1型巨噬细胞和效应CD8⁺或CAR-T 细胞。通过这些多重作用,原位溶瘤Au生物反应器可激发CAR-T 免疫疗法,显著增强其对iMWA后肿瘤进展和复发的抑制作用,从而为增强iMWA和CAR-T 免疫疗法提供一种通用方法。

展开英文摘要原文

Incomplete microwave ablation (iMWA) caused by uncontrollable heat diffusion enhances the immunosuppressive tumor microenvironment (ITM), consequently disabling the prevalent immune checkpoint blockade-combined immunotherapy against tumor recurrence.

Herein, we successfully constructed an intratumorally synthesized Au bioreactor to disperse heat in thermally sensitive hydrogel-filled tumors and improve the energy utilization efficiency, which magnified the effective ablation zone (EAZ), counteracted iMWA, and simultaneously established and enhanced multiple biological process-regulated microwavegenetics. More significantly, we identified the extracellular matrix (ECM) viscosity as a general immune escape "target". After remodeling ECM, including ECM ingredients and cell adhesion molecules, this physical target was blocked by viscosity reprogramming, furnishing an effective tool to regulate the viscosity target.

Thereby, such in situ Au bioreactor-enlarged EAZ and enhanced microwavegenetics reversed the immune-desert tumor microenvironment, mitigated ITM, secreted immune cell-attracting chemokines, recruited and polarized various immune cells, and activated or reactivated them like dendritic cells, natural killing cells, M1-type macrophages, and effector CD8+ or CAR-T cells.

Contributed by these multiple actions, the in situ oncolytic Au bioreactors evoked CAR-T immunotherapy to acquire a considerably increased inhibition effect against tumor progression and recurrence after iMWA, thus providing a general method to enhance iMWA and CAR-T immunotherapy.

论文信息

作者
Wang D、Zhang M、Qiu G、Rong C、Zhu X、Qin G、Kong C、Zhou J
单位
Department of Medical Ultrasound, Department of Gastrointestinal Surgery, National Center for International Research of Bio-targeting Theranostics, Guangxi Medical University Cancer Hospital, Guangxi Medical University. No. 71 Hedi Road, Nanning 530021, Guangxi, P.R. China.China
文献类型
非美国政府资助研究
期刊
ACS nano2023 Mar 28
原文标识
PubMed 36917088 · DOI 10.1021/acsnano.2c10845