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机械免疫驱动的背包维持树突状细胞成熟以实现协同肿瘤放射治疗。

Mechanoimmune-Driven Backpack Sustains Dendritic Cell Maturation for Synergistic Tumor Radiotherapy.

机构信息

State Key Laboratory of Radiation Medicine and Protection, School for Radiological and Interdisciplinary Sciences (RAD-X), Collaborative Innovation Center of Radiation Medicine of Jiangsu Higher Education Institutions, Soochow University, Suzhou 215123, China.

College of Textile and Clothing Engineering, National Engineering Laboratory for Modern Silk, Soochow University, Suzhou, Jiangsu 215123, China.

出版信息

ACS Nano. 2024 Aug 27;18(34):23741-23756. doi: 10.1021/acsnano.4c08701. Epub 2024 Aug 19.

Abstract

Cell backpacks present significant potential in both therapeutic and diagnostic applications, making it essential to further explore their interactions with host cells. Current evidence indicates that backpacks can induce sustained immune responses. Our original objective was to incorporate a model antigen into the backpacks to promote dendritic cell maturation and facilitate antigen presentation, thereby inducing immune responses. However, we unexpectedly discovered that both antigen-loaded backpacks and empty backpacks demonstrated comparable abilities to induce dendritic cell maturation, resulting in nearly identical potency in T-cell proliferation. Our mechanistic studies suggest that the attachment of backpacks induces mechanical forces on dendritic cells via opening the PIEZO1 mechanical ion channel. This interaction leads to the remodeling of the intracellular cytoskeleton and facilitates the production of type I interferons by dendritic cells. Consequently, the mechano-immune-driven dendritic cell backpacks, when combined with radiotherapy, induce a robust antitumor effect. This research presents an avenue for leveraging mechanotransduction to enhance combination immunotherapeutic strategies, potentially leading to groundbreaking advancements in the field.

摘要

细胞背包在治疗和诊断应用中具有重要潜力,因此深入研究它们与宿主细胞的相互作用至关重要。现有证据表明,背包可以诱导持续的免疫反应。我们最初的目的是将模型抗原纳入背包中,以促进树突状细胞成熟并促进抗原呈递,从而诱导免疫反应。然而,我们出人意料地发现,负载抗原的背包和空背包都具有相似的诱导树突状细胞成熟的能力,导致 T 细胞增殖的效力几乎相同。我们的机制研究表明,背包的附着通过打开 PIEZO1 机械离子通道在树突状细胞上施加机械力。这种相互作用导致细胞内细胞骨架的重塑,并促进树突状细胞产生 I 型干扰素。因此,机械免疫驱动的树突状细胞背包与放射治疗相结合,可诱导强烈的抗肿瘤效应。这项研究为利用机械转导来增强联合免疫治疗策略提供了一个途径,可能在该领域取得突破性进展。

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