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Janus 纳米粒子的光热推进和热释电势促进的细胞内化及热释电动力学肿瘤治疗。

Photothermal Propelling and Pyroelectric Potential-Promoted Cell Internalization of Janus Nanoparticles and Pyroelectrodynamic Tumor Therapy.

机构信息

Institute of Biomedical Engineering, College of Medicine, Southwest Jiaotong University, Chengdu, 610031, P. R. China.

Key Laboratory of Advanced Technologies of Materials, Ministry of Education, School of Materials Science and Engineering, Southwest Jiaotong University, Chengdu, 610031, P. R. China.

出版信息

Adv Healthc Mater. 2023 Jul;12(18):e2300338. doi: 10.1002/adhm.202300338. Epub 2023 Mar 13.

Abstract

Cancer phototherapy experiences limitations in tissue diffusion and cell internalization of phototherapeutic agents and dose-dependent side effects. Herein, Janus pyroelectric nanoparticles (NPs) are designed to generate self-powered motion and built-in electric fields to overcome the delivery barriers. Polydopamine (PDA) layers are partially coated on tetragonal BaTiO (tBT) NPs to prepare Janus tBT@PDA, and Au NPs are deposited on the PDA caps to obtain Janus tBT@PDA-Au NPs. Near-infrared (NIR) illumination of tBT@PDA-Au builds in situ pyroelectric potentials on NPs, which selectively affect the membrane potential of tumor cells rather than normal cells to enhance tumor cell internalization and produce reactive oxygen species (ROS) for pyroelectric dynamic therapy (PEDT). The asymmetric photothermal effect of the Janus NPs creates thermophoretic force to propel NP motion, which enhances tumor diffusion and cellular uptake of NPs and boosts cytotoxicity and intracellular ROS levels. The inoculation of Au NPs increases the photothermal effect, exhibits larger motion velocities, produces higher pyroelectric potentials, and elevates cellular uptake rates, resulting in significant induction of tumor cell apoptosis, suppression of tumor growth, and extension of animal survival. Thus, the concise design of tBT@PDA-Au/NIR treatment has achieved thermophoretic motion-promoted tissue diffusion, built-in electric field-enhanced cell internalization, and photothermal/PEDT-synergized antitumor efficacy.

摘要

癌症光疗在光疗剂的组织扩散和细胞内化以及剂量依赖性副作用方面存在局限性。在此,设计了 Janus 热电纳米粒子(NPs)以产生自供电运动和内置电场来克服输送障碍。部分聚多巴胺(PDA)层涂覆在四方 BaTiO(tBT)NPs 上以制备 Janus tBT@PDA,并在 PDA 帽上沉积 Au NPs 以获得 Janus tBT@PDA-Au NPs。tBT@PDA-Au 的近红外(NIR)照射在 NPs 上建立了原位热电势,这选择性地影响肿瘤细胞而不是正常细胞的膜电位以增强肿瘤细胞内化并产生用于热电动态治疗(PEDT)的活性氧(ROS)。Janus NPs 的不对称光热效应产生热泳力来推动 NP 运动,从而增强 NP 在肿瘤中的扩散和细胞摄取,并增强细胞毒性和细胞内 ROS 水平。Au NPs 的接种增加了光热效应,表现出更大的运动速度,产生更高的热电势,并提高了细胞摄取率,从而显著诱导肿瘤细胞凋亡,抑制肿瘤生长,并延长动物存活时间。因此,tBT@PDA-Au/NIR 处理的简洁设计实现了热泳运动促进的组织扩散、内置电场增强的细胞内化以及光热/PEDT 协同的抗肿瘤功效。

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