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Closed-Loop Control of Macrophage Engineering Enabled by Focused-Ultrasound Responsive Mechanoluminescence Nanoplatform for Precise Cancer Immunotherapy
2024
发表期刊SMALL (IF:13.0[JCR-2023],13.5[5-Year])
ISSN1613-6810
EISSN1613-6829
发表状态已发表
DOI10.1002/smll.202401398
摘要

Macrophage engineering has emerged as a promising approach for modulating the anti-tumor immune response in cancer therapy. However, the spatiotemporal control and real-time feedback of macrophage regulatory process is still challenging, leading to off-targeting effect and delayed efficacy monitoring therefore raising risk of immune overactivation and serious side effects. Herein, a focused ultrasound responsive immunomodulator-loaded optical nanoplatform (FUSION) is designed to achieve spatiotemporal control and status reporting of macrophage engineering in vivo. Under the stimulation of focused ultrasound (FUS), the immune agonist encapsulated in FUSION can be released to induce selective macrophage M1 phenotype differentiation at tumor site and the near-infrared mechanoluminescence of FUSION is generated simultaneously to indicate the initiation of immune activation. Meanwhile, the persistent luminescence of FUSION is enhanced due to hydroxyl radical generation in the pro-inflammatory M1 macrophages, which can report the effectiveness of macrophage regulation. Then, macrophages labeled with FUSION as a living immunotherapeutic agent (FUSION-M) are utilized for tumor targeting and focused ultrasound activated, immune cell-based cancer therapy. By combining the on-demand activation and feedback to form a closed loop, the nanoplatform in this work holds promise in advancing the controllability of macrophage engineering and cancer immunotherapy for precision medicine. © 2024 Wiley-VCH GmbH.

关键词Chemical activation Diseases Feedback Infrared devices Macrophages Tumors Ultrasonics Bio-imaging Cancer immunotherapy Cancer therapy Closed-loop control Focused ultrasound Immunomodulators Macrophage engineering Mechanoluminescence nanomaterial Optical- Spatiotemporal control
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收录类别SCI ; EI
语种英语
资助项目National Natural Science Foundation of China[82001945] ; Shanghai Pujiang Program[20PJ1410700] ; Centre for High-resolution Electron Microscopy (ChEM), School of Physical Science and Technology, ShanghaiTech University[EM02161943]
WOS研究方向Chemistry ; Science & Technology - Other Topics ; Materials Science ; Physics
WOS类目Chemistry, Multidisciplinary ; Chemistry, Physical ; Nanoscience & Nanotechnology ; Materials Science, Multidisciplinary ; Physics, Applied ; Physics, Condensed Matter
WOS记录号WOS:001283373100001
出版者John Wiley and Sons Inc
EI入藏号20243216816322
EI主题词Bioimaging
EI分类号461.2 Biological Materials and Tissue Engineering ; 461.9.1 Immunology ; 731.1 Control Systems ; 746 Imaging Techniques ; 753.1 Ultrasonic Waves ; 802.2 Chemical Reactions ; 804 Chemical Products Generally
原始文献类型Article in Press
文献类型期刊论文
条目标识符https://kms.shanghaitech.edu.cn/handle/2MSLDSTB/411243
专题物质科学与技术学院
物质科学与技术学院_硕士生
物质科学与技术学院_博士生
物质科学与技术学院_PI研究组_朱幸俊组
通讯作者Zhu, Xingjun
作者单位
1.School of Physical Science and Technology, ShanghaiTech University, 393 Middle Huaxia Road, Shanghai; 201210, China
2.Department of Materials Science and Engineering, Stanford University, 496 Lomita Mall, Stanford; CA; 94305, United States
3.State Key Laboratory of Advanced Medical Materials and Devices, ShanghaiTech University, 393 Middle Huaxia Road, Shanghai; 201210, China
4.Shanghai Clinical Research and Trial Center, Shanghai, China
第一作者单位物质科学与技术学院
通讯作者单位物质科学与技术学院;  上海科技大学
第一作者的第一单位物质科学与技术学院
推荐引用方式
GB/T 7714
Xu, Sixin,Meng, Lingkai,Hu, Qian,et al. Closed-Loop Control of Macrophage Engineering Enabled by Focused-Ultrasound Responsive Mechanoluminescence Nanoplatform for Precise Cancer Immunotherapy[J]. SMALL,2024.
APA Xu, Sixin.,Meng, Lingkai.,Hu, Qian.,Li, Fang.,Zhang, Jieying.,...&Zhu, Xingjun.(2024).Closed-Loop Control of Macrophage Engineering Enabled by Focused-Ultrasound Responsive Mechanoluminescence Nanoplatform for Precise Cancer Immunotherapy.SMALL.
MLA Xu, Sixin,et al."Closed-Loop Control of Macrophage Engineering Enabled by Focused-Ultrasound Responsive Mechanoluminescence Nanoplatform for Precise Cancer Immunotherapy".SMALL (2024).
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