Residential Collegefalse
Status已發表Published
An Ultrasound-Triggered STING Pathway Nanoagonist for Enhanced Chemotherapy-Induced Immunogenic Cell Death
Tian, Ye1,2; Tian, Hao1,2; Li, Bei1,2; Feng, Chuanliang3; Dai, Yunlu1,2
2024-01
Source PublicationSmall
ISSN1613-6810
Volume20Issue:26
Abstract

Although chemotherapy has the potential to induce tumor immunotherapy via immunogenic cell death (ICD) effects, how to control the intensity of the immune responses still deserves further exploration. Herein, a controllable ultrasound (US)-triggered chemo-immunotherapy nanoagonist is successfully synthesized by utilizing the pH and reactive oxygen species (ROS) dual-responsive PEG-polyphenol to assemble sonosensitizer zinc oxide (ZnO) and doxorubicin (DOX). The PZnO@DOX nanoparticles have an intelligent disassembly to release DOX and zinc ions in acidic pH conditions. Notably, US irradiation generates ROS by sonodynamic therapy and accelerates the drug release process. Interestingly, after the PZnO@DOX+US treatment, the injured cells release double-stranded DNA (dsDNA) from the nucleus and mitochondria into the cytosol. Subsequently, both the dsDNA and zinc ions bind with cyclic GMP-AMP synthase and activate the stimulator of interferon genes (STING) pathway, resulting in the dendritic cell maturation, ultimately promoting DOX-induced ICD effects and antigen-specific T cell immunity. Therefore, chemotherapy-induced immune responses can be modulated by non-invasive control of US.

KeywordChemo-immunotherapy Immunogenic Cell Death Effects Metal Oxide Nanoparticles Stimulator Of Interferon Genes Pathway Ultrasound
DOI10.1002/smll.202309850
URLView the original
Indexed BySCIE
Language英語English
WOS Research AreaChemistry ; Science & Technology - Other Topics ; Materials Science ; Physics
WOS SubjectChemistry, Multidisciplinary ; Chemistry, Physical ; Nanoscience & Nanotechnology ; Materials Science, Multidisciplinary ; Physics, Applied ; Physics, Condensed Matter
WOS IDWOS:001142235400001
PublisherWILEY-V C H VERLAG GMBHPOSTFACH 101161, 69451 WEINHEIM, GERMANY
Scopus ID2-s2.0-85182486548
Fulltext Access
Citation statistics
Document TypeJournal article
CollectionDEPARTMENT OF PUBLIC HEALTH AND MEDICINAL ADMINISTRATION
Corresponding AuthorDai, Yunlu
Affiliation1.Cancer Center and Institute of Translational Medicine, Faculty of Health Sciences, University of Macau, Taipa, SAR, 999078, Macao
2.MoE Frontiers Science Center for Precision Oncology, University of Macau, Taipa, SAR, 999078, Macao
3.State Key Lab of Metal Matrix Composites, School of Materials Science and Engineering, Shanghai Jiaotong University, Shanghai, Dongchuan Road 800, 200240, China
First Author AffilicationCancer Centre;  University of Macau
Corresponding Author AffilicationCancer Centre;  University of Macau
Recommended Citation
GB/T 7714
Tian, Ye,Tian, Hao,Li, Bei,et al. An Ultrasound-Triggered STING Pathway Nanoagonist for Enhanced Chemotherapy-Induced Immunogenic Cell Death[J]. Small, 2024, 20(26).
APA Tian, Ye., Tian, Hao., Li, Bei., Feng, Chuanliang., & Dai, Yunlu (2024). An Ultrasound-Triggered STING Pathway Nanoagonist for Enhanced Chemotherapy-Induced Immunogenic Cell Death. Small, 20(26).
MLA Tian, Ye,et al."An Ultrasound-Triggered STING Pathway Nanoagonist for Enhanced Chemotherapy-Induced Immunogenic Cell Death".Small 20.26(2024).
Files in This Item:
There are no files associated with this item.
Related Services
Recommend this item
Bookmark
Usage statistics
Export to Endnote
Google Scholar
Similar articles in Google Scholar
[Tian, Ye]'s Articles
[Tian, Hao]'s Articles
[Li, Bei]'s Articles
Baidu academic
Similar articles in Baidu academic
[Tian, Ye]'s Articles
[Tian, Hao]'s Articles
[Li, Bei]'s Articles
Bing Scholar
Similar articles in Bing Scholar
[Tian, Ye]'s Articles
[Tian, Hao]'s Articles
[Li, Bei]'s Articles
Terms of Use
No data!
Social Bookmark/Share
All comments (0)
No comment.
 

Items in the repository are protected by copyright, with all rights reserved, unless otherwise indicated.