A “Transformers”‐like nanochain for precise navigation and efficient cancer treatment

Author:

Tian Sichao123ORCID,Zeng Qian4,Hu Zhanglu3,Zhang Weidong35,Ao Zhuo4,Han Dong467,Xu Qing‐Hua12ORCID

Affiliation:

1. Department of Chemistry National University of Singapore Singapore Singapore

2. National University of Singapore (Suzhou) Research institute Suzhou China

3. Institute of Medicinal Plant Development Chinese Academy of Medical Sciences and Peking Union Medical College Beijing China

4. CAS Center for Excellence in Nanoscience National Center for Nanoscience and Technology Beijing China

5. School of Pharmacy Second Military Medical University Shanghai China

6. School of Future Technology University of Chinese Academy of Sciences Beijing China

7. College of Life Sciences Beijing University of Chinese Medicine Beijing China

Abstract

AbstractIntegrated multimodal imaging in theranostics nanomaterials offers extensive prospects for precise and noninvasive cancer treatment. Precisely controlling the structural evolution of plasmonic nanoparticles is crucial in the development of photothermal agents. However, previous successes have been limited to static assemblies and single‐component structures. Here, an activatable plasmonic theranostics system utilizing self‐assembled 1D silver‐coated gold nanochains (1D nanochains) is presented for precise tumor diagnosis and effective treatment. The absorbance of the adaptable core–shell chain structure can shift from visible to near‐infrared (NIR) regions due to the fusion between nearby Au@Ag nanoparticles induced by elevated H2O2 levels in the tumor microenvironment (TME), resulting in the creation of a novel 3D aggregates with strong NIR absorption. With a high photothermal conversion efficiency of 60.2% at 808 nm, nanochains utilizing the TME‐activated characteristics show remarkable qualities for photoacoustic imaging and significantly limit tumor growth in vivo. This study may pave the way for precise tumor diagnosis and treatment through customizable, optically tunable adaptive plasmonic nanostructures.

Funder

Chinese Academy of Sciences

Science and Technology Support Program of Jiangsu Province

Ministry of Education - Singapore

Publisher

Wiley

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