Platelet Membrane Coated Cu9S8‐SNAP for Targeting NIR‐II Mild Photothermal Enhanced Chemodynamic/Gas Therapy of Triple‐Negative Breast Cancer

Author:

Wu Danping123ORCID,Chen Xiaoyi3,Yao Shijie23,He Yichen23,Chen Gongning23,Hu Xiaojuan23,Chen Yang23,Lv Zhenye4,Yu Jing1,Jin Ketao5,Cai Yu23,Mou Xiaozhou23

Affiliation:

1. College of Materials Science and Engineering Zhejiang University of Technology Hangzhou 310014 China

2. Center for Rehabilitation Medicine Rehabilitation & Sports Medicine Research Institute of Zhejiang Province Department of Rehabilitation Medicine Cancer Center Zhejiang Provincial People's Hospital (Affiliated People's Hospital) Hangzhou Medical College Hangzhou 310014 China

3. Clinical Research Institute Zhejiang Provincial People's Hospital (Affiliated People's Hospital) Hangzhou Medical College Hangzhou 310014 China

4. General Surgery, Cancer Center Department of Breast Surgery Zhejiang Provincial People's Hospital (Affiliated People's Hospital) Hangzhou Medical College Hangzhou 310014 China

5. Department of Gastrointestinal, Colorectal and Anal Surgery Affiliated Hangzhou First People’s Hospital, School of Medicine Westlake University Hangzhou 310006 China

Abstract

AbstractTriple‐negative breast cancer (TNBC) is a highly aggressive and uncommon subtype of breast cancer with a poor prognosis. It is crucial to prioritise the creation of a nanotherapeutic method that is highly selective and actively targeting TNBC. This study explores a new nanosystem, Cu9S8‐SNAP@PM (C‐S@P), composed of Cu9S8‐SNAP coated with a platelet membrane (PM). The purpose of this nanosystem is to cure TNBC using multimodal therapy. The utilisation of PM‐coated nanoparticles (NPs) enables active targeting, leading to the efficient accumulation of C‐S@P within the tumour. The Cu9S8 component within these NPs serves the potential to exert photothermal therapy (PTT) and chemodynamic therapy (CDT). Simultaneously, the S‐Nitroso‐N‐Acetylvanicillamine (SNAP) component enables nitric oxide (NO) gas therapy (GT). Furthermore, when exposed to NIR‐II laser light, Cu9S8 not only increases the temperature of the tumour area for PTT, but also boosts CDT and stimulates the release of NO through thermal reactions to improve the effectiveness of GT. Both in vitro and in vivo experimental results validate that C‐S@P exhibits minimal side effects and represents a multifunctional nano‐drug targeted at tumors for efficient treatment. This approach promises significant potential for TNBC therapy and broader applications in oncology.

Funder

Natural Science Foundation of Zhejiang Province

National Natural Science Foundation of China

Medical Technology and Education of Zhejiang Province of China

Zhejiang Traditional Chinese Medicine Administration

Publisher

Wiley

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