arrow
Return

Iron–silver-modified quantum dots act as efficient catalysts in anti-cancer multitherapy through controlled, ultrasound-induced oxidation

delete2025-07-10
delete0
PRE
AI
D
Dong Wang
L
Lei Ji
Y
You Li
M
Meng Xu
汪浩 cover
汪浩 (Hao Wang)
S
Sergio Brovelli *
Z
Zeng‐Ying Qiao *
张加涛 cover
张加涛 (Jiatao Zhang) *
Y
Yadong Li
DOI:10.1038/s41565-025-01943-ydelete
deleteOriginal
deleteOriginal request for help
deleteShare
deleteSave
Abstract

Abstract

En 中文
Chemodynamic therapy and sonodynamic therapy are two promising tumour therapeutic strategies. However, lack of highly effective sonosensitizers and control over chemodynamic therapy limit their application. Here we synthesize silver-doped zinc selenide quantum dots with atomically dispersed superficial Fe and show that they act as efficient sonosensitizers, catalysers and immunoreagents. Surface modification with an in situ self-assembly peptide drives accumulation in tumours. Superficial FeIII remains stable and converts to FeII only under ultrasonic processing, reverting to FeIII upon ultrasound cessation. Under ultrasound stimulation, superficial Fe undergoes valence change with concomitant amelioration of the hypoxic tumour microenvironment and production of sonodynamic therapy-beneficial hydroxyl radicals. Furthermore, silver doping suppressed nonradiative recombination of excitons, leading to improved production of singlet oxygen. Meanwhile, selenium promotes robust systemic immune responses for the inhibition of tumour metastases. This nano-platform allows control of valence switching of atomically dispersed catalysts, representing an effective tool for chemodynamic/sonodynamic/immunotherapy. Atomically dispersed surficial iron in silver-doped zinc selenide quantum dots with an in situ self-assembly peptide act as efficient catalysts in anti-cancer multitherapy through controlled, ultrasound-induced oxidation.

Journal

Nature Nanotechnology cover
Nature Nanotechnology
IF:
34.9
Papers:
4.8K
Citations:
8.1W

Organization

U
universitàdegli studi di milano bicocca
Scholars:
1
Papers: 1
Citations: 0
S
School of Materials Science and Engineering
Scholars:
3.4K
Papers: 962
Citations: 5
D
Department of Chemistry
Scholars:
6.9K
Papers: 3.1K
Citations: 7
researcher View more organizations