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ACS Applied Materials & Interfaces

ACS Applied Materials & Interfaces

IF: 8.3
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Dynamic Diselenide Hydrogels for Controlled Tumor Organoid Culture and Dendritic Cell Vaccination

Published:4 December 2024 DOI: 10.1021/acsami.4c18728 PMID: 39631374
Yueying Han,?Cheng Liu,?Sheng Yin,?Jian Cui,?Yang Sun,?Bin Xue,?Chunping Jiang,?Xiaosong Gu,?Meng Qin,?Wei Wang,?Huaping Xu,?Yi Cao

Abstract

Dynamic hydrogels are emerging as advanced materials for engineering tissue-like environments that mimic cellular microenvironments. We introduce a diselenide-cross-linked hydrogel system with light-responsive properties, designed for precise control of tumor organoid growth and light-initiated radical inactivation, particularly for dendritic cell (DC) vaccines. Diselenide exchange enables stress relaxation and hydrogel remodeling, while recombination and quenching of seleno radicals (Se?) reduce cross-linking density, leading to controlled degradation. We demonstrate a 2D to 3D growth strategy, where tumor cells inoculate on the hydrogel surface, expand, and gradually form spherical organoids within the 3D hydrogel. These tumor organoids show significantly higher drug resistance compared to 2D-cultured cells. High-density light irradiation enhances diselenide exchange, inducing hydrogel degradation, tumor cell death, and release of functional antigens. This system serves as a dynamic platform for tumor organoid culture and antigen release, offering significantly advanced approaches for in vitro tumor modeling and immunological research. Our findings position diselenide-cross-linked hydrogels as versatile materials for precision cellular engineering, with broad applications in cancer research and beyond.

Substances (2)

Materials
Procduct Name CAS Molecular Formula Supplier Price
Dimethyl sulfoxide 67-68-5 C2H6OS 1342 suppliers $15.00-$120900.00
4-BROMOBUTYRYL CHLORIDE 927-58-2 C4H6BrClO 210 suppliers $6.00-$1177.63

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