Black phosphorus boosts wet-tissue adhesion of composite patches by enhancing water absorption and mechanical properties

Wet-tissue adhesives have long been attractive materials for realizing complicated biomedical functions. However, the hydration film on wet tissues can generate a boundary, forming hydrogen bonds with the adhesives that weaken adhesive strength. Introducing black phosphorus (BP) is believed to enhan...

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Veröffentlicht in:Nature communications 2024-02, Vol.15 (1), p.1618-1618, Article 1618
Hauptverfasser: Zhang, Yuanchi, Li, Cairong, Guo, Along, Yang, Yipei, Nie, Yangyi, Liao, Jiaxin, Liu, Ben, Zhou, Yanmei, Li, Long, Chen, Zhitong, Zhang, Wei, Qin, Ling, Lai, Yuxiao
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Sprache:eng
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Zusammenfassung:Wet-tissue adhesives have long been attractive materials for realizing complicated biomedical functions. However, the hydration film on wet tissues can generate a boundary, forming hydrogen bonds with the adhesives that weaken adhesive strength. Introducing black phosphorus (BP) is believed to enhance the water absorption capacity of tape-type adhesives and effectively eliminate hydration layers between the tissue and adhesive. This study reports a composite patch integrated with BP nanosheets (CPB) for wet-tissue adhesion. The patch’s improved water absorption and mechanical properties ensure its immediate and robust adhesion to wet tissues. Various bioapplications of CPB are demonstrated, such as rapid hemostasis (within ~1-2 seconds), monitoring of physical-activity and prevention of tumour-recurrence, all validated via in vivo studies. Given the good practicability, histocompatibility and biodegradability of CPB, the proposed patches hold significant promise for a wide range of biomedical applications. The utility of wet-tissue adhesives has been impeded by the suboptimal adhesive strength. Here the authors report a composite patch integrated with BP nanosheets that improve the wet-tissue adhesion by enhancing the water absorption and mechanical properties of the patch and demonstrate the uses of the patch in hemostasis, physical-activity monitoring and tumour-recurrence prevention.
ISSN:2041-1723
2041-1723
DOI:10.1038/s41467-024-46003-6