Fibrous capsule-resistant, controllably degradable and functionalizable zwitterion-albumin hybrid hydrogels

Foreign body response (FBR) represents an immune-mediated cascade reaction capable of inducing the rejection of foreign implants, thereby compromising their in vivo performance. Pure zwitterionic hydrogels have demonstrated the ability to resist long-term FBR, owing to their outstanding antifouling...

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Veröffentlicht in:Biomaterials science 2024-01, Vol.12 (2), p.468-478
Hauptverfasser: Liu, Zuolong, Zhou, Xianchi, Chen, Yongcheng, Ni, Yanwen, Zhu, Zihao, Cao, Wenzhong, Chen, Kexin, Yan, Yu, Ji, Jian, Zhang, Peng
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Sprache:eng
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Zusammenfassung:Foreign body response (FBR) represents an immune-mediated cascade reaction capable of inducing the rejection of foreign implants, thereby compromising their in vivo performance. Pure zwitterionic hydrogels have demonstrated the ability to resist long-term FBR, owing to their outstanding antifouling capabilities. However, achieving such a robust anti-FBR effect necessitates stringent requirements concerning the purity of zwitterionic materials, which constrains their broader functional applications. Herein, we present a biocompatible, controllably degradable, and functionalizable zwitterion-albumin hybrid hydrogel. The zwitterionic hydrogel crosslinked with serum albumin exhibits controllable degradation and excels in preventing the adsorption of various proteins and adhesion of cells and bacteria. Moreover, the hydrogel significantly alleviates the host's FBR compared with PEG hydrogels and particularly outperforms PEG-based cross-linker crosslinked zwitterionic hydrogels in reducing collagen encapsulation when subcutaneously implanted into mice. The zwitterion-albumin hybrid hydrogel shows potential as a functionalizable anti-FBR material in the context of implantable materials and biomedical devices. We present a biocompatible, controllably degradable, and functionalizable zwitterion-albumin hybrid hydrogel with long-term resistance against foreign body responses.
ISSN:2047-4830
2047-4849
DOI:10.1039/d3bm01783d