Bioactive citrate-based polyurethane tissue adhesive for fast sealing and promoted wound healing

Author:

Li Yan1,Liu Jiawei1,Lian Chenxi1,Yang He1,Zhang Mingjiang1,Wang Youfa1,Dai Honglian123ORCID

Affiliation:

1. State Key Laboratory of Advanced Technology for Materials Synthesis and Processing, Biomedical Materials and Engineering Research Center of Hubei Province, Wuhan University of Technology , Wuhan 430070, China

2. Chaozhou Branch of Chemistry and Chemical Engineering Guangdong Laboratory , Chaozhou 521000, China

3. Shenzhen Research Institute of Wuhan University of Technology , Shenzhen 518000, China

Abstract

Abstract As a superior alternative to sutures, tissue adhesives have been developed significantly in recent years. However, existing tissue adhesives struggle to form fast and stable adhesion between tissue interfaces, bond weakly in wet environments and lack bioactivity. In this study, a degradable and bioactive citrate-based polyurethane adhesive is constructed to achieve rapid and strong tissue adhesion. The hydrophobic layer was created with polycaprolactone to overcome the bonding failure between tissue and adhesion layer in wet environments, which can effectively improve the wet bonding strength. This citrate-based polyurethane adhesive provides rapid, non-invasive, liquid-tight and seamless closure of skin incisions, overcoming the limitations of sutures and commercial tissue adhesives. In addition, it exhibits biocompatibility, biodegradability and hemostatic properties. The degradation product citrate could promote the process of angiogenesis and accelerate wound healing. This study provides a novel approach to the development of a fast-adhering wet tissue adhesive and provides a valuable contribution to the development of polyurethane-based tissue adhesives.

Funder

National Natural Science Foundation of China

Key Basic Research Program of Shenzhen

Guangdong Basic and Applied Basic Research Foundation

Self-innovation Research Funding Project of Hanjiang Laboratory

Publisher

Oxford University Press (OUP)

Subject

Biomaterials

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