Enhanced surface hydrophilicity of polylactic acid sutures treated by lipase and chitosan

Author:

Liu Shuqiang1ORCID,Liu Mingfang1,Wu Gaihong1,Zhang Xiaofang1,Yu Juanjuan1,Zhang Yao1,Wang Peng1,Yin Xiaolong1

Affiliation:

1. College of Textile Engineering, Taiyuan University of Technology, China

Abstract

Polylactic acid (PLA) surgical sutures are a new type of absorbable sutures that can be degraded and absorbed in the body. However, there is high hydrophobicity for the surface of PLA sutures, which leads to poor biocompatibility and cellular affinity. In order to increase the hydrophilicity, the PLA sutures were etched by lipase firstly, and then grafted with chitosan. The results indicate that the optimal conditions of treating PLA sutures by lipase were as follows: 45℃ reaction temperature, 4.5 g/L concentration of lipase and 8 h reaction time. The sutures were etched by lipase and then formed some grooves and a number of hydroxyl (-OH) bonds, which led to increased surface area and hydrophilicity, but a drop in mass and strength. The optimal conditions of grafting chitosan onto PLA sutures were as follows: 4 h reaction time and 3 g/L concentration of chitosan. The chitosan grafted and loaded on the surface of PLA sutures, and in some areas of the sutures the chitosan reunited, which led to a rough surface and large friction coefficient. Finally, the hydrophilicity of the PLA sutures, treated by lipase and then grafted with chitosan, was greatly improved.

Funder

Students Innovation And Entrepreneurship Training Program Project of Taiyuan University of Technology

Scientific and Technological Innovation Programs of Higher Education Institutions in Shanxi, China

MOE (Ministry of Education in China) Project of Humanities and Social Sciences

Shanxi University Students Innovation And Entrepreneurship Training Program Project

Shanxi Social Science Association Important Project

2017 Shanxi Philosophy and Social Science Project

Youth Foundation of Taiyuan University of Technology, china

Program for the Philosophy and Social Sciences Research of Higher Learning Institutions of Shanxi

International Visit Program of Taiyuan University of Technology

Publisher

SAGE Publications

Subject

Polymers and Plastics,Chemical Engineering (miscellaneous)

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