4.8 Article

Applying Thermosettable Zwitterionic Copolymers as General Fouling-Resistant and Thermal-Tolerant Biomaterial Interfaces

期刊

ACS APPLIED MATERIALS & INTERFACES
卷 7, 期 19, 页码 10096-10107

出版社

AMER CHEMICAL SOC
DOI: 10.1021/acsami.5b01756

关键词

zwitterionic copolymer; temperature tolerance; fouling-resistant; thermosetting; charge neutrality; sulfobetaine methacrylate

资金

  1. project of Outstanding Professor Research Program in the Chung Yuan Christian University, Taiwan [CYCU-00RD-RA002-11757]
  2. Ministry of Science and Technology [100-2221-E-006-165-MY2, 102-2221-E-033-009-MY3, 103-2221-E-033-078-MY3]

向作者/读者索取更多资源

We introduced a thermosettable zwitterionic copolymer to design a high temperature tolerance biomaterial as a general antifouling polymer interface: The original synthetic fouling-resistant copolymer, poly(vinylpyrrolidone)co-poly(sulfobetaine methacrylate) (poly(VP-co-SBMA)), is both thermal-tolerant and fouling-resistant, and the antifouling stability of copolymer coated interfaces can be effectively controlled by regulating the VP/SBMA composition ratio. We studied poly(VP-co-SBIVIA) copolymer gels and networks with a focus on their general resistance to protein, tell, and bacterial bioadhesion, as influenced by the thermosetting process. Interestingly, we found that the shape of the poly(VP-co-SBMA) copolymer material can be set at a high annealing temperature of 200 C while maintaining good antifouling properties. However, while the zwitterionic PSBMA. polymer gels were bioinert as expected, control of the fouling resistance of the PSBMA polymer networks was lost in the high temperature annealing process. A poly(VP-co-SBMA) copolymer network composed of PSBMA segments at 32 mol % showed reduced fibrinogen adsorption, tissue Cell adhesion, and bacterial attachment, but a relatively higher PSBMA content of 61 mol % was required to optimize resistance to platelet adhesion and erythrocyte attachment to confer hemocompatibility to human blood. We suggest that poly(VP-co-SBMA) copolymers capable of retaining stable, fouling resistance after high temperature shaping have a potential application as thermosettable materials in a bioinert interface for medical devices, such as the thermosettable coating on a stainless steel blood-compatible metal stent investigated in this study.

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