4.2 Article

Study on Bacterial Antiadhesiveness of Stiffness and Thickness Tunable Cross-Linked Phospholipid Copolymer Thin-Film

期刊

ACS APPLIED BIO MATERIALS
卷 3, 期 2, 页码 1079-1087

出版社

AMER CHEMICAL SOC
DOI: 10.1021/acsabm.9b01041

关键词

cross-linking; phospholipid copolymer; bacterial adhesion; mechanical property; film thickness

资金

  1. Medical Research and Development Programs Focused on Technology Transfers: Development of Advanced Measurement and Analysis Systems (AMED-SENTAN)
  2. Ministry of Education, Culture, Sports, Science and Technology-Japan (MEXT)
  3. China Scholarship Council (CSC)

向作者/读者索取更多资源

Bacterial adhesion on material surfaces is a significant problem in many areas, especially on medical devices. Upon colonizing a surface, bacteria tend to form biofilms and become difficult to eradicate. A multistep process is involved in bacterial biofilm formation, including primary adhesion to material surface and accumulation of bacterial cells. Controlling the primary adhesion of bacteria is an efficient way to manage biofilms. This study focused on the primary adhesion of bacteria on a copolymer thin-film composed of 2-methacryloyloxyethyl phosphorylcholine (MPC), 3-methacryloxypropyl trimethoxysilane (MPTMSi), and 3-(methacryloyloxy) propyl-tris(trimethylsilyloxy) silane (MPTSSi), which has anti-biofouling and thickness and stiffness tunable properties. We modulated the thickness (5-90 nm) and stiffness of the thin-film via changing the polymer concentration in the coating solution (dip coating). All polymer thin-films inhibited Gram-positive Staphylococcus aureus and Gram-negative Pseudomonas aeruginosa primary adhesions. Interestingly, S. aureus adhesion was affected by the thickness and/or stiffness of the thin-film. We conclude that the mechanical property of the thin-film is one of the influential factors determining bacterial adhesion. These findings would be of significance in designing antibacterial materials.

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