2 / 2020-09-27 11:36:07
Single-step fabrication of catechol-ε-poly-L-lysine antimicrobial paint that prevents superbug infection and promotes osteoconductivity of titanium implants
Surface modification Mussel-inspired Antimicrobial peptides Osteoconduction Bio-inspired mineralization
全文待审
淼徐 / 南京工业大学
霍静静 / 西北工业大学
鹏李 / 西北工业大学
Prevention of infection and promotion of osteoconduction are the key factors to achieve long-term success in orthopaedic implants. In this work, an effective antimicrobial and osteoconductive coating is facilely prepared by the cross-linking of ε-poly-L-lysine (EPL) and catechol (abbreviated as EPLC) via a one-step mussel-inspired chemistry. A series of EPLC paints were prepared by catechol (15 mM) and varying concentrations of EPL (30, 40, and 50 mM) and named as EPLC1, EPLC2, and EPLC3. The coatings were easy to paint on implants. EPLC3 with the highest EPL concentration exhibited the most potent antimicrobial activity (greater than 99.99%) against both Gram-negative bacteria Escherichia coli (E. coli) and Gram-positive “superbug” methicillin-resistant Staphylococcus aureus (MRSA), and inhibited the biofilm formation of MRSA up to one week. Furthermore, the EPLC3 painted Ti implant was capable of reducing more than 3-log bacterial burden in a rodent subcutaneous infection model infected by MRSA. More interestingly, EPLC3 coating increased the osteoconductivity of Ti surfaces by promoting mouse pre-osteoblast MC3T3-E1 adhesion and proliferation. And the EPLC3 painted Ti surfaces could induce hydroxyapatite (HAp) formation after incubation in simulating human body fluids (SBF) within two weeks. Overall, the mussel-inspired EPLC paint can be easily applied to orthopaedic implants.
重要日期
  • 会议日期

    11月06日

    2020

    11月08日

    2020

  • 09月30日 2020

    初稿截稿日期

  • 11月08日 2020

    注册截止日期

主办单位
全国卫生产业企业管理协会抗菌产业分会
中关村汇智抗菌新材料产业技术创新联盟
广东省微生物研究所
纤维材料改性国家重点实验室
深圳大学
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