纳米柱
纳米复合材料
材料科学
纳米技术
抗生素
抗菌活性
生物相容性
微生物学
生物物理学
细菌
生物
纳米结构
冶金
遗传学
作者
Ziting Liu,Yaozhen Yi,Shujin Wang,Haixu Dou,Yong Fan,Limei Tian,Jie Zhao,Luquan Ren
出处
期刊:ACS Nano
[American Chemical Society]
日期:2022-10-11
卷期号:16 (10): 16549-16562
被引量:57
标识
DOI:10.1021/acsnano.2c05980
摘要
Pathogenic bacterial infection and poor native tissue integration are two major issues encountered by biomaterial implants and devices, which are extremely hard to overcome within a single surface, especially for those without involvement of antibiotics. Herein, a self-adaptive surface that can transform from non-antibiotic antibacterial actions to promotion of cell proliferation is developed by in situ assembly of bacteriostatic 3,3'-diaminodipropylamine (DADP)-doped zeolitic imidazolate framework-8 (ZIF-8) on bio-inspired nanopillars. Initially, the nanocomposite surface shows impressive antibacterial effects, even under severe bacterial infection, due to the combination of mechano-bactericidal activity from a nanopillar structure and bacteriostatic activity contributed by pH-responsive release of DADP. After the complete degradation of the ZIF-8 layer, the refurbished nanopillars not only can still physically rupture bacterial membrane but also facilitate mammalian cell proliferation, due to the obvious difference in cell size. More strikingly, the nanocomposite surface totally avoids the usage of antibiotics, eradicating the potential risk of antimicrobial resistance, and the surface exhibited excellent histocompatibility and lower inflammatory response properties as revealed by in vivo tests. This type of self-adaptive surface may provide a promising alternative for addressing the intractable implant-associated requirements, where antibiotic-free antibacterial activity and native tissue integration are both highly needed.
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