Literature DB >> 25944564

Advanced biopolymer-coated drug-releasing titania nanotubes (TNTs) implants with simultaneously enhanced osteoblast adhesion and antibacterial properties.

Tushar Kumeria1, Htwe Mon2, Moom Sinn Aw1, Karan Gulati1, Abel Santos1, Hans J Griesser3, Dusan Losic4.   

Abstract

Here, we report on the development of advanced biopolymer-coated drug-releasing implants based on titanium (Ti) featuring titania nanotubes (TNTs) on its surface. These TNT arrays were fabricated on the Ti surface by electrochemical anodization, followed by the loading and release of a model antibiotic drug, gentamicin. The osteoblastic adhesion and antibacterial properties of these TNT-Ti samples are significantly improved by loading antibacterial payloads inside the nanotubes and modifying their surface with two biopolymer coatings (PLGA and chitosan). The improved osteoblast adhesion and antibacterial properties of these drug-releasing TNT-Ti samples are confirmed by the adhesion and proliferation studies of osteoblasts and model Gram-positive bacteria (Staphylococcus epidermidis). The adhesion of these cells on TNT-Ti samples is monitored by fluorescence and scanning electron microscopies. Results reveal the ability of these biopolymer-coated drug-releasing TNT-Ti substrates to promote osteoblast adhesion and proliferation, while effectively preventing bacterial colonization by impeding their proliferation and biofilm formation. The proposed approach could overcome inherent problems associated with bacterial infections on Ti-based implants, simultaneously enabling the development of orthopedic implants with enhanced and synergistic antibacterial functionalities and bone cell promotion. Crown
Copyright © 2015. Published by Elsevier B.V. All rights reserved.

Entities:  

Keywords:  Biopolymer coating; Bone implants; Drug release; Osteoblast cells; Staphylococcus epidermidis; Titania nanotubes

Mesh:

Substances:

Year:  2015        PMID: 25944564     DOI: 10.1016/j.colsurfb.2015.04.021

Source DB:  PubMed          Journal:  Colloids Surf B Biointerfaces        ISSN: 0927-7765            Impact factor:   5.268


  11 in total

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7.  Controlled and sustained drug release performance of calcium sulfate cement porous TiO2 microsphere composites.

Authors:  Wei Luo; Zhen Geng; Zhaoyang Li; Shuilin Wu; Zhenduo Cui; Shengli Zhu; Yanqin Liang; Xianjin Yang
Journal:  Int J Nanomedicine       Date:  2018-11-14

8.  Enhanced antibacterial and anticancer properties of Se-NPs decorated TiO2 nanotube film.

Authors:  Ondrej Bilek; Zdenka Fohlerova; Jaromir Hubalek
Journal:  PLoS One       Date:  2019-03-22       Impact factor: 3.240

9.  Improved osteogenic activity and inhibited bacterial biofilm formation on andrographolide-loaded titania nanotubes.

Authors:  Eryou Feng; Kaiwei Shen; Feitai Lin; Wentao Lin; Tao Zhang; Yiyuan Zhang; Fengfei Lin; Yun Yang; Changjian Lin
Journal:  Ann Transl Med       Date:  2020-08

10.  Development of an anti-infective coating on the surface of intraosseous implants responsive to enzymes and bacteria.

Authors:  Xin Liao; Xingfang Yu; Haiping Yu; Jiaqi Huang; Bi Zhang; Jie Xiao
Journal:  J Nanobiotechnology       Date:  2021-08-12       Impact factor: 10.435

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