Literature DB >> 29068546

Diatom-Inspired Silica Nanostructure Coatings with Controllable Microroughness Using an Engineered Mussel Protein Glue to Accelerate Bone Growth on Titanium-Based Implants.

Yun Kee Jo1, Bong-Hyuk Choi1, Chang Sup Kim2, Hyung Joon Cha1.   

Abstract

Silica nanoparticles (SiNPs) have been utilized to construct bioactive nanostructures comprising surface topographic features and bioactivity that enhances the activity of bone cells onto titanium-based implants. However, there have been no previous attempts to create microrough surfaces based on SiNP nanostructures even though microroughness is established as a characteristic that provides beneficial effects in improving the biomechanical interlocking of titanium implants. Herein, a protein-based SiNP coating is proposed as an osteopromotive surface functionalization approach to create microroughness on titanium implant surfaces. A bioengineered recombinant mussel adhesive protein fused with a silica-precipitating R5 peptide (R5-MAP) enables direct control of the microroughness of the surface through the multilayer assembly of SiNP nanostructures under mild conditions. The assembled SiNP nanostructure significantly enhances the in vitro osteogenic cellular behaviors of preosteoblasts in a roughness-dependent manner and promotes the in vivo bone tissue formation on a titanium implant within a calvarial defect site. Thus, the R5-MAP-based SiNP nanostructure assembly could be practically applied to accelerate bone-tissue growth to improve the stability and prolong the lifetime of medical implantable devices.
© 2017 WILEY-VCH Verlag GmbH & Co. KGaA, Weinheim.

Entities:  

Keywords:  controllable microroughness; mussel adhesive proteins; osteopromotive coatings; silica nanoparticles; titanium implants

Mesh:

Substances:

Year:  2017        PMID: 29068546     DOI: 10.1002/adma.201704906

Source DB:  PubMed          Journal:  Adv Mater        ISSN: 0935-9648            Impact factor:   30.849


  9 in total

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2.  Antibacterial and osteogenesis performances of LL37-loaded titania nanopores in vitro and in vivo.

Authors:  Xinkun Shen; Mohammed A Al-Baadani; Hongli He; Lina Cai; Zuosu Wu; Litao Yao; Xinghai Wu; Shuyi Wu; Mengyu Chen; Hualin Zhang; Jinsong Liu
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Journal:  ACS Appl Mater Interfaces       Date:  2020-02-25       Impact factor: 9.229

Review 4.  Natural Diatom Biosilica as Microshuttles in Drug Delivery Systems.

Authors:  Joachim Delasoie; Fabio Zobi
Journal:  Pharmaceutics       Date:  2019-10-15       Impact factor: 6.321

5.  Nanostructured Coating of Non-Crystalline Tantalum Pentoxide on Polyetheretherketone Enhances RBMS Cells/HGE Cells Adhesion.

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Authors:  Dong Keon Lee; Mi-Ran Ki; Euy Hyun Kim; Chang-Joo Park; Jae Jun Ryu; Hyon Seok Jang; Seung Pil Pack; Yun Kee Jo; Sang Ho Jun
Journal:  Biomater Res       Date:  2021-04-21

7.  Polydopamine-modified poly(l-lactic acid) nanofiber scaffolds immobilized with an osteogenic growth peptide for bone tissue regeneration.

Authors:  Yong Liu; Changlu Xu; Yong Gu; Xiaofeng Shen; Yanxia Zhang; Bin Li; Liang Chen
Journal:  RSC Adv       Date:  2019-04-15       Impact factor: 4.036

Review 8.  Tissue Engineering and Regenerative Medicine: Achievements, Future, and Sustainability in Asia.

Authors:  Fengxuan Han; Jiayuan Wang; Luguang Ding; Yuanbin Hu; Wenquan Li; Zhangqin Yuan; Qianping Guo; Caihong Zhu; Li Yu; Huan Wang; Zhongliang Zhao; Luanluan Jia; Jiaying Li; Yingkang Yu; Weidong Zhang; Genglei Chu; Song Chen; Bin Li
Journal:  Front Bioeng Biotechnol       Date:  2020-03-24

9.  Enhanced Near-Infrared Photocatalytic Eradication of MRSA Biofilms and Osseointegration Using Oxide Perovskite-Based P-N Heterojunction.

Authors:  Congyang Mao; Weidong Zhu; Yiming Xiang; Yizhou Zhu; Jie Shen; Xiangmei Liu; Shuilin Wu; Kenneth M C Cheung; Kelvin Wai Kwok Yeung
Journal:  Adv Sci (Weinh)       Date:  2021-06-19       Impact factor: 16.806

  9 in total

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