Literature DB >> 34146384

Enhancing Tissue Adhesion and Osteoblastic Differentiation of MC3T3-E1 Cells on Poly(aryl ether ketone) by Chemically Anchored Hydroxyapatite Nanocomposite Hydrogel Coating.

Chengde Liu1, Liang Pan1, Cheng Liu1, Wentao Liu1, Yizheng Li1, Xitong Cheng1, Xigao Jian1.   

Abstract

Tissue adhesion to bone implant and osteoblastic differentiation are the key factors to achieve poly(aryl ether ketone) (PAEK) implant osseointegration. However, physical interaction of implant with tissue and hydroxyapatite coating suffers from slow implant tissue integration and lack of long-term stability. In this study, a novel poly(phthalazinone ether sulfone ketone) containing allyl groups (APPBAESK) is coated onto PPBESK sheet for reacting with the allyl groups of the hydrogel coating to enhance its stability. N-Succinimidyl (NHS)-ester activated group and nano-hydroxyapatite (nano-HA) are introduced into the hydrogel synthesized from gelatin methacrylate (GelMA) and acrylic acid to construct a nanocomposite hydrogel coating on PPBESK which is a promising PAEK implant material. The hydrophilicity of the PPBESK sheet is improved by the hydrogel coating. The chemical components of the nanocomposite hydrogel coating are confirmed by X-ray photoelectron spectroscope, Attenuated total reflection infrared, and X-ray powder diffraction. The tissue shear adhesion strength of the hydrogel coating toward pig skin is enhanced due to the synergism of NHS-ester activated group and nano-HA. The osteogenic differentiation of MC3T3-E1 preosteoblasts is promoted by nano-HA in nanocomposite hydrogel coating. Therefore, the bifunctional nanocomposite hydrogel coating provides a great application prospect in the surface modification of PAEK implants in bone tissue engineering.
© 2021 Wiley-VCH GmbH.

Entities:  

Keywords:  hydrogel coating; nanocomposite; osteogenic differentiation; poly(aryl ether ketone); tissue adhesion

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Year:  2021        PMID: 34146384     DOI: 10.1002/mabi.202100078

Source DB:  PubMed          Journal:  Macromol Biosci        ISSN: 1616-5187            Impact factor:   4.979


  2 in total

1.  Mesenchymal Stem Cells-Hydrogel Microspheres System for Bone Regeneration in Calvarial Defects.

Authors:  Chong Teng; Zhicheng Tong; Qiulin He; Huangrong Zhu; Lu Wang; Xianzhu Zhang; Wei Wei
Journal:  Gels       Date:  2022-04-29

2.  A Composite Deferoxamine/Black Phosphorus Nanosheet/Gelatin Hydrogel Scaffold for Ischemic Tibial Bone Repair.

Authors:  Dingli Xu; Kaifeng Gan; Yang Wang; Zeting Wu; Yulong Wang; Song Zhang; Yujie Peng; Xuguang Fang; Hua Wei; Yansheng Zhang; Weihu Ma; Jing Chen
Journal:  Int J Nanomedicine       Date:  2022-03-11
  2 in total

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