Hydrothermal Synthesis of Zinc-Incorporated Nano-Cluster Structure on Titanium Surface to Promote Osteogenic Differentiation of Osteoblasts and hMSCs

In this study, a novel modification strategy was established to synthesize a zinc-incorporated nano-cluster structure on titanium surface in a two-step hydrothermal reaction, and the osteogenic differentiation of osteoblasts and human bone marrow mesenchymal cells (hMSCs) was studied in the presence...

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Main Authors: Ze-hua Tang, Shan Su, Yao Liu, Wen-qing Zhu, Song-mei Zhang, Jing Qiu
Format: Article
Language:English
Published: Frontiers Media S.A. 2021-09-01
Series:Frontiers in Materials
Subjects:
Online Access:https://www.frontiersin.org/articles/10.3389/fmats.2021.739071/full
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spelling doaj-2288e4637eb34c5eb54c4c6c846143e42021-09-03T23:44:02ZengFrontiers Media S.A.Frontiers in Materials2296-80162021-09-01810.3389/fmats.2021.739071739071Hydrothermal Synthesis of Zinc-Incorporated Nano-Cluster Structure on Titanium Surface to Promote Osteogenic Differentiation of Osteoblasts and hMSCsZe-hua Tang0Ze-hua Tang1Shan Su2Shan Su3Yao Liu4Yao Liu5Wen-qing Zhu6Wen-qing Zhu7Song-mei Zhang8Jing Qiu9Jing Qiu10Jing Qiu11Department of Oral Implantology, Affiliated Stomatological Hospital of Nanjing Medical University, Nanjing, ChinaJiangsu Province Key Laboratory of Oral Diseases, Nanjing, ChinaDepartment of Oral Implantology, Affiliated Stomatological Hospital of Nanjing Medical University, Nanjing, ChinaJiangsu Province Key Laboratory of Oral Diseases, Nanjing, ChinaDepartment of Oral Implantology, Affiliated Stomatological Hospital of Nanjing Medical University, Nanjing, ChinaJiangsu Province Key Laboratory of Oral Diseases, Nanjing, ChinaDepartment of Oral Implantology, Affiliated Stomatological Hospital of Nanjing Medical University, Nanjing, ChinaJiangsu Province Key Laboratory of Oral Diseases, Nanjing, ChinaDepartment of General Dentistry, Eastman Institute for Oral Health, University of Rochester, Rochester, NY, United StatesDepartment of Oral Implantology, Affiliated Stomatological Hospital of Nanjing Medical University, Nanjing, ChinaJiangsu Province Key Laboratory of Oral Diseases, Nanjing, ChinaJiangsu Province Engineering Research Center of Stomatological Translational Medicine, Nanjing, ChinaIn this study, a novel modification strategy was established to synthesize a zinc-incorporated nano-cluster structure on titanium surface in a two-step hydrothermal reaction, and the osteogenic differentiation of osteoblasts and human bone marrow mesenchymal cells (hMSCs) was studied in the presence of this synthesized nanostructure. Analyses of the surface topography and elemental composition revealed that the zinc-containing cluster-like nanostructure was successfully prepared on the titanium surface. By altering the reaction time, three surface modifications were established. The three modified titanium surfaces had improved hydrophilicity and could continuously release zinc ions in a controlled manner. In vitro study displayed that three modified titanium surfaces, especially the samples prepared by reacting for 15 min, exhibited enhanced cell adhesion, proliferation, and osteogenic differentiation compared to the pure titanium surface. The study therefore conclude that the zinc-incorporated nano-cluster modification of titanium surface through a simple procedure can establish an enhanced osteogenic microenvironment and exhibit a potential strategy of titanium surface modification to accelerate the dental implant osseointegration.https://www.frontiersin.org/articles/10.3389/fmats.2021.739071/fullzincnano-clustertitanium surface modificationosteoblastHMSCs
collection DOAJ
language English
format Article
sources DOAJ
author Ze-hua Tang
Ze-hua Tang
Shan Su
Shan Su
Yao Liu
Yao Liu
Wen-qing Zhu
Wen-qing Zhu
Song-mei Zhang
Jing Qiu
Jing Qiu
Jing Qiu
spellingShingle Ze-hua Tang
Ze-hua Tang
Shan Su
Shan Su
Yao Liu
Yao Liu
Wen-qing Zhu
Wen-qing Zhu
Song-mei Zhang
Jing Qiu
Jing Qiu
Jing Qiu
Hydrothermal Synthesis of Zinc-Incorporated Nano-Cluster Structure on Titanium Surface to Promote Osteogenic Differentiation of Osteoblasts and hMSCs
Frontiers in Materials
zinc
nano-cluster
titanium surface modification
osteoblast
HMSCs
author_facet Ze-hua Tang
Ze-hua Tang
Shan Su
Shan Su
Yao Liu
Yao Liu
Wen-qing Zhu
Wen-qing Zhu
Song-mei Zhang
Jing Qiu
Jing Qiu
Jing Qiu
author_sort Ze-hua Tang
title Hydrothermal Synthesis of Zinc-Incorporated Nano-Cluster Structure on Titanium Surface to Promote Osteogenic Differentiation of Osteoblasts and hMSCs
title_short Hydrothermal Synthesis of Zinc-Incorporated Nano-Cluster Structure on Titanium Surface to Promote Osteogenic Differentiation of Osteoblasts and hMSCs
title_full Hydrothermal Synthesis of Zinc-Incorporated Nano-Cluster Structure on Titanium Surface to Promote Osteogenic Differentiation of Osteoblasts and hMSCs
title_fullStr Hydrothermal Synthesis of Zinc-Incorporated Nano-Cluster Structure on Titanium Surface to Promote Osteogenic Differentiation of Osteoblasts and hMSCs
title_full_unstemmed Hydrothermal Synthesis of Zinc-Incorporated Nano-Cluster Structure on Titanium Surface to Promote Osteogenic Differentiation of Osteoblasts and hMSCs
title_sort hydrothermal synthesis of zinc-incorporated nano-cluster structure on titanium surface to promote osteogenic differentiation of osteoblasts and hmscs
publisher Frontiers Media S.A.
series Frontiers in Materials
issn 2296-8016
publishDate 2021-09-01
description In this study, a novel modification strategy was established to synthesize a zinc-incorporated nano-cluster structure on titanium surface in a two-step hydrothermal reaction, and the osteogenic differentiation of osteoblasts and human bone marrow mesenchymal cells (hMSCs) was studied in the presence of this synthesized nanostructure. Analyses of the surface topography and elemental composition revealed that the zinc-containing cluster-like nanostructure was successfully prepared on the titanium surface. By altering the reaction time, three surface modifications were established. The three modified titanium surfaces had improved hydrophilicity and could continuously release zinc ions in a controlled manner. In vitro study displayed that three modified titanium surfaces, especially the samples prepared by reacting for 15 min, exhibited enhanced cell adhesion, proliferation, and osteogenic differentiation compared to the pure titanium surface. The study therefore conclude that the zinc-incorporated nano-cluster modification of titanium surface through a simple procedure can establish an enhanced osteogenic microenvironment and exhibit a potential strategy of titanium surface modification to accelerate the dental implant osseointegration.
topic zinc
nano-cluster
titanium surface modification
osteoblast
HMSCs
url https://www.frontiersin.org/articles/10.3389/fmats.2021.739071/full
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