Literature DB >> 30929122

Osteoblast adhesion and response mediated by terminal -SH group charge surface of SiOxCy nanowires.

Benedetta Ghezzi1,2, Paola Lagonegro3,4, Roberta Pece1,2,5, Ludovica Parisi1,2, Massimiliano Bianchi2, Roberta Tatti6, Roberto Verucchi6, Giovanni Attolini7, Martina Quaretti7, Guido M Macaluso1,2,8.   

Abstract

Robust cell adhesion is known to be necessary to promote cell colonization of biomaterials and differentiation of progenitors. In this paper, we propose the functionalization of Silicon Oxycarbide (SiOxCy) nanowires (NWs) with 3-mercaptopropyltrimethoxysilane (MPTMS), a molecule containing a terminal -SH group. The aim of this functionalization was to develop a surface capable to adsorb proteins and promote cell adhesion, proliferation and a better deposition of extracellular matrix. This functionalization can be used to anchor other structures such as nanoparticles, proteins or aptamers. It was observed that surface functionalization markedly affected the pattern of protein adsorption, as well as the in vitro proliferation of murine osteoblastic cells MC3T3-E1, which was increased on functionalized nanowires (MPTMS-NWs) compared to bare NWs (control) (p < 0.0001) after 48 h. The cells showed a better adhesion on MPTMS-NWs than on bare NWs, as confirmed by immunofluorescence studies on the cytoskeleton, which showed a more homogeneous vinculin distribution. Gene expression analysis showed higher expression levels for alkaline phosphatase and collagen I, putative markers of the osteoblast initial differentiation stage. These results suggest that functionalization of SiOxCy nanowires with MPTMS enhances cell growth and the expression of an osteoblastic phenotype, providing a promising strategy to improve the biocompatibility of SiOxCy nanowires for biomedical applications.

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Year:  2019        PMID: 30929122     DOI: 10.1007/s10856-019-6241-y

Source DB:  PubMed          Journal:  J Mater Sci Mater Med        ISSN: 0957-4530            Impact factor:   3.896


  2 in total

1.  Favorable osteogenic activity of iron doped in silicocarnotite bioceramic: In vitro and in vivo Studies.

Authors:  Jingwei Zhang; Fanyan Deng; Xiaoliang Liu; Yuwei Ge; Yiming Zeng; Zanjing Zhai; Congqin Ning; Huiwu Li
Journal:  J Orthop Translat       Date:  2022-02-15       Impact factor: 5.191

2.  Sub-Micropillar Spacing Modulates the Spatial Arrangement of Mouse MC3T3-E1 Osteoblastic Cells.

Authors:  Benedetta Ghezzi; Paola Lagonegro; Naoki Fukata; Ludovica Parisi; Davide Calestani; Carlo Galli; Giancarlo Salviati; Guido M Macaluso; Francesca Rossi
Journal:  Nanomaterials (Basel)       Date:  2019-11-28       Impact factor: 5.076

  2 in total

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