Literature DB >> 33254999

A new Ag-nanostructured hydroxyapatite porous scaffold: Antibacterial effect and cytotoxicity study.

Giovanna Calabrese1, Salvatore Petralia2, Domenico Franco1, Giuseppe Nocito1, Claudia Fabbi3, Lucia Forte3, Salvatore Guglielmino1, Stefano Squarzoni4, Francesco Traina5, Sabrina Conoci6.   

Abstract

We report a new chemical method for the functionalization of Mg-hydroxyapatite (Mg-HA) scaffold with Ag nanoparticles (Ag NPs) integrating in one step both the synthesis of the Ag NPs and their nano-structuring into the HA matrix (Ag-Mg-HA scaffold). This method exploits a green photochemical synthesis and allows the direct growth of Ag NPs on the Mg-HA surface. The surface structure of Ag-Mg-HA scaffold, investigated by scanning electron microscopy, shows no significant changes in the morphology upon Ag NPs incorporation. The presence of Ag was confirmed by EDX analysis. TEM and spectroscopic investigations show Ag NPs spherical shaped with a mean diameter of about 20 nm exhibiting the typical plasmon absorption band with maximum at 420 nm. The antibacterial properties of Ag-Mg-HA scaffolds were tested against two bacterial strains, Escherichia coli (E. coli) and Staphylococcus aureus (S. aureus). The results show excellent antibacterial properties achieving up to 99% and 100% reduction of colonies for both bacteria cultures after 24 h of incubation and 100% of reduction after 48 h of incubation. The cytotoxicity of Ag-Mg-HA was also in deep investigated assessing both cell proliferation and differentiation using hADSCs (human Adipose Derived Stem Cells) and testing data point at 0, 7, 14 and 24 days. The results show cytotoxic effect with cell proliferation decreasing up to 90% at 24 days and osteogenic differentiation inhibition. The observed cytotoxicity can be probable ascribed to the oxidative stress by ROS. Indeed, considering the effectiveness of the nanofunctionalization method and the excellent antibacterial properties showed by the Ag-Mg-HA scaffold, future works will be devoted to create nanofunctionalized scaffold satisfying both antimicrobial and osteo-regenerative properties.
Copyright © 2020 Elsevier B.V. All rights reserved.

Entities:  

Keywords:  Ag; Antibacterial; Citotoxicity; Hydroxyapatite; Nanoparticles

Mesh:

Substances:

Year:  2020        PMID: 33254999     DOI: 10.1016/j.msec.2020.111394

Source DB:  PubMed          Journal:  Mater Sci Eng C Mater Biol Appl        ISSN: 0928-4931            Impact factor:   7.328


  12 in total

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3.  Antimicrobial Effect and Cytotoxic Evaluation of Mg-Doped Hydroxyapatite Functionalized with Au-Nano Rods.

Authors:  Domenico Franco; Giovanna Calabrese; Salvatore Petralia; Giulia Neri; Carmelo Corsaro; Lucia Forte; Stefano Squarzoni; Salvatore Guglielmino; Francesco Traina; Enza Fazio; Sabrina Conoci
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