Silver nanoparticles deposited on calcium hydrogenphosphate – silver phosphate matrix; biological activity of the composite

Author:

Szmuc K.12,Kus-Liskiewicz M.3,Szyller Ł.1,Szmuc D.2,Stompor M.42,Zawlik I.42,Ruman T.5,Wołowiec S.42,Cebulski J.12

Affiliation:

1. University of Rzeszów , Faculty of Mathematics and Natural Sciences , 16c Rejtana Ave., 35-959 Rzeszów , Poland

2. FOLPAK, Sp. z o.o. 36-060 Głogów Małopolski , Poland

3. University of Rzeszów , Faculty of Biotechnology , 16c Rejtana Ave., 35-959 Rzeszów , Poland

4. University of Rzeszów , Faculty of Medicine , 16c Rejtana Ave., 35-959 Rzeszów , Poland

5. Rzeszów University of Technology , Faculty of Chemistry , 6 Powstańców Warszawy Ave. 35-959 Rzeszów , Poland

Abstract

Abstract The composite containing nanosilver uniformly deposited on matrix composed of CaHPO4 x 2H2O (brushite, ca 89 mass %), CaHPO4 (monteonite, ca 9.5 mass%), and Ag3PO4 (0.5 mas%) was obtained by addition of calcium nitrate and silver nitrate aqueous solution at 30:1 Ca:Ag molar ratio into excess of (NH4)2PO4 solution at pH 5.0 – 5.5. The isolated solid was characterized by STEM, XRD, and LDI mass spectrometry. It has been found that nanosilver was uniformly distributed within composite as <10 nm diameter sized nanoparticles. Determination of silver by AAS showed that 60% of silver is present as Ag(0) nanoparticles, the present as matrix Ag3PO4 as identified by XRD method. The composite showed strong growth inhibition in E. coli and P. aeruginosa strains, and moderate towards S. aureus. The C. albicans cells were the most resistant to the tested material, although still composite was moderately cytostatic for the yeast.

Publisher

Walter de Gruyter GmbH

Subject

General Chemical Engineering,General Chemistry,Biotechnology

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