Synthesis, Characterization, and Cytotoxicity Evaluations of Silver–Zeolite Nanocomposite

Author:

Kiradzhiyska Denitsa1ORCID,Batsalova Tsvetelina2ORCID,Dzhambazov Balik2ORCID,Milcheva Nikolina1ORCID,Gavazov Kiril1ORCID,Zahariev Nikolay3ORCID,Avdeev Georgi4ORCID,Simeonova Stanislava3ORCID

Affiliation:

1. Department of Chemical Sciences, Faculty of Pharmacy, Medical University of Plovdiv, 15A Vassil Aprilov Blvd., 4002 Plovdiv, Bulgaria

2. Department of Developmental Biology, Plovdiv University “Paisii Hilendarski”, 24 Tsar Assen Str., 4000 Plovdiv, Bulgaria

3. Department of Pharmaceutical Sciences, Faculty of Pharmacy, Medical University of Plovdiv, 15A Vassil Aprilov Blvd., 4002 Plovdiv, Bulgaria

4. “Rostislaw Kaischew” Institute of Physical Chemistry, Bulgarian Academy of Sciences, 11 Akademik Georgi Bonchev Str., 1113 Sofia, Bulgaria

Abstract

Zeolites of natural origin are materials exhibiting many positive effects on the human body. Silver-modified zeolites have already been introduced as bactericidal agents, although studies dealing with their toxicity are insufficient. This work describes the synthesis of activated and silver-loaded Bulgarian zeolite using a simple wet impregnation method. Morphological characteristics and compositions of natural zeolite, activated zeolite, and Ag-nanocomposites were studied by the X-ray diffraction (XRD), scanning electron microscopy (SEM), and transmission electron microscopy (TEM) methods. Silver loading is approximately 13 wt. %, with mean Ag particle size around 19 nm. Analyses of the samples included antioxidant activity assays based on ABTS radical scavenging ability and in vitro cytotoxicity tests with human normal fibroblasts and three adenocarcinoma cell lines. The experiments were performed with natural, activated, and Ag-modified zeolite in comparison to two commercial food supplements. Our results indicated moderate antioxidant activity of the tested samples. Silver-modified zeolite demonstrated cytotoxic effects against both tumor cells and normal fibroblasts, but the detected levels of inhibition were stronger against the adenocarcinoma cells, suggesting anti-tumor potential. The present article indicates a new aspect of Bulgarian natural zeolite and Ag-loaded zeolite biological activity. It highlights the need for detailed toxicity evaluations of Ag-nanocomposites prior to healthcare applications.

Publisher

MDPI AG

Reference45 articles.

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