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1.
ACS Appl Mater Interfaces ; 16(3): 3955-3965, 2024 Jan 24.
Article in English | MEDLINE | ID: mdl-38195426

ABSTRACT

The indoor air quality should be better controlled and improved to avoid numerous health issues. Even if different devices are developed for air filtration, the proliferation of microorganisms under certain conditions must be controlled. For this purpose, a silver nanocluster/silica composite coating was deposited via a cosputtering technique onto fiber glass and polymeric based substrates. The aim of this work is focused on the evaluation of the antibacterial and antiviral effects of the developed coating. The preliminary results of the compositional and morphological tests showed an evenly distributed coating on filters surfaces. Several antibacterial tests were performed, confirming strong effect both in qualitative and quantitative methods, against S. epidermidis and E. coli. To understand if the coating can stop the proliferation of bacteria colonies spread on it, simulation of everyday usage of filters was performed, nebulizing bacteria solution with high colonies concentration and evaluating the inhibition of bacteria growth. Additionally, a deep understanding of the virucidal action and mechanism of Ag nanoclusters of the coating was performed. The effect of the coating both in aqueous medium and in dry methods was evaluated, in comparison with analysis on ions release. The virucidal performances are assessed against the human coronavirus OC43 strain (HCoV-OC43).


Subject(s)
Air Filters , Silver , Humans , Silver/pharmacology , Silver/chemistry , Silicon Dioxide/pharmacology , Silicon Dioxide/chemistry , Escherichia coli , Anti-Bacterial Agents/pharmacology , Anti-Bacterial Agents/chemistry , Antiviral Agents/pharmacology
2.
Microorganisms ; 11(3)2023 Feb 28.
Article in English | MEDLINE | ID: mdl-36985203

ABSTRACT

New antiviral drugs and new preventive antiviral strategies are a target of intense scientific interest. Thanks to their peculiar properties, nanomaterials play an important role in this field, and, in particular, among metallic materials, silver nanoparticles were demonstrated to be effective against a wide range of viruses, in addition to having a strong antibacterial effect. Although the mechanism of antiviral action is not completely clarified, silver nanoparticles can directly act on viruses, and on their first steps of interaction with the host cell, depending on several factors, such as size, shape, functionalization and concentration. This review provides an overview of the antiviral properties of silver nanoparticles, along with their demonstrated mechanisms of action and factors mainly influencing their properties. In addition, the fields of potential application are analyzed, demonstrating the versatility of silver nanoparticles, which can be involved in several devices and applications, including biomedical applications, considering both human and animal health, environmental applications, such as air filtration and water treatment, and for food and textile industry purposes. For each application, the study level of the device is indicated, if it is either a laboratory study or a commercial product.

3.
Acta Biomater ; 10(3): 1064-87, 2014 Mar.
Article in English | MEDLINE | ID: mdl-24342039

ABSTRACT

The removal of an eye is one of the most difficult and dramatic decisions that a surgeon must consider in case of severe trauma or life-threatening diseases to the patient. The philosophy behind the design of orbital implants has evolved significantly over the last 60 years, and the use of ever more appropriate biomaterials has successfully reduced the complication rate and improved the patient's clinical outcomes and satisfaction. This review provides a comprehensive picture of the main advances that have been made in the development of innovative biomaterials for orbital implants and ocular prostheses. Specifically, the advantages, limitations and performance of the existing devices are examined and critically compared, and the potential of new, smart and suitable biomaterials are described and discussed in detail to outline a forecast for future research directions.


Subject(s)
Biocompatible Materials/pharmacology , Eye, Artificial , Orbital Implants , Humans
4.
J Biomater Appl ; 25(6): 595-617, 2011 Feb.
Article in English | MEDLINE | ID: mdl-20207775

ABSTRACT

A 3D-glass-ceramic scaffold for bone tissue engineering with an interconnected macroporous network of pores was doped with silver ions in order to confer antibacterial properties. For this purpose, silver ions were selectively added to the scaffold surfaces through ion-exchange using an aqueous silver nitrate solution. The silver-doped scaffolds were characterized by means of leaching, in vitro antibacterial, and citotoxicity tests. In particular, the silver effect was examined through a broth dilution test in order to evaluate the proliferation of bacteria by counting the colonies forming units. Moreover, cytotoxicity tests were carried out to understand the effect of silver-containing scaffolds on cell adhesion, proliferation, and vitality. For all tests a comparison between silver-doped scaffold and silver-doped scaffold dry sterilized was performed.


Subject(s)
Anti-Infective Agents, Local/pharmacology , Biocompatible Materials/pharmacology , Bone Transplantation/methods , Ceramics/chemistry , Glass/chemistry , Silver Nitrate/pharmacology , Tissue Scaffolds , Anti-Infective Agents, Local/analysis , Cell Adhesion/drug effects , Cell Survival/drug effects , Coated Materials, Biocompatible/pharmacology , Ion Exchange , Materials Testing/methods , Microscopy, Electron, Scanning/methods , Silver/pharmacology , Silver Nitrate/analysis , Staphylococcus aureus/drug effects , Surface Properties , Tissue Engineering/methods , X-Ray Diffraction/methods
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