Literature DB >> 19865601

Antimicrobial efficacy and ocular cell toxicity from silver nanoparticles.

Colleen M Santoro1, Nicole L Duchsherer, David W Grainger.   

Abstract

Silver in various forms has long been recognized for antimicrobial properties, both in biomedical devices and in eyes. However, soluble drugs used on the ocular surface are rapidly cleared through tear ducts and eventually ingested, resulting in decreased efficacy of the drug on its target tissue and potential concern for systemic side effects. Silver nanoparticles were studied as a source of anti-microbial silver for possible controlled-release contact lens controlled delivery formulations. Silver ion release over a period of several weeks from nanoparticle sources of various sizes and doses in vitro was evaluated in vitro against Pseudomonas aeruginosa strain PA01. Mammalian cell viability and cytokine expression in response to silver nanoparticle exposure is evaluated using corneal epithelial cells and eye-associated macrophages cultured in vitro in serum-free media. Minimal microcidal and cell toxic effects were observed for several silver nanoparticle suspensions and aqueous extraction times for bulk total silver concentrations commensurate with comparative silver ion (e.g., Ag(+) ((aq))) toxicity. This indicates that (1) silver particles themselves are not microcidal under conditions tested, and (2) insufficient silver ion is generated from these particles at these loadings to produce observable biological effects in these in vitro assays. If dosing allows substantially increased silver particle loading in the lens, the bactericidal efficacy of silver nanoparticles in vitro is one possible approach to limiting bacterial colonization problems associated with extended-wear contact lenses.

Entities:  

Year:  2007        PMID: 19865601      PMCID: PMC2768321          DOI: 10.1007/s12030-008-9007-z

Source DB:  PubMed          Journal:  Nanobiotechnology        ISSN: 1551-1294


  44 in total

1.  Bacterial interactions with contact lenses; effects of lens material, lens wear and microbial physiology.

Authors:  M D Willcox; N Harmis; T Williams
Journal:  Biomaterials       Date:  2001-12       Impact factor: 12.479

2.  The effect of charged groups on protein interactions with poly(HEMA) hydrogels.

Authors:  Megan S Lord; Martina H Stenzel; Anne Simmons; Bruce K Milthorpe
Journal:  Biomaterials       Date:  2005-07-28       Impact factor: 12.479

3.  Collagen-shield delivery of gentamicin and vancomycin.

Authors:  R B Phinney; S D Schwartz; D A Lee; B J Mondino
Journal:  Arch Ophthalmol       Date:  1988-11

4.  Studies on the uptake and release of fluoroquinolones by disposable contact lenses.

Authors:  X Tian; M Iwatsu; K Sado; A Kanai
Journal:  CLAO J       Date:  2001-10

5.  Prolonged elevation of IL-1 in Pseudomonas aeruginosa ocular infection regulates macrophage-inflammatory protein-2 production, polymorphonuclear neutrophil persistence, and corneal perforation.

Authors:  X L Rudner; K A Kernacki; R P Barrett; L D Hazlett
Journal:  J Immunol       Date:  2000-06-15       Impact factor: 5.422

6.  Experimental bacterial keratitis in neutropenic guinea pigs: polymorphonuclear leukocytes in corneal host defense.

Authors:  M J Chusid; S D Davis
Journal:  Infect Immun       Date:  1979-06       Impact factor: 3.441

7.  IL-4 regulates chemokine production induced by TNF-alpha in keratocytes and corneal epithelial cells.

Authors:  Y Takano; K Fukagawa; S Shimmura; K Tsubota; Y Oguchi; H Saito
Journal:  Br J Ophthalmol       Date:  1999-09       Impact factor: 4.638

8.  Balance of pro- and anti-inflammatory cytokines correlates with outcome of acute experimental Pseudomonas aeruginosa keratitis.

Authors:  A Thakur; M Xue; F Stapleton; A R Lloyd; D Wakefield; M D P Willcox
Journal:  Infect Immun       Date:  2002-04       Impact factor: 3.441

9.  The use of ATP bioluminescence as a measure of cell proliferation and cytotoxicity.

Authors:  S P Crouch; R Kozlowski; K J Slater; J Fletcher
Journal:  J Immunol Methods       Date:  1993-03-15       Impact factor: 2.303

Review 10.  Corneal response to Pseudomonas aeruginosa infection.

Authors:  Linda Dondero Hazlett
Journal:  Prog Retin Eye Res       Date:  2004-01       Impact factor: 21.198

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  13 in total

1.  Silver Nanoparticles as an Effective Antimicrobial against Otitis Media Pathogens.

Authors:  Xiaojing Ma; Jiayan Lang; Pengyu Chen; Rong Yang
Journal:  AIChE J       Date:  2021-09-24       Impact factor: 4.167

Review 2.  In vitro assessments of nanomaterial toxicity.

Authors:  Clinton F Jones; David W Grainger
Journal:  Adv Drug Deliv Rev       Date:  2009-04-19       Impact factor: 15.470

3.  Pyocyanin production by Pseudomonas aeruginosa confers resistance to ionic silver.

Authors:  Michael Muller; Neil D Merrett
Journal:  Antimicrob Agents Chemother       Date:  2014-07-07       Impact factor: 5.191

4.  Synthesis and Characterization of Two Cyanoxime Ligands, Their Precursors, and Light Insensitive Antimicrobial Silver(I) Cyanoximates.

Authors:  Courtney N Riddles; Mark Whited; Shalaka R Lotlikar; Korey Still; Marianna Patrauchan; Svitlana Silchenko; Nikolay Gerasimchuk
Journal:  Inorganica Chim Acta       Date:  2014-03-01       Impact factor: 2.545

5.  Synergistic interaction between silver nanoparticles and membrane-permeabilizing antimicrobial peptides.

Authors:  Serge Ruden; Kai Hilpert; Marina Berditsch; Parvesh Wadhwani; Anne S Ulrich
Journal:  Antimicrob Agents Chemother       Date:  2009-06-15       Impact factor: 5.191

6.  Eye irritation testing of nanomaterials using the EpiOcular™ eye irritation test and the bovine corneal opacity and permeability assay.

Authors:  Susanne N Kolle; Ursula G Sauer; Maria C Rey Moreno; Wera Teubner; Wendel Wohlleben; Robert Landsiedel
Journal:  Part Fibre Toxicol       Date:  2016-04-15       Impact factor: 9.400

7.  Comparison Therapeutic Effects of Ciprofloxacin, Silver Nanoparticles and Their Combination in the Treatment of Pseudomonas keratitis in Rabbit: An Experimental Study.

Authors:  Mohammad Zavarshani; Malahat Ahmadi; Habib Dastmalchi Saei; Ali Asghar Tehrani; Bahram Dalir Naghadeh
Journal:  Iran J Pharm Res       Date:  2019       Impact factor: 1.696

8.  Bare plasmonic metal nanoparticles: synthesis, characterisation and in vitro toxicity assessment on a liver carcinoma cell line.

Authors:  Nabojit Das; Akash Kumar; Somendu Kumar Roy; Neeraj Kumar Satija; Rayavarapu Raja Gopal
Journal:  IET Nanobiotechnol       Date:  2020-12       Impact factor: 1.847

9.  The antibacterial effects of silver, titanium dioxide and silica dioxide nanoparticles compared to the dental disinfectant chlorhexidine on Streptococcus mutans using a suite of bioassays.

Authors:  Alexandros Besinis; Tracy De Peralta; Richard D Handy
Journal:  Nanotoxicology       Date:  2012-11-15       Impact factor: 5.913

Review 10.  Silver Nanoparticle-Mediated Cellular Responses in Various Cell Lines: An in Vitro Model.

Authors:  Xi-Feng Zhang; Wei Shen; Sangiliyandi Gurunathan
Journal:  Int J Mol Sci       Date:  2016-09-22       Impact factor: 5.923

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