Literature DB >> 31111309

Effects of Silver Nanoparticles on Burn Wound Healing in a Mouse Model.

Lamiaa G Wasef1, Hazem M Shaheen1, Yasser S El-Sayed2, Thanaa I A Shalaby3, Dalia H Samak2, Mohamed E Abd El-Hack4, Abdullah Al-Owaimer5, Islam M Saadeldin5,6, Amany El-Mleeh7, Hani Ba-Awadh5, Ayman A Swelum8,9.   

Abstract

Healing of injuries caused by exposure to heat has been discussed in many studies, although a few drugs have been shown to produce satisfactory results. In this study, 100 healthy mice randomly allocated into four categories (each = 25 mice) were analyzed. A deep second-degree burn on the back of each mouse was created. The burns were dressed daily with either AgNPs or silver sulfadiazine over 28 days of treatment. Safety evaluation of the AgNP treatment was performed by measuring the deposition rate of silver in the liver, brain, and kidney of treated mice. In the murine burn model, the speed of wound healing and the antibacterial effect of AgNPs were better than those in the silver sulfadiazine group. Burn wounds treated with SSD appeared to display a greater degree of inflammation as notable by the three clinical signs of the inflammatory process such as redness and swelling which appeared to be less after wounds treated with AgNPs. Also, AgNP treatment modified leukocytic infiltration and reduced collagen degeneration in treated mice and enhanced healing processes that were confirmed by morphological and histological investigations. Beside the potential significant effects of AgNPs on reduction of some microorganism counts that routinely isolated from burn wounds included aerobic organisms as Staphylococcus aureus and Escherichia coli when compared to both SSD and control groups. The deposition kinetics of AgNPs revealed lower distribution in the liver, brain, and kidney than that in silver sulfadiazine-treated mice with respect to both SSD and control groups.

Entities:  

Keywords:  Burn; Mice; Nanoparticles; Silver; Sulfadiazine; Wound

Mesh:

Substances:

Year:  2019        PMID: 31111309     DOI: 10.1007/s12011-019-01729-z

Source DB:  PubMed          Journal:  Biol Trace Elem Res        ISSN: 0163-4984            Impact factor:   3.738


  33 in total

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Journal:  Biomaterials       Date:  2012-04-10       Impact factor: 12.479

Review 3.  Chronic wound infection: facts and controversies.

Authors:  Abdul R Siddiqui; Jack M Bernstein
Journal:  Clin Dermatol       Date:  2010 Sep-Oct       Impact factor: 3.541

4.  Reversal of silver sulfadiazine-impaired wound healing by epidermal growth factor.

Authors:  Ae-Ri Cho Lee; Hyunju Leem; Jaegwan Lee; Kyung Chan Park
Journal:  Biomaterials       Date:  2005-01-13       Impact factor: 12.479

Review 5.  Bacterial resistance to silver in wound care.

Authors:  S L Percival; P G Bowler; D Russell
Journal:  J Hosp Infect       Date:  2005-05       Impact factor: 3.926

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Authors:  Eric K Mooney; Craig Lippitt; Jeff Friedman
Journal:  Plast Reconstr Surg       Date:  2006-02       Impact factor: 4.730

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8.  Nanosilver in consumer products and human health: more information required!

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5.  Synergistic efficacy of colistin and silver nanoparticles impregnated human amniotic membrane in a burn wound infected rat model.

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9.  Silver Nanoparticles Stable to Oxidation and Silver Ion Release Show Size-Dependent Toxicity In Vivo.

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  10 in total

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