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Microwave Heating of Crystals with Gold Nanoparticles and Synovial Fluid under Synthetic Skin Patches

[Image: see text] Gout is a disease with elusive treatment options. Reduction of the size of l-alanine crystals as a model crystal for gouty tophi with the use of a monomode solid-state microwave was examined as a possible therapeutic aid. The effect of microwave heating on l-alanine crystals in the...

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Autores principales: McLemore, Gabrielle L., Toker, Salih, Boone-Kukoyi, Zainab, Ajifa, Hillary, Lansiquot, Carisse, Nwawulu, Chinenye, Onyedum, Stanley, Kioko, Bridgit M., Aslan, Kadir
Formato: Online Artículo Texto
Lenguaje:English
Publicado: American Chemical Society 2017
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5623947/
https://www.ncbi.nlm.nih.gov/pubmed/28983527
http://dx.doi.org/10.1021/acsomega.7b00816
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author McLemore, Gabrielle L.
Toker, Salih
Boone-Kukoyi, Zainab
Ajifa, Hillary
Lansiquot, Carisse
Nwawulu, Chinenye
Onyedum, Stanley
Kioko, Bridgit M.
Aslan, Kadir
author_facet McLemore, Gabrielle L.
Toker, Salih
Boone-Kukoyi, Zainab
Ajifa, Hillary
Lansiquot, Carisse
Nwawulu, Chinenye
Onyedum, Stanley
Kioko, Bridgit M.
Aslan, Kadir
author_sort McLemore, Gabrielle L.
collection PubMed
description [Image: see text] Gout is a disease with elusive treatment options. Reduction of the size of l-alanine crystals as a model crystal for gouty tophi with the use of a monomode solid-state microwave was examined as a possible therapeutic aid. The effect of microwave heating on l-alanine crystals in the presence of gold nanoparticles (Au NPs) in solution and synovial fluid (SF) in a plastic pouch through a synthetic skin patch was investigated. In this regard, three experimental paradigms were employed: Paradigm 1 includes the effect of variable microwave power (5–10 W) and variable heating time (5–60 s) and Au NPs in water (20 nm size, volume of 10 μL) in a plastic pouch (1 × 2 cm(2) in size). Paradigm 2 includes the effect of a variable volume of 20 nm Au NPs in a variable volume of SF up to 100 μL in a plastic pouch at a constant microwave power (10 W) for 30 s. Paradigm 3 includes the effect of constant microwave power (10 W) and microwave heating time (30 s), constant volume of Au NPs (100 μL), and variable size of Au NPs (20–200 nm) placed in a plastic pouch through a synthetic skin patch. In these experiments, an average of 60–100% reduction in the size of an l-alanine crystal (initial size = 450 μm) without damage to the synthetic skin or increasing the temperature of the samples beyond the physiological range was reported.
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spelling pubmed-56239472017-10-03 Microwave Heating of Crystals with Gold Nanoparticles and Synovial Fluid under Synthetic Skin Patches McLemore, Gabrielle L. Toker, Salih Boone-Kukoyi, Zainab Ajifa, Hillary Lansiquot, Carisse Nwawulu, Chinenye Onyedum, Stanley Kioko, Bridgit M. Aslan, Kadir ACS Omega [Image: see text] Gout is a disease with elusive treatment options. Reduction of the size of l-alanine crystals as a model crystal for gouty tophi with the use of a monomode solid-state microwave was examined as a possible therapeutic aid. The effect of microwave heating on l-alanine crystals in the presence of gold nanoparticles (Au NPs) in solution and synovial fluid (SF) in a plastic pouch through a synthetic skin patch was investigated. In this regard, three experimental paradigms were employed: Paradigm 1 includes the effect of variable microwave power (5–10 W) and variable heating time (5–60 s) and Au NPs in water (20 nm size, volume of 10 μL) in a plastic pouch (1 × 2 cm(2) in size). Paradigm 2 includes the effect of a variable volume of 20 nm Au NPs in a variable volume of SF up to 100 μL in a plastic pouch at a constant microwave power (10 W) for 30 s. Paradigm 3 includes the effect of constant microwave power (10 W) and microwave heating time (30 s), constant volume of Au NPs (100 μL), and variable size of Au NPs (20–200 nm) placed in a plastic pouch through a synthetic skin patch. In these experiments, an average of 60–100% reduction in the size of an l-alanine crystal (initial size = 450 μm) without damage to the synthetic skin or increasing the temperature of the samples beyond the physiological range was reported. American Chemical Society 2017-09-20 /pmc/articles/PMC5623947/ /pubmed/28983527 http://dx.doi.org/10.1021/acsomega.7b00816 Text en Copyright © 2017 American Chemical Society This is an open access article published under an ACS AuthorChoice License (http://pubs.acs.org/page/policy/authorchoice_termsofuse.html) , which permits copying and redistribution of the article or any adaptations for non-commercial purposes.
spellingShingle McLemore, Gabrielle L.
Toker, Salih
Boone-Kukoyi, Zainab
Ajifa, Hillary
Lansiquot, Carisse
Nwawulu, Chinenye
Onyedum, Stanley
Kioko, Bridgit M.
Aslan, Kadir
Microwave Heating of Crystals with Gold Nanoparticles and Synovial Fluid under Synthetic Skin Patches
title Microwave Heating of Crystals with Gold Nanoparticles and Synovial Fluid under Synthetic Skin Patches
title_full Microwave Heating of Crystals with Gold Nanoparticles and Synovial Fluid under Synthetic Skin Patches
title_fullStr Microwave Heating of Crystals with Gold Nanoparticles and Synovial Fluid under Synthetic Skin Patches
title_full_unstemmed Microwave Heating of Crystals with Gold Nanoparticles and Synovial Fluid under Synthetic Skin Patches
title_short Microwave Heating of Crystals with Gold Nanoparticles and Synovial Fluid under Synthetic Skin Patches
title_sort microwave heating of crystals with gold nanoparticles and synovial fluid under synthetic skin patches
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5623947/
https://www.ncbi.nlm.nih.gov/pubmed/28983527
http://dx.doi.org/10.1021/acsomega.7b00816
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