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Construction of a Glutathione-Responsive and Silica-Based Nanocomposite for Controlled Release of Chelator Dimercaptosuccinic Acid

Dimercaptosuccinic acid (DMSA) is an oral heavy metal chelator. Although DMSA is the most acceptable chelator in the urinary excretion of toxic elements from children and adults, its defects in plasma binding and the membrane permeability limit its interaction with intracellular elements and affect...

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Autores principales: Zhai, Hongqiang, Wang, Yuli, Wang, Menghua, Liu, Shuai, Yu, Feifei, Gao, Chunsheng, Li, Guiling, Wu, Qiang
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2018
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6321213/
https://www.ncbi.nlm.nih.gov/pubmed/30487433
http://dx.doi.org/10.3390/ijms19123790
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author Zhai, Hongqiang
Wang, Yuli
Wang, Menghua
Liu, Shuai
Yu, Feifei
Gao, Chunsheng
Li, Guiling
Wu, Qiang
author_facet Zhai, Hongqiang
Wang, Yuli
Wang, Menghua
Liu, Shuai
Yu, Feifei
Gao, Chunsheng
Li, Guiling
Wu, Qiang
author_sort Zhai, Hongqiang
collection PubMed
description Dimercaptosuccinic acid (DMSA) is an oral heavy metal chelator. Although DMSA is the most acceptable chelator in the urinary excretion of toxic elements from children and adults, its defects in plasma binding and the membrane permeability limit its interaction with intracellular elements and affect its efficacy in chelation therapy. Herein, a novel nanocomposite composed of mesoporous silica nanoparticles (MSNs), disulfide bond, and DMSA was synthesized and characterized with a scanning/transmission electron microscope, IR and Raman spectra, and TGA analysis. The in vitro interactions with glutathione (GSH) and cellular uptake assays showed that it was able to be stable in extracellular environments such as in blood, be internalized by cells, and release DMSA inside via GSH-triggered disulfide cleavage reaction. The in vitro adsorption assays showed that MSNs-SH as its intracellular metabolite had strong adsorbability for models of Hg(2+) or Pb(2+). The hemolysis and cell viability assays showed that it was compatible with blood and cells even at a concentration of 1000 μg·mL(−1). All above could not only enable it to be a GSH-responsive drug delivery system (DDS) for DMSA delivery but also to be a solution for its defects and efficacy. Thus, introduction of intelligent DDS might open a new avenue for DMSA-based chelation therapy.
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spelling pubmed-63212132019-01-07 Construction of a Glutathione-Responsive and Silica-Based Nanocomposite for Controlled Release of Chelator Dimercaptosuccinic Acid Zhai, Hongqiang Wang, Yuli Wang, Menghua Liu, Shuai Yu, Feifei Gao, Chunsheng Li, Guiling Wu, Qiang Int J Mol Sci Article Dimercaptosuccinic acid (DMSA) is an oral heavy metal chelator. Although DMSA is the most acceptable chelator in the urinary excretion of toxic elements from children and adults, its defects in plasma binding and the membrane permeability limit its interaction with intracellular elements and affect its efficacy in chelation therapy. Herein, a novel nanocomposite composed of mesoporous silica nanoparticles (MSNs), disulfide bond, and DMSA was synthesized and characterized with a scanning/transmission electron microscope, IR and Raman spectra, and TGA analysis. The in vitro interactions with glutathione (GSH) and cellular uptake assays showed that it was able to be stable in extracellular environments such as in blood, be internalized by cells, and release DMSA inside via GSH-triggered disulfide cleavage reaction. The in vitro adsorption assays showed that MSNs-SH as its intracellular metabolite had strong adsorbability for models of Hg(2+) or Pb(2+). The hemolysis and cell viability assays showed that it was compatible with blood and cells even at a concentration of 1000 μg·mL(−1). All above could not only enable it to be a GSH-responsive drug delivery system (DDS) for DMSA delivery but also to be a solution for its defects and efficacy. Thus, introduction of intelligent DDS might open a new avenue for DMSA-based chelation therapy. MDPI 2018-11-28 /pmc/articles/PMC6321213/ /pubmed/30487433 http://dx.doi.org/10.3390/ijms19123790 Text en © 2018 by the authors. Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Zhai, Hongqiang
Wang, Yuli
Wang, Menghua
Liu, Shuai
Yu, Feifei
Gao, Chunsheng
Li, Guiling
Wu, Qiang
Construction of a Glutathione-Responsive and Silica-Based Nanocomposite for Controlled Release of Chelator Dimercaptosuccinic Acid
title Construction of a Glutathione-Responsive and Silica-Based Nanocomposite for Controlled Release of Chelator Dimercaptosuccinic Acid
title_full Construction of a Glutathione-Responsive and Silica-Based Nanocomposite for Controlled Release of Chelator Dimercaptosuccinic Acid
title_fullStr Construction of a Glutathione-Responsive and Silica-Based Nanocomposite for Controlled Release of Chelator Dimercaptosuccinic Acid
title_full_unstemmed Construction of a Glutathione-Responsive and Silica-Based Nanocomposite for Controlled Release of Chelator Dimercaptosuccinic Acid
title_short Construction of a Glutathione-Responsive and Silica-Based Nanocomposite for Controlled Release of Chelator Dimercaptosuccinic Acid
title_sort construction of a glutathione-responsive and silica-based nanocomposite for controlled release of chelator dimercaptosuccinic acid
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6321213/
https://www.ncbi.nlm.nih.gov/pubmed/30487433
http://dx.doi.org/10.3390/ijms19123790
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