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Phase dependent encapsulation and release profile of ZIF-based biocomposites

Biocomposites composed of Zeolitic Imidazolate Frameworks (ZIFs) are generating significant interest due to their facile synthesis, and capacity to protect proteins from harsh environments. Here we systematically varied the composition (i.e. relative amounts of ligand (2-methylimidazole), metal prec...

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Autores principales: Carraro, F., Velásquez-Hernández, M. de J., Astria, E., Liang, W., Twight, L., Parise, C., Ge, M., Huang, Z., Ricco, R., Zou, X., Villanova, L., Kappe, C. O., Doonan, C., Falcaro, P.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: The Royal Society of Chemistry 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8529536/
https://www.ncbi.nlm.nih.gov/pubmed/34777742
http://dx.doi.org/10.1039/c9sc05433b
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author Carraro, F.
Velásquez-Hernández, M. de J.
Astria, E.
Liang, W.
Twight, L.
Parise, C.
Ge, M.
Huang, Z.
Ricco, R.
Zou, X.
Villanova, L.
Kappe, C. O.
Doonan, C.
Falcaro, P.
author_facet Carraro, F.
Velásquez-Hernández, M. de J.
Astria, E.
Liang, W.
Twight, L.
Parise, C.
Ge, M.
Huang, Z.
Ricco, R.
Zou, X.
Villanova, L.
Kappe, C. O.
Doonan, C.
Falcaro, P.
author_sort Carraro, F.
collection PubMed
description Biocomposites composed of Zeolitic Imidazolate Frameworks (ZIFs) are generating significant interest due to their facile synthesis, and capacity to protect proteins from harsh environments. Here we systematically varied the composition (i.e. relative amounts of ligand (2-methylimidazole), metal precursor (Zn(OAc)(2)·2H(2)O), and protein) and post synthetic treatments (i.e. washes with water or water/ethanol) to prepare a series of protein@ZIF biocomposites. These data were used to construct two ternary phase diagrams that showed the synthesis conditions employed gave rise to five different phases including, for the first time, biocomposites based on ZIF-CO(3)-1. We examined the influence of the different phases on two properties relevant to drug delivery applications: encapsulation efficiency and release profile. The encapsulation efficiencies of bovine serum albumin and insulin were phase dependent and ranged from 75% to 100%. In addition, release profiles showed that 100% protein release varied between 40 and 300 minutes depending on the phase. This study provides a detailed compositional map for the targeted preparation of ZIF-based biocomposites of specific phases and a tool for the straightforward analysis of the crystalline phases of ZIF based materials (web application named “ZIF phase analysis”). These data will facilitate the progress of ZIF bio-composites in the fields of biomedicine and biotechnology.
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spelling pubmed-85295362021-11-12 Phase dependent encapsulation and release profile of ZIF-based biocomposites Carraro, F. Velásquez-Hernández, M. de J. Astria, E. Liang, W. Twight, L. Parise, C. Ge, M. Huang, Z. Ricco, R. Zou, X. Villanova, L. Kappe, C. O. Doonan, C. Falcaro, P. Chem Sci Chemistry Biocomposites composed of Zeolitic Imidazolate Frameworks (ZIFs) are generating significant interest due to their facile synthesis, and capacity to protect proteins from harsh environments. Here we systematically varied the composition (i.e. relative amounts of ligand (2-methylimidazole), metal precursor (Zn(OAc)(2)·2H(2)O), and protein) and post synthetic treatments (i.e. washes with water or water/ethanol) to prepare a series of protein@ZIF biocomposites. These data were used to construct two ternary phase diagrams that showed the synthesis conditions employed gave rise to five different phases including, for the first time, biocomposites based on ZIF-CO(3)-1. We examined the influence of the different phases on two properties relevant to drug delivery applications: encapsulation efficiency and release profile. The encapsulation efficiencies of bovine serum albumin and insulin were phase dependent and ranged from 75% to 100%. In addition, release profiles showed that 100% protein release varied between 40 and 300 minutes depending on the phase. This study provides a detailed compositional map for the targeted preparation of ZIF-based biocomposites of specific phases and a tool for the straightforward analysis of the crystalline phases of ZIF based materials (web application named “ZIF phase analysis”). These data will facilitate the progress of ZIF bio-composites in the fields of biomedicine and biotechnology. The Royal Society of Chemistry 2020-02-13 /pmc/articles/PMC8529536/ /pubmed/34777742 http://dx.doi.org/10.1039/c9sc05433b Text en This journal is © The Royal Society of Chemistry https://creativecommons.org/licenses/by/3.0/
spellingShingle Chemistry
Carraro, F.
Velásquez-Hernández, M. de J.
Astria, E.
Liang, W.
Twight, L.
Parise, C.
Ge, M.
Huang, Z.
Ricco, R.
Zou, X.
Villanova, L.
Kappe, C. O.
Doonan, C.
Falcaro, P.
Phase dependent encapsulation and release profile of ZIF-based biocomposites
title Phase dependent encapsulation and release profile of ZIF-based biocomposites
title_full Phase dependent encapsulation and release profile of ZIF-based biocomposites
title_fullStr Phase dependent encapsulation and release profile of ZIF-based biocomposites
title_full_unstemmed Phase dependent encapsulation and release profile of ZIF-based biocomposites
title_short Phase dependent encapsulation and release profile of ZIF-based biocomposites
title_sort phase dependent encapsulation and release profile of zif-based biocomposites
topic Chemistry
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8529536/
https://www.ncbi.nlm.nih.gov/pubmed/34777742
http://dx.doi.org/10.1039/c9sc05433b
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