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Esterase-Cleavable 2D Assemblies of Magnetic Iron Oxide Nanocubes: Exploiting Enzymatic Polymer Disassembling To Improve Magnetic Hyperthermia Heat Losses

[Image: see text] Here, we report a nanoplatform based on iron oxide nanocubes (IONCs) coated with a bioresorbable polymer that, upon exposure to lytic enzymes, can be disassembled increasing the heat performances in comparison with the initial clusters. We have developed two-dimensional (2D) cluste...

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Autores principales: Avugadda, Sahitya Kumar, Materia, Maria Elena, Nigmatullin, Rinat, Cabrera, David, Marotta, Roberto, Cabada, Tamara Fernandez, Marcello, Elena, Nitti, Simone, Artés-Ibañez, Emilio J., Basnett, Pooja, Wilhelm, Claire, Teran, Francisco J., Roy, Ipsita, Pellegrino, Teresa
Formato: Online Artículo Texto
Lenguaje:English
Publicado: American Chemical Society 2019
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6795213/
https://www.ncbi.nlm.nih.gov/pubmed/31631940
http://dx.doi.org/10.1021/acs.chemmater.9b00728
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author Avugadda, Sahitya Kumar
Materia, Maria Elena
Nigmatullin, Rinat
Cabrera, David
Marotta, Roberto
Cabada, Tamara Fernandez
Marcello, Elena
Nitti, Simone
Artés-Ibañez, Emilio J.
Basnett, Pooja
Wilhelm, Claire
Teran, Francisco J.
Roy, Ipsita
Pellegrino, Teresa
author_facet Avugadda, Sahitya Kumar
Materia, Maria Elena
Nigmatullin, Rinat
Cabrera, David
Marotta, Roberto
Cabada, Tamara Fernandez
Marcello, Elena
Nitti, Simone
Artés-Ibañez, Emilio J.
Basnett, Pooja
Wilhelm, Claire
Teran, Francisco J.
Roy, Ipsita
Pellegrino, Teresa
author_sort Avugadda, Sahitya Kumar
collection PubMed
description [Image: see text] Here, we report a nanoplatform based on iron oxide nanocubes (IONCs) coated with a bioresorbable polymer that, upon exposure to lytic enzymes, can be disassembled increasing the heat performances in comparison with the initial clusters. We have developed two-dimensional (2D) clusters by exploiting benchmark IONCs as heat mediators for magnetic hyperthermia and a polyhydroxyalkanoate (PHA) copolymer, a biodegradable polymer produced by bacteria that can be digested by intracellular esterase enzymes. The comparison of magnetic heat performance of the 2D assemblies with 3D centrosymmetrical assemblies or single IONCs emphasizes the benefit of the 2D assembly. Moreover, the heat losses of 2D assemblies dispersed in water are better than the 3D assemblies but worse than for single nanocubes. On the other hand, when the 2D magnetic beads (2D-MNBs) are incubated with the esterase enzyme at a physiological temperature, their magnetic heat performances began to progressively increase. After 2 h of incubation, specific absorption rate values of the 2D assembly double the ones of individually coated nanocubes. Such an increase can be mainly correlated to the splitting of the 2D-MNBs into smaller size clusters with a chain-like configuration containing few nanocubes. Moreover, 2D-MNBs exhibited nonvariable heat performances even after intentionally inducing their aggregation. Magnetophoresis measurements indicate a comparable response of 3D and 2D clusters to external magnets (0.3 T) that is by far faster than that of single nanocubes. This feature is crucial for a physical accumulation of magnetic materials in the presence of magnetic field gradients. This system is the first example of a nanoplatform that, upon exposure to lytic enzymes, such as those present in a tumor environment, can be disassembled from the initial 2D-MNB organization to chain-like assemblies with clear improvement of the heat magnetic losses resulting in better heat dissipation performances. The potential application of 2D nanoassemblies based on the cleavable PHAs for preserving their magnetic losses inside cells will benefit hyperthermia therapies mediated by magnetic nanoparticles under alternating magnetic fields.
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spelling pubmed-67952132020-06-26 Esterase-Cleavable 2D Assemblies of Magnetic Iron Oxide Nanocubes: Exploiting Enzymatic Polymer Disassembling To Improve Magnetic Hyperthermia Heat Losses Avugadda, Sahitya Kumar Materia, Maria Elena Nigmatullin, Rinat Cabrera, David Marotta, Roberto Cabada, Tamara Fernandez Marcello, Elena Nitti, Simone Artés-Ibañez, Emilio J. Basnett, Pooja Wilhelm, Claire Teran, Francisco J. Roy, Ipsita Pellegrino, Teresa Chem Mater [Image: see text] Here, we report a nanoplatform based on iron oxide nanocubes (IONCs) coated with a bioresorbable polymer that, upon exposure to lytic enzymes, can be disassembled increasing the heat performances in comparison with the initial clusters. We have developed two-dimensional (2D) clusters by exploiting benchmark IONCs as heat mediators for magnetic hyperthermia and a polyhydroxyalkanoate (PHA) copolymer, a biodegradable polymer produced by bacteria that can be digested by intracellular esterase enzymes. The comparison of magnetic heat performance of the 2D assemblies with 3D centrosymmetrical assemblies or single IONCs emphasizes the benefit of the 2D assembly. Moreover, the heat losses of 2D assemblies dispersed in water are better than the 3D assemblies but worse than for single nanocubes. On the other hand, when the 2D magnetic beads (2D-MNBs) are incubated with the esterase enzyme at a physiological temperature, their magnetic heat performances began to progressively increase. After 2 h of incubation, specific absorption rate values of the 2D assembly double the ones of individually coated nanocubes. Such an increase can be mainly correlated to the splitting of the 2D-MNBs into smaller size clusters with a chain-like configuration containing few nanocubes. Moreover, 2D-MNBs exhibited nonvariable heat performances even after intentionally inducing their aggregation. Magnetophoresis measurements indicate a comparable response of 3D and 2D clusters to external magnets (0.3 T) that is by far faster than that of single nanocubes. This feature is crucial for a physical accumulation of magnetic materials in the presence of magnetic field gradients. This system is the first example of a nanoplatform that, upon exposure to lytic enzymes, such as those present in a tumor environment, can be disassembled from the initial 2D-MNB organization to chain-like assemblies with clear improvement of the heat magnetic losses resulting in better heat dissipation performances. The potential application of 2D nanoassemblies based on the cleavable PHAs for preserving their magnetic losses inside cells will benefit hyperthermia therapies mediated by magnetic nanoparticles under alternating magnetic fields. American Chemical Society 2019-06-26 2019-08-13 /pmc/articles/PMC6795213/ /pubmed/31631940 http://dx.doi.org/10.1021/acs.chemmater.9b00728 Text en Copyright © 2019 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 Avugadda, Sahitya Kumar
Materia, Maria Elena
Nigmatullin, Rinat
Cabrera, David
Marotta, Roberto
Cabada, Tamara Fernandez
Marcello, Elena
Nitti, Simone
Artés-Ibañez, Emilio J.
Basnett, Pooja
Wilhelm, Claire
Teran, Francisco J.
Roy, Ipsita
Pellegrino, Teresa
Esterase-Cleavable 2D Assemblies of Magnetic Iron Oxide Nanocubes: Exploiting Enzymatic Polymer Disassembling To Improve Magnetic Hyperthermia Heat Losses
title Esterase-Cleavable 2D Assemblies of Magnetic Iron Oxide Nanocubes: Exploiting Enzymatic Polymer Disassembling To Improve Magnetic Hyperthermia Heat Losses
title_full Esterase-Cleavable 2D Assemblies of Magnetic Iron Oxide Nanocubes: Exploiting Enzymatic Polymer Disassembling To Improve Magnetic Hyperthermia Heat Losses
title_fullStr Esterase-Cleavable 2D Assemblies of Magnetic Iron Oxide Nanocubes: Exploiting Enzymatic Polymer Disassembling To Improve Magnetic Hyperthermia Heat Losses
title_full_unstemmed Esterase-Cleavable 2D Assemblies of Magnetic Iron Oxide Nanocubes: Exploiting Enzymatic Polymer Disassembling To Improve Magnetic Hyperthermia Heat Losses
title_short Esterase-Cleavable 2D Assemblies of Magnetic Iron Oxide Nanocubes: Exploiting Enzymatic Polymer Disassembling To Improve Magnetic Hyperthermia Heat Losses
title_sort esterase-cleavable 2d assemblies of magnetic iron oxide nanocubes: exploiting enzymatic polymer disassembling to improve magnetic hyperthermia heat losses
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6795213/
https://www.ncbi.nlm.nih.gov/pubmed/31631940
http://dx.doi.org/10.1021/acs.chemmater.9b00728
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