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Dendronized oligoethylene glycols with phosphonate tweezers for cell-repellent coating of oxide surfaces: coarse-scale and nanoscopic interfacial forces

Dendronized oligoethylene glycols (dendron OEGs) with two phosphonate groups (phosphonate tweezers) have been drawing significant attention as a new class of coating materials for superparamagnetic iron oxide surfaces. However, despite dendron OEGs showing outstanding stability in physiological flui...

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Autores principales: Czajor, Julian, Abuillan, Wasim, Nguyen, Dinh Vu, Heidebrecht, Christopher, Mondarte, Evan A., Konovalov, Oleg V., Hayashi, Tomohiro, Felder-Flesch, Delphine, Kaufmann, Stefan, Tanaka, Motomu
Formato: Online Artículo Texto
Lenguaje:English
Publicado: The Royal Society of Chemistry 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9033241/
https://www.ncbi.nlm.nih.gov/pubmed/35480187
http://dx.doi.org/10.1039/d1ra02571f
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author Czajor, Julian
Abuillan, Wasim
Nguyen, Dinh Vu
Heidebrecht, Christopher
Mondarte, Evan A.
Konovalov, Oleg V.
Hayashi, Tomohiro
Felder-Flesch, Delphine
Kaufmann, Stefan
Tanaka, Motomu
author_facet Czajor, Julian
Abuillan, Wasim
Nguyen, Dinh Vu
Heidebrecht, Christopher
Mondarte, Evan A.
Konovalov, Oleg V.
Hayashi, Tomohiro
Felder-Flesch, Delphine
Kaufmann, Stefan
Tanaka, Motomu
author_sort Czajor, Julian
collection PubMed
description Dendronized oligoethylene glycols (dendron OEGs) with two phosphonate groups (phosphonate tweezers) have been drawing significant attention as a new class of coating materials for superparamagnetic iron oxide surfaces. However, despite dendron OEGs showing outstanding stability in physiological fluids in previous studies, little is understood about their structure and mechanical properties. Herein we report the surface and internal structures and mechanical properties of dendron OEGs, and quantitatively determine their ability to avoid non-specific adhesion of blood platelets. To gain insight into the interfacial force interactions, we measured the coarse-scale surface force acting on cell-sized particles and mapped the nanoscopic pinning centers by fast force mapping.
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spelling pubmed-90332412022-04-26 Dendronized oligoethylene glycols with phosphonate tweezers for cell-repellent coating of oxide surfaces: coarse-scale and nanoscopic interfacial forces Czajor, Julian Abuillan, Wasim Nguyen, Dinh Vu Heidebrecht, Christopher Mondarte, Evan A. Konovalov, Oleg V. Hayashi, Tomohiro Felder-Flesch, Delphine Kaufmann, Stefan Tanaka, Motomu RSC Adv Chemistry Dendronized oligoethylene glycols (dendron OEGs) with two phosphonate groups (phosphonate tweezers) have been drawing significant attention as a new class of coating materials for superparamagnetic iron oxide surfaces. However, despite dendron OEGs showing outstanding stability in physiological fluids in previous studies, little is understood about their structure and mechanical properties. Herein we report the surface and internal structures and mechanical properties of dendron OEGs, and quantitatively determine their ability to avoid non-specific adhesion of blood platelets. To gain insight into the interfacial force interactions, we measured the coarse-scale surface force acting on cell-sized particles and mapped the nanoscopic pinning centers by fast force mapping. The Royal Society of Chemistry 2021-05-17 /pmc/articles/PMC9033241/ /pubmed/35480187 http://dx.doi.org/10.1039/d1ra02571f Text en This journal is © The Royal Society of Chemistry https://creativecommons.org/licenses/by-nc/3.0/
spellingShingle Chemistry
Czajor, Julian
Abuillan, Wasim
Nguyen, Dinh Vu
Heidebrecht, Christopher
Mondarte, Evan A.
Konovalov, Oleg V.
Hayashi, Tomohiro
Felder-Flesch, Delphine
Kaufmann, Stefan
Tanaka, Motomu
Dendronized oligoethylene glycols with phosphonate tweezers for cell-repellent coating of oxide surfaces: coarse-scale and nanoscopic interfacial forces
title Dendronized oligoethylene glycols with phosphonate tweezers for cell-repellent coating of oxide surfaces: coarse-scale and nanoscopic interfacial forces
title_full Dendronized oligoethylene glycols with phosphonate tweezers for cell-repellent coating of oxide surfaces: coarse-scale and nanoscopic interfacial forces
title_fullStr Dendronized oligoethylene glycols with phosphonate tweezers for cell-repellent coating of oxide surfaces: coarse-scale and nanoscopic interfacial forces
title_full_unstemmed Dendronized oligoethylene glycols with phosphonate tweezers for cell-repellent coating of oxide surfaces: coarse-scale and nanoscopic interfacial forces
title_short Dendronized oligoethylene glycols with phosphonate tweezers for cell-repellent coating of oxide surfaces: coarse-scale and nanoscopic interfacial forces
title_sort dendronized oligoethylene glycols with phosphonate tweezers for cell-repellent coating of oxide surfaces: coarse-scale and nanoscopic interfacial forces
topic Chemistry
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9033241/
https://www.ncbi.nlm.nih.gov/pubmed/35480187
http://dx.doi.org/10.1039/d1ra02571f
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