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Communicating assemblies of biomimetic nanocapsules

Communication assemblies between biomimetic nanocapsules in a 3D closed system with self-regulating and self-organization functionalities were demonstrated for the first time. Two types of biomimetic nanocapsules, TiO(2)/polydopamine capsules and SiO(2)/polyelectrolytes capsules with different stimu...

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Autores principales: Zhou, Hongda, Huang, Haowei, Bahri, Mounib, Browning, Nigel D., Smith, James, Graham, Michael, Shchukin, Dmitry
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/PMC8265773/
https://www.ncbi.nlm.nih.gov/pubmed/34165134
http://dx.doi.org/10.1039/d1nr03170h
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author Zhou, Hongda
Huang, Haowei
Bahri, Mounib
Browning, Nigel D.
Smith, James
Graham, Michael
Shchukin, Dmitry
author_facet Zhou, Hongda
Huang, Haowei
Bahri, Mounib
Browning, Nigel D.
Smith, James
Graham, Michael
Shchukin, Dmitry
author_sort Zhou, Hongda
collection PubMed
description Communication assemblies between biomimetic nanocapsules in a 3D closed system with self-regulating and self-organization functionalities were demonstrated for the first time. Two types of biomimetic nanocapsules, TiO(2)/polydopamine capsules and SiO(2)/polyelectrolytes capsules with different stimuli-responsive properties were prepared and leveraged to sense the external stimulus, transmit chemical signaling, and autonomic communication-controlled release of active cargos. The capsules have clear core–shell structures with average diameters of 30 nm and 25 nm, respectively. The nitrogen adsorption–desorption isotherms and thermogravimetric analysis displayed their massive pore structures and encapsulation capacity of 32% of glycine pH buffer and 68% of benzotriazole, respectively. Different from the direct release mode of the single capsule, the communication assemblies show an autonomic three-stage release process with a “jet lag” feature, showing the internal modulation ability of self-controlled release efficiency. The control overweight ratios of capsules influences on communication-release interaction between capsules. The highest communication-release efficiency (89.6% of benzotriazole) was achieved when the weight ratio of TiO(2)/polydopamine/SiO(2)/polyelectrolytes capsules was 5 : 1 or 10 : 1. Communication assemblies containing various types of nanocapsules can autonomically perform complex tasks in a biomimetic fashion, such as cascaded amplification and multidirectional communication platforms in bioreactors.
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spelling pubmed-82657732021-08-03 Communicating assemblies of biomimetic nanocapsules Zhou, Hongda Huang, Haowei Bahri, Mounib Browning, Nigel D. Smith, James Graham, Michael Shchukin, Dmitry Nanoscale Chemistry Communication assemblies between biomimetic nanocapsules in a 3D closed system with self-regulating and self-organization functionalities were demonstrated for the first time. Two types of biomimetic nanocapsules, TiO(2)/polydopamine capsules and SiO(2)/polyelectrolytes capsules with different stimuli-responsive properties were prepared and leveraged to sense the external stimulus, transmit chemical signaling, and autonomic communication-controlled release of active cargos. The capsules have clear core–shell structures with average diameters of 30 nm and 25 nm, respectively. The nitrogen adsorption–desorption isotherms and thermogravimetric analysis displayed their massive pore structures and encapsulation capacity of 32% of glycine pH buffer and 68% of benzotriazole, respectively. Different from the direct release mode of the single capsule, the communication assemblies show an autonomic three-stage release process with a “jet lag” feature, showing the internal modulation ability of self-controlled release efficiency. The control overweight ratios of capsules influences on communication-release interaction between capsules. The highest communication-release efficiency (89.6% of benzotriazole) was achieved when the weight ratio of TiO(2)/polydopamine/SiO(2)/polyelectrolytes capsules was 5 : 1 or 10 : 1. Communication assemblies containing various types of nanocapsules can autonomically perform complex tasks in a biomimetic fashion, such as cascaded amplification and multidirectional communication platforms in bioreactors. The Royal Society of Chemistry 2021-06-21 /pmc/articles/PMC8265773/ /pubmed/34165134 http://dx.doi.org/10.1039/d1nr03170h Text en This journal is © The Royal Society of Chemistry https://creativecommons.org/licenses/by-nc/3.0/
spellingShingle Chemistry
Zhou, Hongda
Huang, Haowei
Bahri, Mounib
Browning, Nigel D.
Smith, James
Graham, Michael
Shchukin, Dmitry
Communicating assemblies of biomimetic nanocapsules
title Communicating assemblies of biomimetic nanocapsules
title_full Communicating assemblies of biomimetic nanocapsules
title_fullStr Communicating assemblies of biomimetic nanocapsules
title_full_unstemmed Communicating assemblies of biomimetic nanocapsules
title_short Communicating assemblies of biomimetic nanocapsules
title_sort communicating assemblies of biomimetic nanocapsules
topic Chemistry
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8265773/
https://www.ncbi.nlm.nih.gov/pubmed/34165134
http://dx.doi.org/10.1039/d1nr03170h
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