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Microcluster colloidosomes for hemostat delivery into complex wounds: A platform inspired by the attack action of torpedoes

Complex yet lethal wounds with uncontrollable bleeding hinder conventional hemostats from clotting blood at the source or deep sites of injury vasculature, thereby causing massive blood loss and significantly increased mortality. Inspired by the attack action of torpedoes, we synthesized microcluste...

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Detalles Bibliográficos
Autores principales: Lu, Bitao, Hu, Enling, Xie, Ruiqi, Yu, Kun, Lu, Fei, Bao, Rong, Wang, Chenhui, Lan, Guangqian, Dai, Fangyin
Formato: Online Artículo Texto
Lenguaje:English
Publicado: KeAi Publishing 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8965855/
https://www.ncbi.nlm.nih.gov/pubmed/35415282
http://dx.doi.org/10.1016/j.bioactmat.2022.01.002
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author Lu, Bitao
Hu, Enling
Xie, Ruiqi
Yu, Kun
Lu, Fei
Bao, Rong
Wang, Chenhui
Lan, Guangqian
Dai, Fangyin
author_facet Lu, Bitao
Hu, Enling
Xie, Ruiqi
Yu, Kun
Lu, Fei
Bao, Rong
Wang, Chenhui
Lan, Guangqian
Dai, Fangyin
author_sort Lu, Bitao
collection PubMed
description Complex yet lethal wounds with uncontrollable bleeding hinder conventional hemostats from clotting blood at the source or deep sites of injury vasculature, thereby causing massive blood loss and significantly increased mortality. Inspired by the attack action of torpedoes, we synthesized microcluster (MC) colloidosomes equipped with magnetic-mediated navigation and “blast” systems to deliver hemostats into the cavity of vase-type wounds. CaCO(3)/Fe(2)O(3) (CF) microparticles functionalized with Arg-Gly-Asp (RGD) modified polyelectrolyte multilayers were co-assembled with oppositely charged zwitterionic carbon dots (CDs) to form MC colloidosomes, which were loaded with thrombin and protonated tranexamic acid (TXA-NH(3)(+)). The composite microparticles moved against blood flow under magnetic mediation and simultaneously disassembled for the burst release of thrombin stimulated by TXA-NH(3)(+). The CO(2) bubbles generated during disassembly produced a “blast” that propelled thrombin into the wound cavity. Severe bleeding in a vase-type hemorrhage model in the rabbit liver was rapidly controlled within ∼60 s. Furthermore, in vivo subcutaneous muscle and liver implantation models demonstrated excellent biodegradability of MC colloidosomes. This study is the first to propose a novel strategy based on the principle of torpedoes for transporting hemostats into vase-type wounds to achieve rapid hemostasis, creating a new paradigm for combating trauma treatment.
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spelling pubmed-89658552022-04-11 Microcluster colloidosomes for hemostat delivery into complex wounds: A platform inspired by the attack action of torpedoes Lu, Bitao Hu, Enling Xie, Ruiqi Yu, Kun Lu, Fei Bao, Rong Wang, Chenhui Lan, Guangqian Dai, Fangyin Bioact Mater Article Complex yet lethal wounds with uncontrollable bleeding hinder conventional hemostats from clotting blood at the source or deep sites of injury vasculature, thereby causing massive blood loss and significantly increased mortality. Inspired by the attack action of torpedoes, we synthesized microcluster (MC) colloidosomes equipped with magnetic-mediated navigation and “blast” systems to deliver hemostats into the cavity of vase-type wounds. CaCO(3)/Fe(2)O(3) (CF) microparticles functionalized with Arg-Gly-Asp (RGD) modified polyelectrolyte multilayers were co-assembled with oppositely charged zwitterionic carbon dots (CDs) to form MC colloidosomes, which were loaded with thrombin and protonated tranexamic acid (TXA-NH(3)(+)). The composite microparticles moved against blood flow under magnetic mediation and simultaneously disassembled for the burst release of thrombin stimulated by TXA-NH(3)(+). The CO(2) bubbles generated during disassembly produced a “blast” that propelled thrombin into the wound cavity. Severe bleeding in a vase-type hemorrhage model in the rabbit liver was rapidly controlled within ∼60 s. Furthermore, in vivo subcutaneous muscle and liver implantation models demonstrated excellent biodegradability of MC colloidosomes. This study is the first to propose a novel strategy based on the principle of torpedoes for transporting hemostats into vase-type wounds to achieve rapid hemostasis, creating a new paradigm for combating trauma treatment. KeAi Publishing 2022-01-11 /pmc/articles/PMC8965855/ /pubmed/35415282 http://dx.doi.org/10.1016/j.bioactmat.2022.01.002 Text en © 2022 The Authors https://creativecommons.org/licenses/by-nc-nd/4.0/This is an open access article under the CC BY-NC-ND license (http://creativecommons.org/licenses/by-nc-nd/4.0/).
spellingShingle Article
Lu, Bitao
Hu, Enling
Xie, Ruiqi
Yu, Kun
Lu, Fei
Bao, Rong
Wang, Chenhui
Lan, Guangqian
Dai, Fangyin
Microcluster colloidosomes for hemostat delivery into complex wounds: A platform inspired by the attack action of torpedoes
title Microcluster colloidosomes for hemostat delivery into complex wounds: A platform inspired by the attack action of torpedoes
title_full Microcluster colloidosomes for hemostat delivery into complex wounds: A platform inspired by the attack action of torpedoes
title_fullStr Microcluster colloidosomes for hemostat delivery into complex wounds: A platform inspired by the attack action of torpedoes
title_full_unstemmed Microcluster colloidosomes for hemostat delivery into complex wounds: A platform inspired by the attack action of torpedoes
title_short Microcluster colloidosomes for hemostat delivery into complex wounds: A platform inspired by the attack action of torpedoes
title_sort microcluster colloidosomes for hemostat delivery into complex wounds: a platform inspired by the attack action of torpedoes
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8965855/
https://www.ncbi.nlm.nih.gov/pubmed/35415282
http://dx.doi.org/10.1016/j.bioactmat.2022.01.002
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