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Platelet-derived porous nanomotor for thrombus therapy
The treatment difficulties of venous thrombosis include short half-life, low utilization, and poor penetration of drugs at thrombus site. Here, we develop one kind of mesoporous/macroporous silica/platinum nanomotors with platelet membrane (PM) modification (MMNM/PM) for sequentially targeting deliv...
Autores principales: | , , , , , , , , , , , , , , , , , |
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Formato: | Online Artículo Texto |
Lenguaje: | English |
Publicado: |
American Association for the Advancement of Science
2020
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Materias: | |
Acceso en línea: | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7385437/ https://www.ncbi.nlm.nih.gov/pubmed/32766445 http://dx.doi.org/10.1126/sciadv.aaz9014 |
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author | Wan, Mimi Wang, Qi Wang, Rongliang Wu, Rui Li, Ting Fang, Dan Huang, Yangyang Yu, Yueqi Fang, Leyi Wang, Xingwen Zhang, Yinghua Miao, Zhuoyue Zhao, Bo Wang, Fenghe Mao, Chun Jiang, Qing Xu, Xingquan Shi, Dongquan |
author_facet | Wan, Mimi Wang, Qi Wang, Rongliang Wu, Rui Li, Ting Fang, Dan Huang, Yangyang Yu, Yueqi Fang, Leyi Wang, Xingwen Zhang, Yinghua Miao, Zhuoyue Zhao, Bo Wang, Fenghe Mao, Chun Jiang, Qing Xu, Xingquan Shi, Dongquan |
author_sort | Wan, Mimi |
collection | PubMed |
description | The treatment difficulties of venous thrombosis include short half-life, low utilization, and poor penetration of drugs at thrombus site. Here, we develop one kind of mesoporous/macroporous silica/platinum nanomotors with platelet membrane (PM) modification (MMNM/PM) for sequentially targeting delivery of thrombolytic and anticoagulant drugs for thrombus treatment. Regulated by the special proteins on PM, the nanomotors target the thrombus site and then PM can be ruptured under near-infrared (NIR) irradiation to achieve desirable sequential drug release, including rapid release of thrombolytic urokinase (3 hours) and slow release of anticoagulant heparin (>20 days). Meantime, the motion ability of nanomotors under NIR irradiation can effectively promote them to penetrate deeply in thrombus site to enhance retention ratio. The in vitro and in vivo evaluation results confirm that the synergistic effect of targeting ability from PM and motion ability from nanomotors can notably enhance the thrombolysis effect in both static/dynamic thrombus and rat model. |
format | Online Article Text |
id | pubmed-7385437 |
institution | National Center for Biotechnology Information |
language | English |
publishDate | 2020 |
publisher | American Association for the Advancement of Science |
record_format | MEDLINE/PubMed |
spelling | pubmed-73854372020-08-05 Platelet-derived porous nanomotor for thrombus therapy Wan, Mimi Wang, Qi Wang, Rongliang Wu, Rui Li, Ting Fang, Dan Huang, Yangyang Yu, Yueqi Fang, Leyi Wang, Xingwen Zhang, Yinghua Miao, Zhuoyue Zhao, Bo Wang, Fenghe Mao, Chun Jiang, Qing Xu, Xingquan Shi, Dongquan Sci Adv Research Articles The treatment difficulties of venous thrombosis include short half-life, low utilization, and poor penetration of drugs at thrombus site. Here, we develop one kind of mesoporous/macroporous silica/platinum nanomotors with platelet membrane (PM) modification (MMNM/PM) for sequentially targeting delivery of thrombolytic and anticoagulant drugs for thrombus treatment. Regulated by the special proteins on PM, the nanomotors target the thrombus site and then PM can be ruptured under near-infrared (NIR) irradiation to achieve desirable sequential drug release, including rapid release of thrombolytic urokinase (3 hours) and slow release of anticoagulant heparin (>20 days). Meantime, the motion ability of nanomotors under NIR irradiation can effectively promote them to penetrate deeply in thrombus site to enhance retention ratio. The in vitro and in vivo evaluation results confirm that the synergistic effect of targeting ability from PM and motion ability from nanomotors can notably enhance the thrombolysis effect in both static/dynamic thrombus and rat model. American Association for the Advancement of Science 2020-05-27 /pmc/articles/PMC7385437/ /pubmed/32766445 http://dx.doi.org/10.1126/sciadv.aaz9014 Text en Copyright © 2020 The Authors, some rights reserved; exclusive licensee American Association for the Advancement of Science. No claim to original U.S. Government Works. Distributed under a Creative Commons Attribution NonCommercial License 4.0 (CC BY-NC). http://creativecommons.org/licenses/by-nc/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution-NonCommercial license (http://creativecommons.org/licenses/by-nc/4.0/) , which permits use, distribution, and reproduction in any medium, so long as the resultant use is not for commercial advantage and provided the original work is properly cited. |
spellingShingle | Research Articles Wan, Mimi Wang, Qi Wang, Rongliang Wu, Rui Li, Ting Fang, Dan Huang, Yangyang Yu, Yueqi Fang, Leyi Wang, Xingwen Zhang, Yinghua Miao, Zhuoyue Zhao, Bo Wang, Fenghe Mao, Chun Jiang, Qing Xu, Xingquan Shi, Dongquan Platelet-derived porous nanomotor for thrombus therapy |
title | Platelet-derived porous nanomotor for thrombus therapy |
title_full | Platelet-derived porous nanomotor for thrombus therapy |
title_fullStr | Platelet-derived porous nanomotor for thrombus therapy |
title_full_unstemmed | Platelet-derived porous nanomotor for thrombus therapy |
title_short | Platelet-derived porous nanomotor for thrombus therapy |
title_sort | platelet-derived porous nanomotor for thrombus therapy |
topic | Research Articles |
url | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7385437/ https://www.ncbi.nlm.nih.gov/pubmed/32766445 http://dx.doi.org/10.1126/sciadv.aaz9014 |
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