Cargando…
Platelet bio-nanobubbles as microvascular recanalization nanoformulation for acute ischemic stroke lesion theranostics
Since the expected therapeutic results of ischemic stroke are strictly time dependent, early and accurate diagnosis as well as short intervals between diagnosis and treatment are key factors for the survival of stroke patients. In this study, we fabricated platelet (PLT) membrane-derived biomimetic...
Autores principales: | , , , , , , , , , |
---|---|
Formato: | Online Artículo Texto |
Lenguaje: | English |
Publicado: |
Ivyspring International Publisher
2018
|
Materias: | |
Acceso en línea: | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6217069/ https://www.ncbi.nlm.nih.gov/pubmed/30429874 http://dx.doi.org/10.7150/thno.27466 |
_version_ | 1783368316305276928 |
---|---|
author | Li, Mingxi Liu, Yang Chen, Jinpeng Liu, Taotao Gu, Zhuxiao Zhang, Jianqiong Gu, Xiaochun Teng, Gaojun Yang, Fang Gu, Ning |
author_facet | Li, Mingxi Liu, Yang Chen, Jinpeng Liu, Taotao Gu, Zhuxiao Zhang, Jianqiong Gu, Xiaochun Teng, Gaojun Yang, Fang Gu, Ning |
author_sort | Li, Mingxi |
collection | PubMed |
description | Since the expected therapeutic results of ischemic stroke are strictly time dependent, early and accurate diagnosis as well as short intervals between diagnosis and treatment are key factors for the survival of stroke patients. In this study, we fabricated platelet (PLT) membrane-derived biomimetic nanobubbles (PNBs) for timely perfusion intervention and ultrasound imaging of acute ischemic stroke. Methods: The PNBs are fabricated by sonication-assisted reassembly of repeatedly freeze-thawed live platelet-derived PLT membrane vesicles (PMVs). The TEM, SEM, EDS and DLS were used to analyze the morphology and physicochemical properties of PNBs. The HPLC and LC-MS/MS were applied to confirm the lipid and protein compositions of PNBs. The in vitro macrophage uptake and platelet aggregation of PNBs were designed to examine the immune escape and thrombotic response characteristics. Furthermore, based on a photothrombotic ischemic stroke mouse model, the biodistribution, stroke microvascular network change, as well as cerebral blood flow of PNBs were studied by using near-infrared fluorescence imaging, multimodal optical imaging, and full-field laser perfusion imager. Finally, we assessed the brain ultrasound imaging of PNBs with a high-resolution micro-imaging system using both B-mode and contrast mode. Results: The natural lipid and protein components isolated from PLT membrane endow the PNBs with accurate lesion-targeting ability. The preferentially accumulated PNBs exhibit microvascular bio-remodeling ability of the stroke lesion, which is critical for recanalization of the obstructed vessels to protect the neural cells around the ischemic region of the stroke. Furthermore, with the increased accumulation of PNBs clusters in the lesion, PNBs in the lesion can be monitored by real-time contrast-enhanced ultrasound imaging to indicate the severity and dynamic development of the stroke. Conclusions: In summary, platelet membrane-based nanobubbles for targeting acute ischemic lesions were developed as microvascular recanalization nanoformulation for acute ischemic stroke lesion theranostics. This biomimetic PNBs theranostic strategy will be valuable for ischemic stroke patients in the future. |
format | Online Article Text |
id | pubmed-6217069 |
institution | National Center for Biotechnology Information |
language | English |
publishDate | 2018 |
publisher | Ivyspring International Publisher |
record_format | MEDLINE/PubMed |
spelling | pubmed-62170692018-11-14 Platelet bio-nanobubbles as microvascular recanalization nanoformulation for acute ischemic stroke lesion theranostics Li, Mingxi Liu, Yang Chen, Jinpeng Liu, Taotao Gu, Zhuxiao Zhang, Jianqiong Gu, Xiaochun Teng, Gaojun Yang, Fang Gu, Ning Theranostics Research Paper Since the expected therapeutic results of ischemic stroke are strictly time dependent, early and accurate diagnosis as well as short intervals between diagnosis and treatment are key factors for the survival of stroke patients. In this study, we fabricated platelet (PLT) membrane-derived biomimetic nanobubbles (PNBs) for timely perfusion intervention and ultrasound imaging of acute ischemic stroke. Methods: The PNBs are fabricated by sonication-assisted reassembly of repeatedly freeze-thawed live platelet-derived PLT membrane vesicles (PMVs). The TEM, SEM, EDS and DLS were used to analyze the morphology and physicochemical properties of PNBs. The HPLC and LC-MS/MS were applied to confirm the lipid and protein compositions of PNBs. The in vitro macrophage uptake and platelet aggregation of PNBs were designed to examine the immune escape and thrombotic response characteristics. Furthermore, based on a photothrombotic ischemic stroke mouse model, the biodistribution, stroke microvascular network change, as well as cerebral blood flow of PNBs were studied by using near-infrared fluorescence imaging, multimodal optical imaging, and full-field laser perfusion imager. Finally, we assessed the brain ultrasound imaging of PNBs with a high-resolution micro-imaging system using both B-mode and contrast mode. Results: The natural lipid and protein components isolated from PLT membrane endow the PNBs with accurate lesion-targeting ability. The preferentially accumulated PNBs exhibit microvascular bio-remodeling ability of the stroke lesion, which is critical for recanalization of the obstructed vessels to protect the neural cells around the ischemic region of the stroke. Furthermore, with the increased accumulation of PNBs clusters in the lesion, PNBs in the lesion can be monitored by real-time contrast-enhanced ultrasound imaging to indicate the severity and dynamic development of the stroke. Conclusions: In summary, platelet membrane-based nanobubbles for targeting acute ischemic lesions were developed as microvascular recanalization nanoformulation for acute ischemic stroke lesion theranostics. This biomimetic PNBs theranostic strategy will be valuable for ischemic stroke patients in the future. Ivyspring International Publisher 2018-09-09 /pmc/articles/PMC6217069/ /pubmed/30429874 http://dx.doi.org/10.7150/thno.27466 Text en © Ivyspring International Publisher This is an open access article distributed under the terms of the Creative Commons Attribution (CC BY-NC) license (https://creativecommons.org/licenses/by-nc/4.0/). See http://ivyspring.com/terms for full terms and conditions. |
spellingShingle | Research Paper Li, Mingxi Liu, Yang Chen, Jinpeng Liu, Taotao Gu, Zhuxiao Zhang, Jianqiong Gu, Xiaochun Teng, Gaojun Yang, Fang Gu, Ning Platelet bio-nanobubbles as microvascular recanalization nanoformulation for acute ischemic stroke lesion theranostics |
title | Platelet bio-nanobubbles as microvascular recanalization nanoformulation for acute ischemic stroke lesion theranostics |
title_full | Platelet bio-nanobubbles as microvascular recanalization nanoformulation for acute ischemic stroke lesion theranostics |
title_fullStr | Platelet bio-nanobubbles as microvascular recanalization nanoformulation for acute ischemic stroke lesion theranostics |
title_full_unstemmed | Platelet bio-nanobubbles as microvascular recanalization nanoformulation for acute ischemic stroke lesion theranostics |
title_short | Platelet bio-nanobubbles as microvascular recanalization nanoformulation for acute ischemic stroke lesion theranostics |
title_sort | platelet bio-nanobubbles as microvascular recanalization nanoformulation for acute ischemic stroke lesion theranostics |
topic | Research Paper |
url | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6217069/ https://www.ncbi.nlm.nih.gov/pubmed/30429874 http://dx.doi.org/10.7150/thno.27466 |
work_keys_str_mv | AT limingxi plateletbionanobubblesasmicrovascularrecanalizationnanoformulationforacuteischemicstrokelesiontheranostics AT liuyang plateletbionanobubblesasmicrovascularrecanalizationnanoformulationforacuteischemicstrokelesiontheranostics AT chenjinpeng plateletbionanobubblesasmicrovascularrecanalizationnanoformulationforacuteischemicstrokelesiontheranostics AT liutaotao plateletbionanobubblesasmicrovascularrecanalizationnanoformulationforacuteischemicstrokelesiontheranostics AT guzhuxiao plateletbionanobubblesasmicrovascularrecanalizationnanoformulationforacuteischemicstrokelesiontheranostics AT zhangjianqiong plateletbionanobubblesasmicrovascularrecanalizationnanoformulationforacuteischemicstrokelesiontheranostics AT guxiaochun plateletbionanobubblesasmicrovascularrecanalizationnanoformulationforacuteischemicstrokelesiontheranostics AT tenggaojun plateletbionanobubblesasmicrovascularrecanalizationnanoformulationforacuteischemicstrokelesiontheranostics AT yangfang plateletbionanobubblesasmicrovascularrecanalizationnanoformulationforacuteischemicstrokelesiontheranostics AT guning plateletbionanobubblesasmicrovascularrecanalizationnanoformulationforacuteischemicstrokelesiontheranostics |