Cargando…

Magnetic covalent organic framework nanospheres-based miRNA biosensor for sensitive glioma detection

Sensitive detection and accurate diagnosis/prognosis of glioma remain urgent challenges. Herein, dispersed magnetic covalent organic framework nanospheres (MCOF) with uniformed Fe(3)O(4) nano-assembly as cores and high-crystalline COF as shells were prepared by monomer-mediated in-situ interface gro...

Descripción completa

Detalles Bibliográficos
Autores principales: Liang, Dong, Zhang, Xiaoyi, Wang, Yi, Huo, Taotao, Qian, Min, Xie, Yibo, Li, Wenshuai, Yu, Yunqiu, Shi, Wei, Liu, Qianqian, Zhu, Junle, Luo, Chun, Cao, Zhijuan, Huang, Rongqin
Formato: Online Artículo Texto
Lenguaje:English
Publicado: KeAi Publishing 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8892165/
https://www.ncbi.nlm.nih.gov/pubmed/35310355
http://dx.doi.org/10.1016/j.bioactmat.2021.11.033
_version_ 1784662089746350080
author Liang, Dong
Zhang, Xiaoyi
Wang, Yi
Huo, Taotao
Qian, Min
Xie, Yibo
Li, Wenshuai
Yu, Yunqiu
Shi, Wei
Liu, Qianqian
Zhu, Junle
Luo, Chun
Cao, Zhijuan
Huang, Rongqin
author_facet Liang, Dong
Zhang, Xiaoyi
Wang, Yi
Huo, Taotao
Qian, Min
Xie, Yibo
Li, Wenshuai
Yu, Yunqiu
Shi, Wei
Liu, Qianqian
Zhu, Junle
Luo, Chun
Cao, Zhijuan
Huang, Rongqin
author_sort Liang, Dong
collection PubMed
description Sensitive detection and accurate diagnosis/prognosis of glioma remain urgent challenges. Herein, dispersed magnetic covalent organic framework nanospheres (MCOF) with uniformed Fe(3)O(4) nano-assembly as cores and high-crystalline COF as shells were prepared by monomer-mediated in-situ interface growth strategy. Based on the unique interaction between MCOF and hairpin DNA, a fluorescent signal amplified miRNA biosensor was constructed. It could realize the sensitive detection of miRNA-182 in different matrixes, where the detection limit, linearity range and determination coefficient (R(2)) in real blood samples reached 20 fM, 0.1 pM–10 pM and 0.991, respectively. Also, it possessed good stability and precision as observed from the low intra-day/inter-day RSD and high extraction recovery. As a result, it could quantify miRNA-182 in serum of glioma patients, the concentration of which was significantly higher than that of healthy people and obviously decreased after surgery. Finally, a proof-of-concept capillary chip system using this biosensor was proposed to realize the visualized detection of miRNA-182 in microsample. These findings suggest a robust way for sensitive detection and accurate diagnosis/prognosis of glioma.
format Online
Article
Text
id pubmed-8892165
institution National Center for Biotechnology Information
language English
publishDate 2021
publisher KeAi Publishing
record_format MEDLINE/PubMed
spelling pubmed-88921652022-03-17 Magnetic covalent organic framework nanospheres-based miRNA biosensor for sensitive glioma detection Liang, Dong Zhang, Xiaoyi Wang, Yi Huo, Taotao Qian, Min Xie, Yibo Li, Wenshuai Yu, Yunqiu Shi, Wei Liu, Qianqian Zhu, Junle Luo, Chun Cao, Zhijuan Huang, Rongqin Bioact Mater Article Sensitive detection and accurate diagnosis/prognosis of glioma remain urgent challenges. Herein, dispersed magnetic covalent organic framework nanospheres (MCOF) with uniformed Fe(3)O(4) nano-assembly as cores and high-crystalline COF as shells were prepared by monomer-mediated in-situ interface growth strategy. Based on the unique interaction between MCOF and hairpin DNA, a fluorescent signal amplified miRNA biosensor was constructed. It could realize the sensitive detection of miRNA-182 in different matrixes, where the detection limit, linearity range and determination coefficient (R(2)) in real blood samples reached 20 fM, 0.1 pM–10 pM and 0.991, respectively. Also, it possessed good stability and precision as observed from the low intra-day/inter-day RSD and high extraction recovery. As a result, it could quantify miRNA-182 in serum of glioma patients, the concentration of which was significantly higher than that of healthy people and obviously decreased after surgery. Finally, a proof-of-concept capillary chip system using this biosensor was proposed to realize the visualized detection of miRNA-182 in microsample. These findings suggest a robust way for sensitive detection and accurate diagnosis/prognosis of glioma. KeAi Publishing 2021-12-18 /pmc/articles/PMC8892165/ /pubmed/35310355 http://dx.doi.org/10.1016/j.bioactmat.2021.11.033 Text en © 2021 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
Liang, Dong
Zhang, Xiaoyi
Wang, Yi
Huo, Taotao
Qian, Min
Xie, Yibo
Li, Wenshuai
Yu, Yunqiu
Shi, Wei
Liu, Qianqian
Zhu, Junle
Luo, Chun
Cao, Zhijuan
Huang, Rongqin
Magnetic covalent organic framework nanospheres-based miRNA biosensor for sensitive glioma detection
title Magnetic covalent organic framework nanospheres-based miRNA biosensor for sensitive glioma detection
title_full Magnetic covalent organic framework nanospheres-based miRNA biosensor for sensitive glioma detection
title_fullStr Magnetic covalent organic framework nanospheres-based miRNA biosensor for sensitive glioma detection
title_full_unstemmed Magnetic covalent organic framework nanospheres-based miRNA biosensor for sensitive glioma detection
title_short Magnetic covalent organic framework nanospheres-based miRNA biosensor for sensitive glioma detection
title_sort magnetic covalent organic framework nanospheres-based mirna biosensor for sensitive glioma detection
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8892165/
https://www.ncbi.nlm.nih.gov/pubmed/35310355
http://dx.doi.org/10.1016/j.bioactmat.2021.11.033
work_keys_str_mv AT liangdong magneticcovalentorganicframeworknanospheresbasedmirnabiosensorforsensitivegliomadetection
AT zhangxiaoyi magneticcovalentorganicframeworknanospheresbasedmirnabiosensorforsensitivegliomadetection
AT wangyi magneticcovalentorganicframeworknanospheresbasedmirnabiosensorforsensitivegliomadetection
AT huotaotao magneticcovalentorganicframeworknanospheresbasedmirnabiosensorforsensitivegliomadetection
AT qianmin magneticcovalentorganicframeworknanospheresbasedmirnabiosensorforsensitivegliomadetection
AT xieyibo magneticcovalentorganicframeworknanospheresbasedmirnabiosensorforsensitivegliomadetection
AT liwenshuai magneticcovalentorganicframeworknanospheresbasedmirnabiosensorforsensitivegliomadetection
AT yuyunqiu magneticcovalentorganicframeworknanospheresbasedmirnabiosensorforsensitivegliomadetection
AT shiwei magneticcovalentorganicframeworknanospheresbasedmirnabiosensorforsensitivegliomadetection
AT liuqianqian magneticcovalentorganicframeworknanospheresbasedmirnabiosensorforsensitivegliomadetection
AT zhujunle magneticcovalentorganicframeworknanospheresbasedmirnabiosensorforsensitivegliomadetection
AT luochun magneticcovalentorganicframeworknanospheresbasedmirnabiosensorforsensitivegliomadetection
AT caozhijuan magneticcovalentorganicframeworknanospheresbasedmirnabiosensorforsensitivegliomadetection
AT huangrongqin magneticcovalentorganicframeworknanospheresbasedmirnabiosensorforsensitivegliomadetection