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Long-term spatiotemporal and highly specific imaging of the plasma membrane of diverse plant cells using a near-infrared AIE probe

Fluorescent probes are valuable tools to visualize plasma membranes intuitively and clearly and their related physiological processes in a spatiotemporal manner. However, most existing probes have only realized the specific staining of the plasma membranes of animal/human cells within a very short t...

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Autores principales: Zuo, Jiaqi, Zhu, Engao, Yin, Wenjing, Yao, Chuangye, Liao, Jiajia, Ping, Xinni, Zhu, Yuqing, Cai, Xuting, Rao, Yuchun, Feng, Hui, Zhang, Kewei, Qian, Zhaosheng
Formato: Online Artículo Texto
Lenguaje:English
Publicado: The Royal Society of Chemistry 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9945320/
https://www.ncbi.nlm.nih.gov/pubmed/36845931
http://dx.doi.org/10.1039/d2sc05727a
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author Zuo, Jiaqi
Zhu, Engao
Yin, Wenjing
Yao, Chuangye
Liao, Jiajia
Ping, Xinni
Zhu, Yuqing
Cai, Xuting
Rao, Yuchun
Feng, Hui
Zhang, Kewei
Qian, Zhaosheng
author_facet Zuo, Jiaqi
Zhu, Engao
Yin, Wenjing
Yao, Chuangye
Liao, Jiajia
Ping, Xinni
Zhu, Yuqing
Cai, Xuting
Rao, Yuchun
Feng, Hui
Zhang, Kewei
Qian, Zhaosheng
author_sort Zuo, Jiaqi
collection PubMed
description Fluorescent probes are valuable tools to visualize plasma membranes intuitively and clearly and their related physiological processes in a spatiotemporal manner. However, most existing probes have only realized the specific staining of the plasma membranes of animal/human cells within a very short time period, while almost no fluorescent probes have been developed for the long-term imaging of the plasma membranes of plant cells. Herein, we designed an AIE-active probe with NIR emission to achieve four-dimensional spatiotemporal imaging of the plasma membranes of plant cells based on a collaboration approach involving multiple strategies, demonstrated long-term real-time monitoring of morphological changes of plasma membranes for the first time, and further proved its wide applicability to plant cells of different types and diverse plant species. In the design concept, three effective strategies including the similarity and intermiscibility principle, antipermeability strategy and strong electrostatic interactions were combined to allow the probe to specifically target and anchor the plasma membrane for an ultralong amount of time on the premise of guaranteeing its sufficiently high aqueous solubility. The designed APMem-1 can quickly penetrate cell walls to specifically stain the plasma membranes of all plant cells in a very short time with advanced features (ultrafast staining, wash-free, and desirable biocompatibility) and the probe shows excellent plasma membrane specificity without staining other areas of the cell in comparison to commercial FM dyes. The longest imaging time of APMem-1 can be up to 10 h with comparable performance in both imaging contrast and imaging integrity. The validation experiments on different types of plant cells and diverse plants convincingly proved the universality of APMem-1. The development of plasma membrane probes with four-dimensional spatial and ultralong-term imaging ability provides a valuable tool to monitor the dynamic processes of plasma membrane-related events in an intuitive and real-time manner.
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spelling pubmed-99453202023-02-23 Long-term spatiotemporal and highly specific imaging of the plasma membrane of diverse plant cells using a near-infrared AIE probe Zuo, Jiaqi Zhu, Engao Yin, Wenjing Yao, Chuangye Liao, Jiajia Ping, Xinni Zhu, Yuqing Cai, Xuting Rao, Yuchun Feng, Hui Zhang, Kewei Qian, Zhaosheng Chem Sci Chemistry Fluorescent probes are valuable tools to visualize plasma membranes intuitively and clearly and their related physiological processes in a spatiotemporal manner. However, most existing probes have only realized the specific staining of the plasma membranes of animal/human cells within a very short time period, while almost no fluorescent probes have been developed for the long-term imaging of the plasma membranes of plant cells. Herein, we designed an AIE-active probe with NIR emission to achieve four-dimensional spatiotemporal imaging of the plasma membranes of plant cells based on a collaboration approach involving multiple strategies, demonstrated long-term real-time monitoring of morphological changes of plasma membranes for the first time, and further proved its wide applicability to plant cells of different types and diverse plant species. In the design concept, three effective strategies including the similarity and intermiscibility principle, antipermeability strategy and strong electrostatic interactions were combined to allow the probe to specifically target and anchor the plasma membrane for an ultralong amount of time on the premise of guaranteeing its sufficiently high aqueous solubility. The designed APMem-1 can quickly penetrate cell walls to specifically stain the plasma membranes of all plant cells in a very short time with advanced features (ultrafast staining, wash-free, and desirable biocompatibility) and the probe shows excellent plasma membrane specificity without staining other areas of the cell in comparison to commercial FM dyes. The longest imaging time of APMem-1 can be up to 10 h with comparable performance in both imaging contrast and imaging integrity. The validation experiments on different types of plant cells and diverse plants convincingly proved the universality of APMem-1. The development of plasma membrane probes with four-dimensional spatial and ultralong-term imaging ability provides a valuable tool to monitor the dynamic processes of plasma membrane-related events in an intuitive and real-time manner. The Royal Society of Chemistry 2023-01-19 /pmc/articles/PMC9945320/ /pubmed/36845931 http://dx.doi.org/10.1039/d2sc05727a Text en This journal is © The Royal Society of Chemistry https://creativecommons.org/licenses/by-nc/3.0/
spellingShingle Chemistry
Zuo, Jiaqi
Zhu, Engao
Yin, Wenjing
Yao, Chuangye
Liao, Jiajia
Ping, Xinni
Zhu, Yuqing
Cai, Xuting
Rao, Yuchun
Feng, Hui
Zhang, Kewei
Qian, Zhaosheng
Long-term spatiotemporal and highly specific imaging of the plasma membrane of diverse plant cells using a near-infrared AIE probe
title Long-term spatiotemporal and highly specific imaging of the plasma membrane of diverse plant cells using a near-infrared AIE probe
title_full Long-term spatiotemporal and highly specific imaging of the plasma membrane of diverse plant cells using a near-infrared AIE probe
title_fullStr Long-term spatiotemporal and highly specific imaging of the plasma membrane of diverse plant cells using a near-infrared AIE probe
title_full_unstemmed Long-term spatiotemporal and highly specific imaging of the plasma membrane of diverse plant cells using a near-infrared AIE probe
title_short Long-term spatiotemporal and highly specific imaging of the plasma membrane of diverse plant cells using a near-infrared AIE probe
title_sort long-term spatiotemporal and highly specific imaging of the plasma membrane of diverse plant cells using a near-infrared aie probe
topic Chemistry
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9945320/
https://www.ncbi.nlm.nih.gov/pubmed/36845931
http://dx.doi.org/10.1039/d2sc05727a
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