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Reaction-free and MMP-independent fluorescent probes for long-term mitochondria visualization and tracking

Visualizing and tracking mitochondrial dynamic changes is crucially important in the fields of physiology, pathology and pharmacology. Traditional electrostatic-attraction based mitochondrial probes fail to visualize and track the changes due to their leakage from mitochondria when mitochondrial mem...

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Autores principales: Zhang, Ruoyao, Niu, Guangle, Li, Xuechen, Guo, Lifang, Zhang, Huamiao, Yang, Rui, Chen, Yuncong, Yu, Xiaoqiang, Tang, Ben Zhong
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Royal Society of Chemistry 2018
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6383331/
https://www.ncbi.nlm.nih.gov/pubmed/30881628
http://dx.doi.org/10.1039/c8sc05119d
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author Zhang, Ruoyao
Niu, Guangle
Li, Xuechen
Guo, Lifang
Zhang, Huamiao
Yang, Rui
Chen, Yuncong
Yu, Xiaoqiang
Tang, Ben Zhong
author_facet Zhang, Ruoyao
Niu, Guangle
Li, Xuechen
Guo, Lifang
Zhang, Huamiao
Yang, Rui
Chen, Yuncong
Yu, Xiaoqiang
Tang, Ben Zhong
author_sort Zhang, Ruoyao
collection PubMed
description Visualizing and tracking mitochondrial dynamic changes is crucially important in the fields of physiology, pathology and pharmacology. Traditional electrostatic-attraction based mitochondrial probes fail to visualize and track the changes due to their leakage from mitochondria when mitochondrial membrane potential (MMP) decreases. Reaction-based MitoTracker probes can realize visualization and tracking of mitochondria changes independent of MMP changes. However, such probes impair mitochondrial proteins and exhibit high cytotoxicity. Therefore, it still remains challenging to explore reaction-free and highly biocompatible probes for visualizing and tracking mitochondrial dynamics independent of MMP fluctuations. Herein we synthesized two reaction-free fluorescent mitochondrial probes ECPI-12 and IVPI-12 bearing a long C(12)-alkyl chain. These cationic probes can firmly immobilize in the mitochondrial inner membrane by strong hydrophobic interaction between the C(12)-alkyl chain and lipid bilayer, resulting in high specificity and long-term mitochondrial staining regardless of MMP changes. They also exhibit large two-photon absorption cross-sections and show deep penetration in live tissues in two-photon microscopy. Furthermore, they display excellent biocompatibility and realize in situ and real-time mitophagy tracking in live cells. These excellent properties could make ECPI-12 and IVPI-12 the first selective tools for long-term visualization and tracking of mitochondrial dynamics.
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spelling pubmed-63833312019-03-15 Reaction-free and MMP-independent fluorescent probes for long-term mitochondria visualization and tracking Zhang, Ruoyao Niu, Guangle Li, Xuechen Guo, Lifang Zhang, Huamiao Yang, Rui Chen, Yuncong Yu, Xiaoqiang Tang, Ben Zhong Chem Sci Chemistry Visualizing and tracking mitochondrial dynamic changes is crucially important in the fields of physiology, pathology and pharmacology. Traditional electrostatic-attraction based mitochondrial probes fail to visualize and track the changes due to their leakage from mitochondria when mitochondrial membrane potential (MMP) decreases. Reaction-based MitoTracker probes can realize visualization and tracking of mitochondria changes independent of MMP changes. However, such probes impair mitochondrial proteins and exhibit high cytotoxicity. Therefore, it still remains challenging to explore reaction-free and highly biocompatible probes for visualizing and tracking mitochondrial dynamics independent of MMP fluctuations. Herein we synthesized two reaction-free fluorescent mitochondrial probes ECPI-12 and IVPI-12 bearing a long C(12)-alkyl chain. These cationic probes can firmly immobilize in the mitochondrial inner membrane by strong hydrophobic interaction between the C(12)-alkyl chain and lipid bilayer, resulting in high specificity and long-term mitochondrial staining regardless of MMP changes. They also exhibit large two-photon absorption cross-sections and show deep penetration in live tissues in two-photon microscopy. Furthermore, they display excellent biocompatibility and realize in situ and real-time mitophagy tracking in live cells. These excellent properties could make ECPI-12 and IVPI-12 the first selective tools for long-term visualization and tracking of mitochondrial dynamics. Royal Society of Chemistry 2018-12-11 /pmc/articles/PMC6383331/ /pubmed/30881628 http://dx.doi.org/10.1039/c8sc05119d Text en This journal is © The Royal Society of Chemistry 2019 http://creativecommons.org/licenses/by/3.0/ This article is freely available. This article is licensed under a Creative Commons Attribution 3.0 Unported Licence (CC BY 3.0)
spellingShingle Chemistry
Zhang, Ruoyao
Niu, Guangle
Li, Xuechen
Guo, Lifang
Zhang, Huamiao
Yang, Rui
Chen, Yuncong
Yu, Xiaoqiang
Tang, Ben Zhong
Reaction-free and MMP-independent fluorescent probes for long-term mitochondria visualization and tracking
title Reaction-free and MMP-independent fluorescent probes for long-term mitochondria visualization and tracking
title_full Reaction-free and MMP-independent fluorescent probes for long-term mitochondria visualization and tracking
title_fullStr Reaction-free and MMP-independent fluorescent probes for long-term mitochondria visualization and tracking
title_full_unstemmed Reaction-free and MMP-independent fluorescent probes for long-term mitochondria visualization and tracking
title_short Reaction-free and MMP-independent fluorescent probes for long-term mitochondria visualization and tracking
title_sort reaction-free and mmp-independent fluorescent probes for long-term mitochondria visualization and tracking
topic Chemistry
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6383331/
https://www.ncbi.nlm.nih.gov/pubmed/30881628
http://dx.doi.org/10.1039/c8sc05119d
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