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用于监测线粒体微环境的可固定荧光探针:从经典探针到下一代探针的发展。

Immobilizable fluorescent probes for monitoring the mitochondria microenvironment: a next step from the classic.

机构信息

State Key Laboratory of Fine Chemicals, Dalian University of Technology, Dalian 116024, China.

出版信息

J Mater Chem B. 2019 May 7;7(17):2749-2758. doi: 10.1039/c9tb00043g. Epub 2019 Apr 8.

Abstract

Mitochondria play extremely important roles in supplying energy and maintaining the functions of cells. It is essential to monitor mitochondrial microenvironments that reflect the status of this organelle. In this review, we summarize the major progress in the developments and applications of mitochondrial targetable trackers and probes. The newly emerged immobilizable probes for microenvironments are highlighted, and their values are commented. Generally, cationic dyes with appropriate lipophilicity tend to accumulate in the mitochondria due to charge attraction from the negative potential of inner membranes. Following this rationale, numerous fluorescent MitoTrackers have been developed. These probes provide opportunities to investigate mitochondrial morphology and functions. However, such electrostatic interactions are not always reliable since the mitochondrial potential is highly changeable with mitochondria status. The probes will leave when the mitochondria lose their potential. In other words, conventional mitochondrial probes are not suitable for monitoring unhealthy mitochondria that have abnormal mitochondrial potentials. Kim's, Chen's and our teams proposed, separately, new designs of mitochondrial probes that can be immobilized to mitochondria through covalent bonds and monitor microenvironmental factors, including pH, viscosity, polarity and temperature. We believe that the developing of immobilizable mitochondrial fluorescent probes is valuable for tracking and monitoring mitochondrial status accurately. Therefore, this paper reviews and prospects mitochondria immobilizable fluorescent probes of important microenvironmental factors.

摘要

线粒体在提供能量和维持细胞功能方面发挥着极其重要的作用。监测反映该细胞器状态的线粒体微环境至关重要。在这篇综述中,我们总结了线粒体靶向示踪剂和探针的发展和应用的主要进展。突出了新出现的用于微环境的固定化探针,并对其价值进行了评论。一般来说,由于内膜负电位的电荷吸引,具有适当亲脂性的阳离子染料往往会聚集在线粒体中。基于这一原理,已经开发出了许多荧光 MitoTrackers。这些探针为研究线粒体形态和功能提供了机会。然而,由于线粒体的电位随线粒体状态的变化而高度变化,这种静电相互作用并不总是可靠的。当线粒体失去电位时,探针就会离开。换句话说,传统的线粒体探针不适合监测具有异常线粒体电位的不健康线粒体。Kim 小组、Chen 小组和我们小组分别提出了新的线粒体探针设计,可以通过共价键固定在线粒体上,并监测包括 pH 值、粘度、极性和温度在内的微环境因素。我们相信,发展可固定化的线粒体荧光探针对于准确跟踪和监测线粒体状态是有价值的。因此,本文综述并展望了重要微环境因素的可固定化线粒体荧光探针。

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