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[汤心颐先生诞辰100周年纪念专辑]:高光稳定性NIR荧光探针实现线粒体嵴动态追踪

苏彦刚,金文东,于晓强   

  1. 山东大学晶体材料全国重点实验室
  • 收稿日期:2025-10-18 修回日期:2025-12-15 网络首发:2025-12-16 发布日期:2025-12-16
  • 通讯作者: 于晓强 E-mail:yuxq@sdu.edu.cn
  • 基金资助:
    国家自然科学基金(批准号:52350002,52150222,52073163)资助

Dynamic Tracking of Mitochondrial Cristae by a High Photostable NIR Fluorescent Probe

SU Yangang, JIN Wendong, YU Xiaoqiang   

  1. State Key Laboratory of Crystal Materials, Shandong University
  • Received:2025-10-18 Revised:2025-12-15 Online First:2025-12-16 Published:2025-12-16
  • Contact: YU Xiao-Qiang E-mail:yuxq@sdu.edu.cn
  • Supported by:
    Supported by the National Natural Science Foundation(Nos. 52350002,52150222,52073163)

摘要: 以吲哚方酸菁为荧光母体,通过引入阳离子盐,成功设计并合成了高光稳定性近红外(NIR)免洗荧光探针CSE。性能表征显示,CSE不仅具备优异的光稳定性,而且拥有近红外荧光发射特性。与商用线粒体特异性染料的细胞内共定位实验进一步证实,CSE能够精准靶向线粒体。在损耗激光波长为775 nm的受激辐射损耗(STED)超高分辨显微镜下,CSE能够以54 nm的超高空间分辨率清晰显示线粒体嵴的精细形态结构。在借助CSE对线粒体进行的动态原位追踪过程中,成功捕捉并揭示了线粒体融合与分裂、线粒体嵴重塑及线粒体微管化等动态过程。本文开发的CSE探针,实现了线粒体嵴的超分辨原位成像和动态追踪,有望成为解析生理状态下线粒体嵴动力学机制的有力研究工具。

关键词: 荧光探针, STED超分辨成像, 线粒体嵴

Abstract: Using indole squaraine cyanine as the fluorescent scaffold, we successfully designed and synthesized a wash free fluorescent probe, designated as CSE, through the introduction of cationic salts. Performance characterization demonstrated that CSE not only exhibits excellent photostability but also possesses near-infrared fluorescent emission. Intracellular co-localization assays with commercial mitochondria-specific dyes further validated its ability to precisely target mitochondria. Under stimulated emission depletion (STED) super-resolution microscopy with depletion of 775nm, CSE clearly resolved the fine morphological details of mitochondrial cristae, achieving an impressive spatial resolution of up to 54 nm. During super-resolution dynamic tracking of mitochondria leveraging CSE, we successfully captured and delineated key dynamic events, including mitochondrial fusion and fission, cristae remodeling, and tubulation of mitochondria. The CSE probe developed herein enables super-resolution imaging and dynamic tracking of mitochondrial cristae, thereby holding great promise as a powerful tool for dissecting the dynamic mechanisms of mitochondrial cristae under physiological conditions. Keywords fluorescent probe; STED; mitochondrial cristae.

Key words: Fluorescent probe, Stimulated emission depletion(STED), Mitochondrial cristae

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