Tracking Plasma Membrane Damage Using a Ruthenium(II) Complex Phosphorescent Indicator Paired with Cholesterol

IF 4.7 2区 化学 Q1 CHEMISTRY, INORGANIC & NUCLEAR
Qianqian Fa, Xiaona Gao, Wenzhu Zhang*, Junyu Ren, Bo Song and Jingli Yuan*, 
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Abstract

Long-term in situ plasma membrane-targeted imaging is highly significant for investigating specific biological processes and functions, especially for the imaging and tracking of apoptosis processes of cells. However, currently developed membrane probes are rarely utilized to monitor the in situ damage of the plasma membrane. Herein, a transition-metal complex phosphorescent indicator, Ru-Chol, effectively paired with cholesterol, exhibits excellent properties on staining the plasma membrane, with excellent antipermeability, good photostability, large Stokes shift, and long luminescence lifetime. In addition, Ru-Chol not only has the potential to differentiate cancerous cells from normal cells but also tracks in real time the entire progression of cisplatin-induced plasma membrane damage and cell apoptosis. Therefore, Ru-Chol can serve as an efficient tool for the monitoring of morphological and physiological changes in the plasma membrane, providing assistance for drug screening and early diagnosis and treatment of diseases, such as immunodeficiency, diabetes, cirrhosis, and tumors.

Abstract Image

Abstract Image

使用与胆固醇配对的钌(II)复合物磷光指示剂跟踪等离子体膜损伤。
长期原位质膜靶向成像对于研究特定的生物过程和功能,尤其是细胞凋亡过程的成像和跟踪意义重大。然而,目前开发的膜探针很少用于监测原位质膜损伤。在这里,一种过渡金属复合物磷光指示剂 Ru-Chol 与胆固醇有效配对,在染色质膜时表现出优异的性能,具有极佳的抗渗透性、良好的光稳定性、较大的斯托克斯位移和较长的发光寿命。此外,Ru-Chol 不仅能区分癌细胞和正常细胞,还能实时跟踪顺铂诱导的质膜损伤和细胞凋亡的整个过程。因此,Ru-Chol 可作为监测质膜形态和生理变化的有效工具,为药物筛选以及免疫缺陷、糖尿病、肝硬化和肿瘤等疾病的早期诊断和治疗提供帮助。
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来源期刊
Inorganic Chemistry
Inorganic Chemistry 化学-无机化学与核化学
CiteScore
7.60
自引率
13.00%
发文量
1960
审稿时长
1.9 months
期刊介绍: Inorganic Chemistry publishes fundamental studies in all phases of inorganic chemistry. Coverage includes experimental and theoretical reports on quantitative studies of structure and thermodynamics, kinetics, mechanisms of inorganic reactions, bioinorganic chemistry, and relevant aspects of organometallic chemistry, solid-state phenomena, and chemical bonding theory. Emphasis is placed on the synthesis, structure, thermodynamics, reactivity, spectroscopy, and bonding properties of significant new and known compounds.
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