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使用激动剂标记铱(III)配合物对多巴胺受体进行细胞成像。

Cell imaging of dopamine receptor using agonist labeling iridium(iii) complex.

作者信息

Vellaisamy Kasipandi, Li Guodong, Ko Chung-Nga, Zhong Hai-Jing, Fatima Sarwat, Kwan Hiu-Yee, Wong Chun-Yuen, Kwong Wai-Jing, Tan Weihong, Leung Chung-Hang, Ma Dik-Lung

机构信息

Department of Chemistry , Hong Kong Baptist University , Kowloon Tong , Hong Kong , China . Email:

State Key Laboratory of Quality Research in Chinese Medicine , Institute of Chinese Medical Sciences , University of Macau , Macau , China . Email:

出版信息

Chem Sci. 2017 Dec 19;9(5):1119-1125. doi: 10.1039/c7sc04798c. eCollection 2018 Feb 7.

Abstract

Dopamine receptor expression is correlated with certain types of cancers, including lung, breast and colon cancers. In this study, we report luminescent iridium(iii) complexes () as intracellular dopamine receptor (D1R/D2R) cell imaging agents. Complexes and , which are conjugated with a dopamine receptor agonist, showed superior cell imaging characteristics, high stability and low cytotoxicity (>100 μM) in A549 lung cancer cells. siRNA knockdown and dopamine competitive assays indicated that complexes and could selectively bind to dopamine receptors (D1R/D2R) in A549 cells. Fluorescence lifetime microscopy demonstrated that complex has a longer luminescence lifetime at the wavelength of 560-650 nm than DAPI and other chromophores in biological fluids. The long luminescence lifetime of complex not only provides an opportunity for efficient dopamine receptor tracking in biological media, but also enables the temporal separation of the probe signal from the intense background signal by fluorescence lifetime microscopy for efficient analysis. Complex also shows high photostability, which could allow it to be employed for long-term cellular imaging. Furthermore, complex could selectively track the internalization process of dopamine receptors (D1R/D2R) in living cells. To the best of our knowledge, complex is the first metal-based compound that has been used to monitor intracellular dopamine receptors in living cells.

摘要

多巴胺受体表达与某些类型的癌症相关,包括肺癌、乳腺癌和结肠癌。在本研究中,我们报道了发光铱(III)配合物()作为细胞内多巴胺受体(D1R/D2R)细胞成像剂。与多巴胺受体激动剂偶联的配合物 和 ,在A549肺癌细胞中表现出优异的细胞成像特性、高稳定性和低细胞毒性(>100 μM)。siRNA敲低和多巴胺竞争性试验表明,配合物 和 可以选择性地结合A549细胞中的多巴胺受体(D1R/D2R)。荧光寿命显微镜显示,配合物 在560 - 650 nm波长处的发光寿命比生物流体中的DAPI和其他发色团更长。配合物 的长发光寿命不仅为在生物介质中高效跟踪多巴胺受体提供了机会,还能通过荧光寿命显微镜将探针信号与强烈的背景信号进行时间分离,以进行高效分析。配合物 还表现出高光稳定性,这使其可用于长期细胞成像。此外,配合物 可以选择性地跟踪活细胞中多巴胺受体(D1R/D2R)的内化过程。据我们所知,配合物 是第一种用于监测活细胞内多巴胺受体的金属基化合物。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9c97/5885777/b5f27d58e463/c7sc04798c-s1.jpg

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