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基于含钌和铽金属聚合物的比率发光纳米探针用于细胞内氧传感

Ratiometric Luminescent Nanoprobes Based on Ruthenium and Terbium-Containing Metallopolymers for Intracellular Oxygen Sensing.

作者信息

Zhao Wu-Xing, Zhou Chao, Peng Hong-Shang

机构信息

School of Science, Minzu University of China, Beijing 100081, China.

Key Laboratory of Luminescence and Optical Information, Ministry of Education, Institute of Optoelectronic Technology, Beijing Jiaotong University, Beijing 100044, China.

出版信息

Polymers (Basel). 2019 Aug 2;11(8):1290. doi: 10.3390/polym11081290.

Abstract

A collection of luminescent metal complexes have been widely used as oxygen probes in the biomedical field. However, single intensity-based detection approach usually suffered from errors caused by the signal heterogeneity or fluctuation of the optoelectronic system. In this work, respective ruthenium (II) and terbium (III) complexes were chosen to coordinate a bipyridine-branched copolymer, so that to produce oxygen-sensitive metallopolymer (Ru-Poly) and oxygen-insensitive metallopolymer (Tb-Poly). Based on the hydrophobic Ru-Poly and Tb-Poly, a ratiometric luminescent oxygen nanoprobe was facilely prepared by a nanoprecipitation method. The nanoprobes have a typical size of ~100 nm in aqueous solution, exhibiting a green-red dual-wavelength emission under the excitation of 300 nm and 460 nm, respectively. The red emission is strongly quenched by dissolved oxygen while the green one is rather stable, and the ratiometric luminescence was well fitted by a linear Stern-Volmer equation. Using the ratiometric biocompatible nanoprobes, the distribution of intracellular oxygen within three-dimensional multi-cellular tumor spheroids was successfully imaged.

摘要

一系列发光金属配合物已在生物医学领域广泛用作氧探针。然而,基于单一强度的检测方法通常会受到信号异质性或光电系统波动所导致的误差影响。在这项工作中,分别选择钌(II)和铽(III)配合物与联吡啶支化共聚物配位,从而制备出氧敏金属聚合物(Ru-Poly)和氧不敏金属聚合物(Tb-Poly)。基于疏水性的Ru-Poly和Tb-Poly,通过纳米沉淀法简便地制备了一种比率发光氧纳米探针。该纳米探针在水溶液中的典型尺寸约为100 nm,分别在300 nm和460 nm激发下呈现绿-红双波长发射。红色发射被溶解氧强烈猝灭,而绿色发射相当稳定,比率发光很好地符合线性斯特恩-沃尔默方程。使用这种具有生物相容性的比率纳米探针,成功地对三维多细胞肿瘤球体中的细胞内氧分布进行了成像。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/46dd/6723721/491ff498c4ce/polymers-11-01290-g001.jpg

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