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一种近红外发射型“关-开”型荧光探针,用于活细胞和小鼠中 Pd(Ⅱ)离子的生物成像。

A near-infrared emitting "off-on" fluorescent probe for bioimaging of Pd(Ⅱ) ions in living cells and mice.

机构信息

Guangdong Provincial Key Laboratory of Chemical Measurement and Emergency Test Technology, Institute of Analysis, Guangdong Academy of Sciences (China National Analytical Center, Guangzhou), Guangzhou, 510070, People's Republic of China.

International Cooperative Laboratory of Traditional Chinese Medicine Modernization and Innovative Drug Discovery of Chinese Ministry of Education (MOE), School of Pharmacy, Jinan University, Guangzhou, 510632, People's Republic of China.

出版信息

Anal Chim Acta. 2024 Feb 8;1289:342174. doi: 10.1016/j.aca.2023.342174. Epub 2024 Jan 2.

Abstract

BACKGROUND

The surging consumption of palladium in modern industry has given rise to its accumulation in the ecosystem, posing conspicuous toxicity to aquatic organisms and human health. The investigation of palladium in biological systems is highly demanded for the in-depth understanding of its dynamics and behaviors. Fluorescence imaging serves as a powerful approach to assess palladium species in biological systems, and currently most of the sensing probes are applicable to living cells. Effective tracking of palladium species in living organisms is challenging, which requires sufficient hydrophilicity and imaging depth of the probes.

RESULTS

Based on an intramolecular charge transfer (ICT) mechanism, a distyryl boron dipyrromethene (BODIPY) derivative (DISBDP-Pd) has been prepared for the near-infrared (NIR) fluorescence imaging of Pd ions. Two additional methoxy triethylene glycol (TEG) chains could serve as flexible and hydrophilic moieties to enhance the aqueous solubility and cell permeability of the extended conjugate. Solution studies revealed that DISBDP-Pd exhibited a NIR fluorescence enhancement signal exclusively to Pd ions (detection limit as low as 0.85 ppb) with negligible interference from Pd species and other closely related metal ions. Computational calculations have been performed to rationalize the binding mode and the mechanism of action. Fluorescence imaging assays have been conducted on A549 human non-small cell lung carcinoma cells and mouse models. Exhibiting negligible cytotoxicity, DISBDP-Pd demonstrated concentration-related fluorescence enhancement signals in response to Pd ions in living cells and mice.

SIGNIFICANCE

DISBDP-Pd exhibits advantages over many small molecule palladium probes in terms of satisfactory aqueous solubility, high sensitivity and selectivity, and biocompatible NIR emission property, which are particularly favorable for the sensing application in biological environments. The design strategy of this probe can potentially be adopted for the functionalization of other BODIPY probes implemented for NIR fluorescence bioimaging.

摘要

背景

现代工业中钯的消费剧增导致其在生态系统中积累,对水生生物和人类健康构成明显毒性。研究钯在生物系统中的分布对于深入了解其动态和行为具有重要意义。荧光成像是评估生物系统中钯形态的有力手段,目前大多数传感探针适用于活细胞。然而,有效追踪活生物体中的钯形态具有挑战性,这需要探针具有足够的亲水性和成像深度。

结果

基于分子内电荷转移(ICT)机制,我们制备了一种二苯乙烯硼二吡咯甲川(BODIPY)衍生物(DISBDP-Pd),用于近红外(NIR)荧光成像钯离子。两个额外的甲氧基三乙二醇(TEG)链可作为柔性亲水基团,提高扩展共轭物的水溶性和细胞通透性。溶液研究表明,DISBDP-Pd 对钯离子表现出 NIR 荧光增强信号(检测限低至 0.85 ppb),对钯物种和其他密切相关的金属离子几乎没有干扰。通过计算计算,对结合模式和作用机制进行了合理化解释。在 A549 人非小细胞肺癌细胞和小鼠模型上进行了荧光成像实验。DISBDP-Pd 表现出低细胞毒性,在活细胞和小鼠中对钯离子表现出浓度相关的荧光增强信号。

意义

与许多小分子钯探针相比,DISBDP-Pd 在令人满意的水溶性、高灵敏度和选择性以及生物相容性的近红外发射特性方面具有优势,特别有利于生物环境中的传感应用。该探针的设计策略可能适用于其他 BODIPY 探针的功能化,以实现近红外荧光生物成像。

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