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使用基于罗丹明的分子探针进行汞离子的体内监测。

In vivo monitoring of mercury ions using a rhodamine-based molecular probe.

作者信息

Ko Sung-Kyun, Yang Young-Keun, Tae Jinsung, Shin Injae

机构信息

Department of Chemistry, Yonsei University, Seoul 120-749, Korea.

出版信息

J Am Chem Soc. 2006 Nov 1;128(43):14150-5. doi: 10.1021/ja065114a.

Abstract

Exposure to mercury causes severe damage to various tissues and organs in humans. Concern over mercury toxicity has encouraged the development of efficient, sensitive, and selective methods for the in vivo detection of mercury. Although a variety of chemosensors have been exploited for this purpose, no in vivo monitoring systems have been described to date. In this report, we describe an irreversible rhodamine chemosensor-based, real-time monitoring system to detect mercury ions in living cells and, in particular, vertebrate organisms. The chemosensor responds rapidly, irreversibly, and stoichiometrically to mercury ions in aqueous media at room temperature. The results of experiments with mammalian cells and zebrafish show that the mercury chemosensor is cell and organism permeable and that it responds selectively to mercury ions over other metal ions. In addition, real-time monitoring of mercury-ion uptake by cells and zebrafish using this chemosensor shows that saturation of mercury-ion uptake occurs within 20-30 min in cells and organisms. Finally, accumulation of mercury ions in zebrafish tissue and organs is readily detected by using this rhodamine-based chemosensor.

摘要

接触汞会对人体的各种组织和器官造成严重损害。对汞毒性的担忧促使人们开发出高效、灵敏且具有选择性的体内汞检测方法。尽管已为此目的开发了多种化学传感器,但迄今为止尚未有体内监测系统的相关描述。在本报告中,我们描述了一种基于不可逆罗丹明化学传感器的实时监测系统,用于检测活细胞尤其是脊椎动物体内的汞离子。该化学传感器在室温下对水介质中的汞离子能快速、不可逆且按化学计量比做出响应。对哺乳动物细胞和斑马鱼的实验结果表明,汞化学传感器可透过细胞和生物体,并且它对汞离子的响应具有选择性,相对于其他金属离子而言。此外,使用该化学传感器对细胞和斑马鱼摄取汞离子进行实时监测表明,在细胞和生物体中,汞离子摄取在20 - 30分钟内达到饱和。最后,使用这种基于罗丹明的化学传感器能够轻松检测到斑马鱼组织和器官中汞离子的积累。

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