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一种高选择性、细胞通透性的荧光纳米探针,用于活细胞中超氧亚硝酸根的比率检测和成像。

A highly selective, cell-permeable fluorescent nanoprobe for ratiometric detection and imaging of peroxynitrite in living cells.

机构信息

College of Chemistry, Chemical Engineering and Materials Science, Key Laboratory of Molecular and Nano Probes, Clean Production, Ministry of Education, Shandong Normal University, Jinan, P R China.

出版信息

Chemistry. 2011 Jun 6;17(24):6626-34. doi: 10.1002/chem.201100148. Epub 2011 May 17.

Abstract

Peroxynitrite (ONOO(-)) is a highly reactive species implicated in the pathology of numerous diseases and there is currently great interest in developing fluorescent probes that can selectively detect ONOO(-) in living cells. Herein, a polymeric micelle-based and cell-penetrating peptide-coated fluorescent nanoprobe that incorporates ONOO(-) indicator dye and reference dye for the ratiometric detection and imaging of ONOO(-) has been developed. The nanoprobe effectively avoids the influences from enzymatic reaction and high-concentration ·OH and ClO(-). The improved ONOO(-) selectivity of the nanoprobe is achieved by a delicate complementarity of properties between the nanomatrix and the embedded molecular probe (BzSe-Cy). This nanoprobe also has other attractive properties, such as good water solubility, photostability, biocompatibility, and near-infrared excitation and emission. Fluorescence imaging experiments by confocal microscopy show that this nanoprobe is capable of visualizing ONOO(-) produced in living cells and it exhibits very low toxicity and good membrane permeability. We anticipate that this technique will be a potential tool for the precise pathological understanding and diagnosis of ONOO(-)-related human diseases.

摘要

过氧亚硝酸盐(ONOO(-))是一种高度反应性的物质,与许多疾病的病理有关,目前人们对开发能够选择性地在活细胞中检测 ONOO(-)的荧光探针非常感兴趣。本文构建了一种基于聚合物胶束和穿透肽的荧光纳米探针,该探针整合了 ONOO(-)指示剂染料和参比染料,用于对 ONOO(-)进行比率检测和成像。该纳米探针可以有效避免酶反应和高浓度·OH 和 ClO(-)的影响。纳米探针的 ONOO(-)选择性得到了提高,这是由于纳米基质和嵌入的分子探针(BzSe-Cy)之间的特性具有精细的互补性。该纳米探针还具有其他吸引人的特性,如良好的水溶性、光稳定性、生物相容性以及近红外激发和发射。通过共聚焦显微镜的荧光成像实验表明,该纳米探针能够可视化活细胞中产生的 ONOO(-),并且具有非常低的毒性和良好的膜通透性。我们预计这项技术将成为一种用于精确了解和诊断与 ONOO(-)相关的人类疾病的潜在工具。

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