首页> 外文期刊>Analytical chemistry >Dual-Modal Colorimetric/Fluorescence Molecular Probe for Ratiometric Sensing of pH and Its Application
【24h】

Dual-Modal Colorimetric/Fluorescence Molecular Probe for Ratiometric Sensing of pH and Its Application

机译:pH比例传感的双模比色/荧光分子探针及其应用

获取原文
获取原文并翻译 | 示例
       

摘要

As traditional pH meters cannot work well for minute regions (such as subcellular organelles) and in harsh media, molecular pH-sensitive devices for monitoring pH changes in diverse local heterogeneous environments are urgently needed. Here, we report a new dual-modal colorimetric/fluorescence merocyanine-based molecular probe (CPH) for ratiometric sensing of pH. Compared with previously reported pH probes, CPH bearing the benzyl group at the nitrogen position of the indolium group and the phenol, which is used as the acceptor for proton, could respond to pH changes immediately through both the ratiometric fluorescence signal readout and naked-eye colorimetric observation. The sensing process was highly stable and reversible. Most importantly, the suitable pK(a) value (6.44) allows CPH to presumably accumulate in lysosomes and become a lysosome-target fluorescent probe. By using CPH, the intralysosomal pH fluctuation stimulated by antimalaria drug chloroquine was successfully tracked in live cells through the ratiometric fluorescence images. Additionally, CPH could be immobilized on test papers, which exhibited a rapid and reversible colorimetric response to acid/ base vapor through the naked-eye colorimetric analysis. This proof-of-concept study presents the potential application of CPH as a molecular tool for monitoring intralysosomal pH fluctuation in live cells, as well as paves the way for developing the economic, reusable, and fast-response optical pH meters for colorimetric sensing acid/base vapor with direct naked-eye observation.
机译:由于传统的pH计无法在微小区域(例如亚细胞器)和恶劣的介质中正常工作,因此迫切需要用于监测各种局部异质环境中pH变化的分子pH敏感设备。在这里,我们报告了一种新型的双峰比色/荧光基于花青的分子探针(CPH),用于pH值的比例传感。与以前报道的pH探针相比,在吲哚基的氮位置带有苄基的CPH和用作质子受体的苯酚可以通过比例荧光信号读数和肉眼立即响应pH的变化比色观察。传感过程高度稳定且可逆。最重要的是,合适的pK(a)值(6.44)可使CPH大概在溶酶体中蓄积并成为溶酶体靶标荧光探针。通过使用CPH,通过比例荧光图像成功地在活细胞中追踪了抗疟药氯喹刺激的溶酶体内pH波动。此外,CPH可以固定在试纸上,通过肉眼比色分析,该纸对酸/碱蒸气表现出快速且可逆的比色响应。这项概念验证研究表明CPH作为监测活细胞中溶酶体pH波动的分子工具的潜在应用,并为开发经济,可重复使用和快速响应的比色传感酸的光学pH计铺平了道路。 /基本蒸气,可直接肉眼观察。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号