Wang Yawei, Wu Liu, Liu Caiyun, Guo Bingpeng, Zhu Baocun, Wang Zuokai, Duan Qingxia, Ma Zhenmin, Zhang Xiaoling
School of Resources and Environment, School of Chemistry and Chemical Engineering, University of Jinan, Shandong Provincial Engineering Technology Research Center for Ecological Carbon Sink and Capture Utilization, Jinan 250022, P. R. China.
J Mater Chem B. 2017 May 14;5(18):3377-3382. doi: 10.1039/c6tb03345h. Epub 2017 Apr 24.
The development of techniques for detecting HOCl at the subcellular level is very important to elucidate its cellular functions. Due to its relatively low concentration, it is still a great challenge to specifically track the basal HOCl in normal cells. In this paper, based on the unique chlorination of HOCl by the initiation of chlorinium ions (Cl) in an acidic medium, we have developed a simple pH-mediated lysosome-targetable fluorescent probe Lyso-HOCl for the specific detection of HOCl over other bioactive molecules at higher concentration (500 μM). Our results show that Lyso-HOCl possesses a detection limit of 8.0 pM, and can quantitatively detect HOCl at the picomolar level. The ultrasensitive and ultrafast response property of probe Lyso-HOCl offers a good opportunity to monitor the basal HOCl and the fluctuation of endogenous HOCl levels in the lysosomes of macrophages (Raw 264.7 cells), and we thus anticipate that this probe would provide a promising tool for further unraveling the biological functions of HOCl in subcellular lysosomes.
在亚细胞水平检测次氯酸(HOCl)的技术发展对于阐明其细胞功能非常重要。由于其浓度相对较低,特异性追踪正常细胞中的基础HOCl仍然是一个巨大的挑战。在本文中,基于酸性介质中氯鎓离子(Cl)引发的HOCl独特氯化作用,我们开发了一种简单的pH介导的可靶向溶酶体的荧光探针Lyso-HOCl,用于在较高浓度(500μM)下特异性检测HOCl,优于其他生物活性分子。我们的结果表明,Lyso-HOCl的检测限为8.0 pM,能够在皮摩尔水平定量检测HOCl。探针Lyso-HOCl的超灵敏和超快响应特性为监测巨噬细胞(Raw 264.7细胞)溶酶体中的基础HOCl和内源性HOCl水平波动提供了良好机会,因此我们预计该探针将为进一步揭示HOCl在亚细胞溶酶体中的生物学功能提供一个有前景的工具。