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用于囊性纤维化诊断中低成本氯离子传感的柠檬酸盐基荧光材料。

Citrate-based fluorescent materials for low-cost chloride sensing in the diagnosis of Cystic Fibrosis.

作者信息

Kim Jimin P, Xie Zhiwei, Creer Michael, Liu Zhiwen, Yang Jian

机构信息

Department of Biomedical Engineering, Materials Research Institutes, the Huck Institutes of Life Sciences, The Penn-sylvania State University, University Park, PA 16802.

Department of Pathology, College of Medicine, The Pennsylvania State University, Hershey, PA 17033.

出版信息

Chem Sci. 2017 Jan 1;8(1):550-558. doi: 10.1039/C6SC02962K. Epub 2016 Aug 30.

Abstract

Chloride is an essential electrolyte that maintains homeostasis within the body, where abnormal chloride levels in biological fluids may indicate various diseases such as Cystic Fibrosis. However, current analytical solutions for chloride detection fail to meet the clinical needs of both high performance and low material or labor costs, hindering translation into clinical settings. Here we present a new class of fluorescence chloride sensors derived from a facile citrate -based synthesis platform that utilize dynamic quenching mechanisms. Based on this low-cost platform, we demonstrate for the first time a selective sensing strategy that uses a single fluorophore to detect multiple halides simultaneously, promising both selectivity and automation to improve performance and reduce labor costs. We also demonstrate the clinical utility of citrate-based sensors as a new sweat chloride test method for the diagnosis of Cystic Fibrosis by performing analytical validation with sweat controls and clinical validation with sweat from individuals with or without Cystic Fibrosis. Lastly, molecular modeling studies reveal the structural mechanism behind chloride sensing, serving to expand this class of fluorescence sensors with improved chloride sensitivities. Thus citrate-based fluorescent materials may enable low-cost, automated multi-analysis systems for simpler, yet accurate, point-of-care diagnostics that can be readily translated into clinical settings. More broadly, a wide range of medical, industrial, and environmental applications can be achieved with such a facile synthesis platform, demonstrated in our citrate-based biodegradable polymers with intrinsic fluorescence sensing.

摘要

氯离子是一种维持体内稳态的必需电解质,生物体液中氯离子水平异常可能表明患有多种疾病,如囊性纤维化。然而,目前用于氯离子检测的分析方法无法满足高性能以及低材料或劳动力成本的临床需求,阻碍了其向临床应用的转化。在此,我们展示了一类新型的荧光氯离子传感器,其源自一个基于柠檬酸盐的简易合成平台,并利用动态猝灭机制。基于这个低成本平台,我们首次展示了一种选择性传感策略,该策略使用单一荧光团同时检测多种卤化物,有望在提高选择性和自动化程度的同时提升性能并降低劳动力成本。我们还通过对汗液对照进行分析验证以及对患有或未患有囊性纤维化的个体汗液进行临床验证,证明了基于柠檬酸盐的传感器作为一种用于诊断囊性纤维化的新型汗液氯离子检测方法的临床实用性。最后,分子建模研究揭示了氯离子传感背后的结构机制,有助于扩展这类具有更高氯离子敏感性的荧光传感器。因此,基于柠檬酸盐的荧光材料可能实现低成本、自动化的多重分析系统,用于更简单但准确的即时诊断,且能够轻松转化为临床应用。更广泛地说,通过这样一个简易合成平台可以实现广泛的医疗、工业和环境应用,我们基于柠檬酸盐的具有固有荧光传感功能的可生物降解聚合物就证明了这一点。

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