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首页> 外文期刊>Analytical and bioanalytical chemistry >Fluorescent biosensor for the detection of hyaluronidase: intensity-based ratiometric sensing and fluorescence lifetime-based sensing using a long lifetime azadioxatriangulenium (ADOTA) fluorophore
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Fluorescent biosensor for the detection of hyaluronidase: intensity-based ratiometric sensing and fluorescence lifetime-based sensing using a long lifetime azadioxatriangulenium (ADOTA) fluorophore

机译:用于检测透明质酸酶的荧光生物传感器:使用长寿命的氮杂二三trianguliumium(ADOTA)荧光基团的基于强度的比率传感和基于荧光寿命的传感

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In this report, we have designed a rapid and sensitive, intensity-based ratiometric sensing as well as lifetime-based sensing probe for the detection of hyaluronidase activity. Hyaluronidase expression is known to be upregulated in various pathological conditions. We have developed a fluorescent probe by heavy labeling of hyaluronic acid with a new orange/red-emitting organic azadioxatriangulenium (ADOTA) fluorophore, which exhibits a long fluorescence lifetime (similar to 20 ns). The ADOTA fluorophore in water has a peak fluorescence lifetime of similar to 20 ns and emission spectra centered at 560 nm. The heavily ADOTA-labeled hyaluronic acid (HA-ADOTA) shows a red shift in the peak emission wavelength (605 nm), a weak fluorescence signal, and a shorter fluorescence lifetime (similar to 4 ns) due to efficient self-quenching and formation of aggregates. In the presence of hyaluronidase, the brightness and fluorescence lifetime of the sample increase with a blue shift in the peak emission to its original wavelength at 560 nm. The ratio of the fluorescence intensity of the HA-ADOTA probe at 560 and 605 nm can be used as the sensing method for the detection of hyaluronidase. The cleavage of the hyaluronic acid macromolecule reduces the energy migration between ADOTA molecules, as well as the degree of self-quenching and aggregation. This probe can be efficiently used for both intensity-based ratiometric sensing as well as fluorescence lifetime-based sensing of hyaluronidase. The proposed method makes it a rapid and sensitive assay, useful for analyzing levels of hyaluronidase in relevant clinical samples like urine or plasma.
机译:在本报告中,我们设计了一种快速,灵敏的,基于强度的比例传感以及基于寿命的传感探头,用于检测透明质酸酶的活性。已知透明质酸酶表达在各种病理条件下均被上调。我们已经开发了一种荧光探针,该荧光探针通过透明质酸与橙色或红色发光的有机氮杂二恶三triangulenium(ADOTA)荧光团的重标记而开发,该荧光团具有较长的荧光寿命(约20 ns)。水中的ADOTA荧光团的峰值荧光寿命接近20 ns,发射光谱的中心为560 nm。严重的ADOTA标记的透明质酸(HA-ADOTA)由于有效的自猝灭和形成,在峰值发射波长(605 nm)中出现红移,荧光信号较弱,并且荧光寿命较短(类似于4 ns)集料。在透明质酸酶的存在下,样品的亮度和荧光寿命随着峰发射中蓝移到其在560 nm的原始波长而增加。 HA-ADOTA探针在560和605 nm处的荧光强度之比可用作检测透明质酸酶的传感方法。透明质酸大分子的裂解减少了ADOTA分子之间的能量迁移,以及自猝灭和聚集的程度。该探针可有效用于透明质酸酶的基于强度的比例传感以及基于荧光寿命的传感。所提出的方法使其成为一种快速而灵敏的测定方法,可用于分析相关临床样品(如尿液或血浆)中的透明质酸酶水平。

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