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Novel Fluorescent Microemulsion: Probing Properties, Investigating Mechanism, and Unveiling Potential Application

机译:新型荧光微乳液:探测性能,研究机制和揭幕潜在应用

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Nanoscale microemulsions have been utilized as delivery carriers for nutraceuticals and active biological drugs. Herein, we designed and synthesized a novel oil in water (O/W) fluorescent microemulsion based on isoamyl acetate, polyoxyethylene castor oil EL (CrEL), and water. The microemulsion emitted bright blue fluorescence, thus exhibiting its potential for active drug detection with label-free strategy. The microemulsion exhibited excitation dependent emission and distinct red shift with longer excitation wavelengths. Lifetime and quantum yield of fluorescent micro emulsion were 2.831 ns and 5.0%, respectively. An excellent fluorescent stability of the microemulsion was confirmed by altering pH, ionic strength, temperature, and time. Moreover, we proposed a probable mechanism of fluorochromic phenomenon, in connection with the aromatic ring structure of polyoxyethylene ether substituent in CrEL. Based on our findings, we concluded that this new fluorescent microemulsion is a promising drug carrier that can facilitate active drug detection with a label-free strategy. Although further research is required to understand the exact mechanism behind its fluorescence property, this work provided valuable guidance to develop new biosensors based on fluorescent microemulsion.
机译:纳米级微乳液已被用作营养保健品和活性生物药物的递送载体。在此,我们在水(O / W)荧光微乳液中设计和合成了基于异戊酯,聚氧乙烯蓖麻油EL(CREL)和水的荧光微乳液。微乳液发出明亮的蓝色荧光,从而表现出具有无标记策略的活性药物检测的可能性。微乳液表现出具有较长激发波长的激发依赖性排放和不同的红移。荧光微乳液的寿命和量子产率分别为2.831ns和5.0%。通过改变pH,离子强度,温度和时间来确认微乳液的优异荧光稳定性。此外,我们提出了一种有可能的荧光致铬现象机制,与克隆中的聚氧乙烯醚取代基的芳环结构有关。基于我们的研究结果,我们得出结论,这种新的荧光微乳液是一种有前途的药物载体,可促进具有无标签策略的活性药物检测。虽然需要进一步的研究来了解其荧光性质背后的确切机制,但这项工作提供了有价值的指导,以基于荧光微乳液开发新的生物传感器。

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