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Fluorescence-based ion sensing in lipid membranes: a simple method of sensing in aqueous medium with enhanced efficiency

机译:脂质膜中基于荧光的离子感测:在水介质中感测的简单方法,效率更高

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Detection of ions in chemical, biological and environmental samples has gathered tremendous momentum considering the beneficial as well as adverse effects of the ions. Generally, most of the ions are beneficial up to an optimum concentration, beyond which they are toxic to human health. However, most of the fluorescence-based ion sensors are only active in non-aqueous solution because of the low solubility of the sensor molecules in aqueous buffer medium. In the present work, we have demonstrated that encapsulation of an aqueous insoluble thiocarbonohydrazone-locked salicylidene-based macrocyclic ligand in 1-palmitoyl-2-oleoyl- sn-glycero -3-phosphocholine (POPC) membranes allows the selective detection of Zn ~(2+) in aqueous medium with approximately 3-fold enhanced efficiency compared to its efficiency in DMSO medium. We have further modulated the charge of the membrane surface by adding various concentrations of a negatively charged lipid, 1-palmitoyl-2-oleoyl- sn-glycero -3-phosphoglycerol (POPG), and showed that negative surface charge further enhances the Zn ~(2+) sensing efficiency up to approximately 6-fold. This strategy opens up a new avenue of utilizing organic sensors to detect vital ions in aqueous medium.
机译:考虑到离子的有利和不利影响,化学,生物和环境样品中离子的检测已经获得了巨大的发展。通常,大多数离子在达到最佳浓度时都是有益的,超过此浓度它们对人体健康有毒。但是,由于传感器分子在水性缓冲介质中的溶解度较低,因此大多数基于荧光的离子传感器仅在非水溶液中具有活性。在目前的工作中,我们已经证明了在1-棕榈酰基-2-油酰基-sn-甘油-3-磷酸胆碱(POPC)膜中包裹不溶的硫代碳hydr水杨基环大环配体可以选择性地检测Zn〜( (2+)在水性介质中的效率比在DMSO介质中的效率高约3倍。我们通过添加各种浓度的带负电荷的脂质1-palmitoyl-2-oleoyl-sn-glycero-3-磷酸甘油(POPG),进一步调节了膜表面的电荷,并表明负表面电荷进一步增强了Zn〜 (2+)感应效率高达大约6倍。该策略开辟了利用有机传感器检测水性介质中重要离子的新途径。

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