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Ratiometric fluorescence detection of phosphate in human serum with a metal-organic frameworks-based nanocomposite and its immobilized agarose hydrogels

机译:基于金属-有机骨架的纳米复合物及其固定化琼脂糖水凝胶的比率荧光检测人血清中的磷酸盐

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We report a metal-organic frameworks (MOFs)-based nanocomposite by incorporating a fluorescent dye, rhodamine B (RhB), into a stable Zr-based MOF, UiO-66-NH2. Based on weakened the LMCT process resulted from the strong binding of phosphate with Zr-O node in UiO-66-NH2 and the unchangable fluorescence of RhB as the reference, this nanocomposite can be employed as a novel fluorescent sensing platform for ratiometric detection of phosphate in the range from 80 to 400 mu M with a detection limit of 2.0 mu M. It is particularly suitable for accurate quantification of phosphate in complex samples like human serum. Furthermore, this sensing platform is well recyclable due to reversible interaction with phosphate. Finally, this nanocomposite was encapsulated into agarose hydrogels for direct detection of phosphate in human serum with the naked eye. Thanks to the robust, portable, and instrument-free characteristics, it is expected to show great potential for on-site clinical diagnosis.
机译:我们通过将荧光染料若丹明B(RhB)掺入稳定的基于Zr的MOF UiO-66-NH2中,报告了基于金属-有机骨架(MOFs)的纳米复合材料。基于磷酸盐与UiO-66-NH2中Zr-O结点的强结合以及RhB不变的荧光导致的LMCT过程减弱,该纳米复合材料可作为比率检测磷酸盐的新型荧光传感平台的检测限为80至400μM,检测极限为2.0μM。它特别适用于准确定量复杂样品(如人血清)中的磷酸盐。此外,由于与磷酸盐的可逆相互作用,该传感平台可很好地回收利用。最后,将该纳米复合材料封装到琼脂糖水凝胶中,用肉眼直接检测人血清中的磷酸盐。由于其坚固,便携和无需仪器的特性,有望在现场临床诊断中显示出巨大的潜力。

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