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Selective and Sensitive Sensing of Free Bilirubin in Human Serum Using Water-Soluble Polyfluorene as Fluorescent Probe

机译:水溶性聚芴作为荧光探针对人血清中游离胆红素的选择性和灵敏性

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The adherence of serum protein on conjugated polymer is a major bottleneck in the application of the latter for selective sensing of small biomolecules in blood serum. In this report, we present new polyfluorenes with d-glucuronic acid appendage that is a nonreceptor for any serum protein, thereby providing a platform for selective sensing of free bilirubin in the clinically relevant range of <25 to >50 mu mol/L in human blood serum. The appended d-glucuronic acid formed noncovalent interactions with bilirubin, which in conjunction with favorable spectral overlap between the polymers and bilirubin facilitated efficient FRET process in aqueous solutions. Addition of bilirubin resulted in the quenching of the polyfluorene emission with simultaneous appearance of bilirubin emission exhibiting visual emission color change from blue to light green. The polymer remained stable in serum even under severe basic conditions and exhibited high selectivity with visual sensitivity only toward free bilirubin in human serum in the presence of crucial interferences such as hemoglobin, proteins, biliverdin, glucose, cholesterol, and metal ions. Nanomolar sensing of bilirubin could also be demonstrated successfully using one of the d-glucuronic acid appended polymer (PF-Ph-GlcA), which could sense similar to 150 nm of bilirubin in human serum. The combined role of energy transfer and noncovalent interaction highlights the potential of the new polymer design for highly selective sensing activity in complex biofluids.
机译:血清蛋白在共轭聚合物上的粘附是后者在选择性检测血清中小生物分子应用中的主要瓶颈。在本报告中,我们提出了带有d-葡萄糖醛酸附属物的新型聚芴,该附属物是任何血清蛋白的非受体,从而为选择性检测人体中<25至> 50μmol/ L的临床相关范围内的游离胆红素提供了平台血清。附加的d-葡萄糖醛酸与胆红素形成非共价相互作用,这与聚合物和胆红素之间有利的光谱重叠相结合,促进了水溶液中有效的FRET过程。胆红素的添加导致聚芴发射的猝灭,同时出现胆红素发射,其显示出从蓝色到浅绿色的视觉发射颜色变化。该聚合物即使在严苛的碱性条件下也能在血清中保持稳定,并且在存在关键干扰物(例如血红蛋白,蛋白质,联肝素,葡萄糖,胆固醇和金属离子)的情况下,仅对人血清中的游离胆红素表现出高选择性和视觉敏感性。使用一种附有d-葡萄糖醛酸的聚合物(PF-Ph-GlcA)也可以成功地证明对胆红素的纳摩尔感测,该聚合物可以在人血清中感测类似于150 nm的胆红素。能量转移和非共价相互作用的共同作用凸显了这种新型聚合物设计在复杂生物流体中具有高度选择性传感活性的潜力。

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