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Adenosine Deaminase Biosensor Combining Cationic Conjugated Polymer-Based FRET with Deoxyguanosine-Based Photoinduced Electron Transfer

机译:结合基于阳离子共轭聚合物的FRET与基于脱氧鸟苷的光诱导电子转移的腺苷脱氨酶生物传感器

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We demonstrated a sensitive and selective adenosine deaminase (ADA) detection by modulating the fluorescence resonance energy transfer (FRET) between cationic conjugated poly(9,9-bis(6'-N,N,N-trimethylammonium) hexyl)fluorine phenylene) (PFP) and the deoxyguanosine-tailored hairpin aptamer. The hairpin aptamer was labeled with a fluorophore FAM at one end and three deoxyguanosines (Gs) at the other end as a quencher. In the absence of ADA, aptamer forms hairpin-like conformation with adenosines making close affinity of Gs and FAM, which results in the weak FRET from PFP to FAM because of FAM fluorescence being quenched by Gs via photoinduced electron transfer (PET). After addition of ADA, adenosine was hydrolyzed by ADA, followed by the release of free aptamer. In this case, FAM being far away from Gs, the strong FRET thus was obtained due to the quenching process being blocked. Therefore, the new strategy based on the FRET ratio enhancement is reasonably used to detect the ADA sensitively, combining the fluorescence signal amplification of conjugated polymers with the initiative signal decreasing by Gs. The detection limit of the ADA assay is 0.3 U/L in both buffer solution and human serum, which is more sensitive than most of those previously documented methods. Importantly, the assay is rapid, homogeneous, and simple without a complicated treating process. The ADA inhibitor, erythro-9-(2-hydroxy-3-nonyl) adenine hydrochloride (EHNA), was also studied based on this assay, and the detection limit of EHNA is 10 pM. This strategy provides a new platform for the detection of other biomolecules and enzymes.
机译:我们通过调节阳离子共轭聚(9,9-双(6'-N,N,N,N-三甲基铵)己基)氟亚苯基间的荧光共振能量转移(FRET),证明了灵敏且选择性的腺苷脱氨酶(ADA)检测( PFP)和脱氧鸟苷定制的发夹适体。发夹适体的一端标记有荧光团FAM,另一端则标记有三个脱氧鸟苷(Gs)作为淬灭剂。在没有ADA的情况下,适体与腺苷形成发夹状构型,与Gs和FAM具有紧密的亲和力,这导致FFP从PFP到FAM的FRET弱,因为Fs荧光被Gs通过光诱导电子转移(PET)淬灭。加入ADA后,腺苷被ADA水解,随后释放游离的适体。在这种情况下,FAM远离Gs,由于阻止了淬火过程,因此获得了强FRET。因此,结合共轭聚合物的荧光信号放大和主动信号减少Gs的方法,合理地使用基于FRET比增强的新策略来灵敏地检测ADA。在缓冲溶液和人血清中,ADA测定的检测限均为0.3 U / L,比大多数先前记录的方法更敏感。重要的是,该测定是快速,均匀且简单的,而无需复杂的处理过程。基于此测定法还研究了ADA抑制剂赤型9-(2-羟基-3-壬基)腺嘌呤盐酸盐(EHNA),EHNA的检出限为10 pM。该策略为检测其他生物分子和酶提供了新的平台。

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