首页> 外文期刊>The Analyst: The Analytical Journal of the Royal Society of Chemistry: A Monthly International Publication Dealing with All Branches of Analytical Chemistry >Gold nanoparticle-streptavidin conjugates for rapid and efficient screening of aptamer function in lateral flow sensors using novel CD4-binding aptamers identified through Crossover-SELEX
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Gold nanoparticle-streptavidin conjugates for rapid and efficient screening of aptamer function in lateral flow sensors using novel CD4-binding aptamers identified through Crossover-SELEX

机译:用于通过交叉SELEX确定的新型CD4结合体系在横向流动传感器中快速高效地筛选适体功能的金纳米粒子 - 链霉抗生物素蛋白缀合物

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To decrease the burden of laborious and reagent-intensive screening of modified aptamers, their binding function requires assessment in assay formats compatible with the end diagnostic application. Here, we report on the use of an alternative and cost-effective approach: a rapid lateral flow assay (LFA) utilising streptavidin-conjugated gold nanoparticles (AuNP) as reporter molecules to screen novel ssDNA aptamers for their ability to detect CD4. Crossover-SELEX was employed to identify CD4-targeting aptamers from a ssDNA library enriched against a recombinant human CD4 protein (hCD4) conjugated to magneticbeads and to endogenous CD4 expressed by U937 cells. Counter-selection with IgG-conjugated beads and CD4-negative Ramos RA-1 cells was employed. Following SELEX, four sequences (U4, U14, U20 and U26) were selected for candidate screening. Fluorescence confocal microscopy showed comparable localization of the Cy5-labeled aptamer U26, compared to antibodies binding CD4's cytoplasmic domain. Aptamer-hCD4 binding kinetics were evaluated by a qPCR-based magnetic-bead binding assay to unmodified aptamers. U26 exhibited the highest binding affinity (K_d = 2.93 ± 1.03 nM) to hCD4-conjugated beads. Citrate-stabilized gold nanoparticles (mean particle diameter, 10.59 ± 1.81 nm) were functionalized with streptavidin to allow immobilization of biotin-labeled aptamers. Except for U4, the aptamer–gold nanoparticle conjugates (Apt–AuNP) remained stable under physiological conditions with their size (approx. 15 nm) appropriate for use in the LFAs. Lateral-flow based screening was used to evaluate the suitability of the Apt–AuNPs as CD4-detecting reporter molecules by immobilizing hCD4 and flowing the nanoparticle conjugates across the LFA. Using this approach, two novel sequences were identified as being suitable for the detection of hCD4: visual detection at 9 min was obtained using U20 or U26. After 20 min, equivalent colorimetric hCD4 responses were observed between anti-
机译:为了降低改性适体的艰苦和试剂强化筛选的负担,它们的结合功能需要评估与最终诊断应用兼容的测定形式。在这里,我们报告使用替代和经济有效的方法:利用链霉抗生物素蛋白 - 共轭金纳米颗粒(AUNP)作为报告分子的快速侧向流动测定(LFA),以筛选新的SSDNA适体,以便它们检测CD4的能力。用于将Crossover-Selex鉴定CD4靶向来自富含与磁性腺体缀合的重组人CD4蛋白(HCD4)的SSDNA文库和由U937细胞表达的内源CD4的SSDNA文库。使用与IgG缀合的珠子和CD4阴性RA-1细胞进行反选择。在SELEX之后,选择四个序列(U4,U14,U20和U26)进行候选筛选。与抗体结合CD4的细胞质结构域相比,荧光共聚焦显微镜显示Cy5标记的适体U26的相当定位。通过基于QPCR的磁珠结合测定法评估Aptamer-HCD4结合动力学,以对未修饰的适体进行评估。 U26表现出最高的结合亲和力(K_D = 2.93±1.03nm)至HCD4缀合的珠子。用链霉抗生物素蛋白官能化柠檬酸盐稳定的金纳米颗粒(平均粒径,10.59±1.81nm),以允许固定生物素标记的适体。除U4外,Aptamer-Gold纳米粒子缀合物(APT-AUNP)在生理条件下保持稳定,其尺寸适合于LFA。通过固定HCD4并在LFA上流动纳米颗粒缀合物来评估ApT-AUNPS作为CD4检测结果分子的适用性。使用这种方法,将两种新序列鉴定为适合于检测HCD4:使用U20或U26获得9分钟的视觉检测。 20分钟后,在抗 - 之间观察到等效的比色HCD4响应

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