1 Department of Biomedical Engineering, Dongguk University , Seoul, Korea.
Nucleic Acid Ther. 2013 Dec;23(6):443-9. doi: 10.1089/nat.2013.0437. Epub 2013 Nov 20.
Sensitive detection of the metabolites indicative of a particular disease contributes to improved therapy outcomes. Developing binding reagents for detection of low molecular weight metabolites is hampered by the difficulty with immobilization of targets through appropriate covalent chemical linkage while ensuring that selected reagents retain specificity to unmodified metabolites. To circumvent chemical modification of targets, we employed sol-gel droplets deposited onto a porous silicon chip to entrap a purine metabolite, xanthine, which was found at lower levels in urine samples from patients with non-Hodgkin lymphoma. By sol-gel SELEX (systematic evolution of ligands by exponential enrichment) against xanthine, specific aptamers (KD ∼ 10 μM) with sensitivity of detection at as low as 1 μM were isolated, which bound to other purine metabolites at more than 100-fold lower affinity. In contrast, we failed to isolate xanthine-specific aptamers when SELEX was performed against xanthine covalently linked to polymer resin. This study demonstrates that the sol-gel platform for entrapping low molecular weight metabolites without chemical modifications can be utilized for SELEX to discover aptamers against clinical metabolite markers for diagnosis application.
对特定疾病的代谢物进行敏感检测有助于改善治疗效果。通过适当的共价化学连接固定靶标来开发用于检测低分子量代谢物的结合试剂受到阻碍,同时确保所选试剂保留对未修饰代谢物的特异性。为了避免靶标的化学修饰,我们采用沉积在多孔硅芯片上的溶胶-凝胶液滴来捕获黄嘌呤,黄嘌呤在非霍奇金淋巴瘤患者的尿液样本中含量较低。通过针对黄嘌呤的溶胶-凝胶 SELEX(通过指数富集的配体系统进化),分离出具有 10 μM 左右的灵敏度的特异性适体(KD∼10 μM),其与其他嘌呤代谢物的结合亲和力低 100 倍以上。相比之下,当 SELEX 针对共价连接到聚合物树脂的黄嘌呤进行时,我们未能分离出黄嘌呤特异性适体。这项研究表明,无需化学修饰即可捕获低分子量代谢物的溶胶-凝胶平台可用于 SELEX 以发现用于诊断应用的临床代谢物标志物的适体。