School of Biomedical Sciences, LKS Faculty of Medicine, The University of Hong Kong, Hong Kong, China.
Section of Endocrinology and Investigative Medicine, Imperial College London, London, SW7 2AZ, UK.
Nat Commun. 2019 Feb 20;10(1):852. doi: 10.1038/s41467-019-08799-6.
Normal reproductive functioning is critically dependent on pulsatile secretion of luteinising hormone (LH). Assessment of LH pulsatility is important for the clinical diagnosis of reproductive disorders, but current methods are hampered by frequent blood sampling coupled to expensive serial immunochemical analysis. Here, we report the development and application of a Robotic APTamer-enabled Electrochemical Reader (RAPTER) electrochemical analysis system to determine LH pulsatility. Through selective evolution of ligands by exponential enrichment (SELEX), we identify DNA aptamers that bind specifically to LH and not to related hormones. The aptamers are integrated into electrochemical aptamer-based (E-AB) sensors on a robotic platform. E-AB enables rapid, sensitive and repeatable determination of LH concentration profiles. Bayesian Spectrum Analysis is applied to determine LH pulsatility in three distinct patient cohorts. This technology has the potential to transform the clinical care of patients with reproductive disorders and could be developed to allow real-time in vivo hormone monitoring.
正常的生殖功能取决于黄体生成素(LH)的脉冲分泌。评估 LH 的脉冲分泌对于生殖障碍的临床诊断很重要,但目前的方法受到频繁采血和昂贵的连续免疫化学分析的限制。在这里,我们报告了一种基于机器人适体的电化学读取器(RAPTER)电化学分析系统的开发和应用,用于确定 LH 的脉冲分泌。通过指数富集(SELEX)对配体进行选择性进化,我们鉴定出与 LH 特异性结合而不是与相关激素结合的 DNA 适体。这些适体被整合到机器人平台上的电化学适体(E-AB)传感器中。E-AB 可以快速、灵敏、重复地测定 LH 浓度曲线。贝叶斯频谱分析被应用于三个不同患者群体中 LH 脉冲分泌的确定。这项技术有可能改变生殖障碍患者的临床治疗方式,并且可以开发出实时体内激素监测。