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基于竞争性酶联适体的唾液褪黑素检测方法

Competitive enzyme linked aptamer based assay for salivary melatonin detection.

作者信息

Pundir Meenakshi, Lobanova Liubov, Papagerakis Petros, Chen Xiongbiao, Papagerakis Silvana

机构信息

Centre interprofessionnel pour la recherche clinique et appliquée (CIRCA), Faculty of Dentistry, Université Laval, Dental Medicine Pavilion, 2420, rue de la Terrasse, Quebec City, G1V0A6, Canada.

Laboratory of Precision Oral Health and Chronobiology, College of Dentistry, University of Saskatchewan, 107 Wiggins Rd, Saskatoon, S7N 5E4, Canada.

出版信息

Sci Rep. 2025 Apr 24;15(1):14276. doi: 10.1038/s41598-025-94304-7.

Abstract

Melatonin is a key hormone that regulates the sleep-wake cycle and plays an important role in maintaining circadian rhythm and sleep onset. The daily rise in melatonin secretion is associated with an increased tendency to sleep, occurring approximately 2 h before bedtime. This correlation between melatonin levels and sleep onset makes it a reliable biomarker for circadian rhythm sleep-wake disorders. An accurate assessment of dim light melatonin onset (DLMO) is vital for understanding circadian timing and diagnosing sleep-wake cycle disruptions. However, the traditional methods for detecting melatonin in saliva are either complex or lack the sensitivity required for the accurate assessment of DLMO, especially at low concentrations. Here, we present a novel competitive enzyme-linked aptamer-based assay developed to detect melatonin in saliva. Unlike conventional assays, this technique utilizes chemically synthesized single-stranded DNA or RNA aptamers, which bind to melatonin with high specificity and sensitivity. The assay measures melatonin, attaining a linear dynamic range from 8.62 × 10 M to 3.9 × 10 M, with a detection limit of 2.5 × 10 M (~ 0.57 pg/mL). Additionally, the aptamer showed small binding to its counter targets and acceptable recovery of melatonin when spiked in four times diluted saliva in assay buffer. Overall, the assay portrayed the potential of aptamers to detect low melatonin levels in saliva that could be beneficial in accurately determining DLMO, particularly in individuals with very low melatonin levels, such as the elderly or those with neurodegenerative conditions. Determining precise measurement of DLMO will facilitate the accurate diagnosis of circadian rhythm disruption, enabling healthcare providers to optimize the timing and selection of therapeutic and behavioural interventions tailored to an individual's unique circadian rhythm.

摘要

褪黑素是一种关键激素,它调节睡眠-觉醒周期,在维持昼夜节律和入睡过程中发挥着重要作用。褪黑素分泌的每日增加与睡眠倾向的增加相关,大约在就寝时间前2小时出现。褪黑素水平与入睡之间的这种关联使其成为昼夜节律性睡眠-觉醒障碍的可靠生物标志物。准确评估暗光褪黑素起始时间(DLMO)对于理解昼夜节律定时和诊断睡眠-觉醒周期紊乱至关重要。然而,传统的唾液中褪黑素检测方法要么复杂,要么缺乏准确评估DLMO所需的灵敏度,尤其是在低浓度时。在此,我们提出了一种基于竞争性酶联适体的新型检测方法,用于检测唾液中的褪黑素。与传统检测方法不同,该技术利用化学合成的单链DNA或RNA适体,它们以高特异性和灵敏度与褪黑素结合。该检测方法可测量褪黑素,线性动态范围为8.62×10⁻⁹M至3.9×10⁻⁷M,检测限为2.5×10⁻¹⁰M(约0.57 pg/mL)。此外,当在检测缓冲液中四倍稀释的唾液中加标时,该适体与其反靶标的结合很小,褪黑素的回收率也可接受。总体而言,该检测方法显示了适体检测唾液中低褪黑素水平的潜力,这可能有助于准确确定DLMO,特别是对于褪黑素水平非常低的个体,如老年人或患有神经退行性疾病的人。确定DLMO的精确测量将有助于准确诊断昼夜节律紊乱,使医疗保健提供者能够优化针对个体独特昼夜节律的治疗和行为干预的时间和选择。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2965/12022177/7207f7cd6168/41598_2025_94304_Fig1_HTML.jpg

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