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使用适体定量检测神经递质:从诊断到治疗。

Quantitative detection of neurotransmitter using aptamer: From diagnosis to therapeutics.

机构信息

Centre for Healthcare Science and Technology, Indian Institute of Engineering Science and Technology, Shibpur, Howrah 711 103, India.

出版信息

J Biosci. 2020;45.

Abstract

Neurotransmitters, the small molecule chemical messenger responsible for nervous system regulation and can control joy, fear, depression, insomnia, craving for carbohydrates, drugs, and alcohols. Variation in neurotransmitter levels is a characteristic manifestation of several neurological diseases. Accurate diagnosis of these diseases caused due to an imbalance in neurotransmitter level followed by impaired transmission of signals between neurons and other body parts remains a great challenge for the clinicians. Recent evidences reveal, artificial single-stranded nucleotides called 'aptamer' are widely used as biosensors, antibody substitutes, diagnostic agents, and for targeted therapy. These aptamers are superior candidate both for early detection and diagnosis of many neurological disorders caused due to suboptimal level of neurotransmitters. Presently, noninvasive neurotransmitter detection by aptamer has been found to be an easy, fast, and cost-effective choice. In addition, increased specificity, stability, affinity, and reproducibility of aptamers, high throughput screening of aptamer-based sensing platforms have been observed. Moreover, clinical applicability of aptamer has also proved to be efficacious, though still at a preliminary stage. Herein, we review salient features of aptamerbased sensing technology used for neurotransmitter detection particularly their chemical modifications, selection, assay development, immobilization, therapeutic efficiency, and stability for early diagnosis of diseases caused due to neurotransmitter imbalance.

摘要

神经递质是负责神经系统调节的小分子化学信使,可以控制快乐、恐惧、抑郁、失眠、对碳水化合物、药物和酒精的渴望。神经递质水平的变化是几种神经疾病的特征表现。准确诊断这些由于神经递质水平失衡引起的疾病,随后神经元和其他身体部位之间的信号传递受损,对临床医生来说仍然是一个巨大的挑战。最近的证据表明,人工单链核苷酸,称为“适体”,被广泛用作生物传感器、抗体替代品、诊断剂和靶向治疗剂。这些适体不仅是检测和诊断由于神经递质水平不理想而导致的许多神经紊乱的首选候选物。目前,通过适体进行非侵入性神经递质检测已被发现是一种简单、快速且具有成本效益的选择。此外,适体具有更高的特异性、稳定性、亲和力和重现性,基于适体的传感平台的高通量筛选也得到了观察。此外,尽管仍处于初步阶段,但适体的临床应用已被证明是有效的。在此,我们综述了适体用于神经递质检测的传感技术的突出特点,特别是它们的化学修饰、选择、检测方法的开发、固定化、治疗效果和稳定性,以实现对由于神经递质失衡引起的疾病的早期诊断。

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