Department of Physical Therapy, College of Healthcare Medical Science & Engineering, Inje University, Gimhae, Gyeong-nam, 50834, Korea.
Biohealth Products Research Center (BPRC), Inje University, Gimhae, Gyeong-nam, 50834, Korea.
Int J Nanomedicine. 2021 Oct 11;16:6861-6888. doi: 10.2147/IJN.S325099. eCollection 2021.
Tryptophan and melatonin are pleiotropic molecules, each capable of influencing several cellular, biochemical, and physiological responses. Therefore, sensitive detection of tryptophan and melatonin in pharmaceutical and human samples is crucial for human well-being. Mass spectrometry, high-performance liquid chromatography, and capillary electrophoresis are common methods for both tryptophan and melatonin analysis; however, these methods require copious amounts of time, money, and manpower. Novel electrochemical and optical detection tools have been subjects of intensive research due to their ability to offer a better signal-to-noise ratio, high specificity, ultra-sensitivity, and wide dynamic range. Recently, researchers have designed sensitive and selective electrochemical and optical platforms by using new surface modifications, microfabrication techniques, and the decoration of diverse nanomaterials with unique properties for the detection of tryptophan and melatonin. However, there is a scarcity of review articles addressing the recent developments in the electrochemical and optical detection of tryptophan and melatonin. Here, we provide a critical and objective review of high-sensitivity tryptophan and melatonin sensors that have been developed over the past six years (2015 onwards). We review the principles, performance, and limitations of these sensors. We also address critical aspects of sensitivity and selectivity, limit and range of detection, fabrication process and time, durability, and biocompatibility. Finally, we discuss challenges related to tryptophan and melatonin detection and present future outlooks.
色氨酸和褪黑素是多效分子,每种分子都能够影响多种细胞、生化和生理反应。因此,在药物和人体样本中灵敏地检测色氨酸和褪黑素对于人类健康至关重要。质谱法、高效液相色谱法和毛细管电泳法是色氨酸和褪黑素分析的常用方法;然而,这些方法需要大量的时间、金钱和人力。由于具有提供更好的信噪比、高特异性、超灵敏性和宽动态范围的能力,新型电化学和光学检测工具一直是密集研究的主题。最近,研究人员通过使用新的表面修饰、微制造技术以及各种具有独特性质的纳米材料的修饰,设计了敏感和选择性的电化学和光学平台,用于检测色氨酸和褪黑素。然而,关于电化学和光学检测色氨酸和褪黑素的最新发展,缺乏综述文章。在这里,我们对过去六年(2015 年以来)开发的高灵敏度色氨酸和褪黑素传感器进行了批判性和客观的综述。我们回顾了这些传感器的原理、性能和局限性。我们还讨论了灵敏度和选择性、检测限和检测范围、制造工艺和时间、耐用性和生物相容性等关键方面。最后,我们讨论了与色氨酸和褪黑素检测相关的挑战,并提出了未来的展望。