Department of Chemistry, University of Cincinnati, 312 College Dr. 404 Crosley Tower, Cincinnati, Ohio 45221-0172, United States.
Anal Chem. 2024 Jan 9;96(1):76-84. doi: 10.1021/acs.analchem.3c02967. Epub 2023 Dec 16.
17β-Estradiol (E2) is a ubiquitously expressed hormone that is active in a wide range of neuroprotective and regenerative roles throughout the brain. In particular, it is a well-known dopamine (DA) regulator and is responsible for modulating the expression of dopaminergic receptors and transporters. Recent studies point to E2 release occurring on a rapid time scale and having impacts on DA activity within seconds to minutes. As such, tools capable of monitoring the release of both E2 and DA in real time are essential for developing an accurate understanding of their interactive roles in neurotransmission and regulation. Currently, no analytical techniques capable of codetection of both analytes with high sensitivity, spatiotemporal resolution, extended monitoring, and minimal tissue damage exist. We describe a modified waveform using fast-scan cyclic voltammetry that is capable of low nanomolar detection of both DA and E2 on a subsecond time scale. Both analytes have limits of detection at or below 30 nM and high sensitivity: 11.31 ± 0.55 nA/μM for DA and 9.47 ± 0.36 nA/μM for E2. The waveform is validated in a tissue matrix, confirming its viability for measurement in a biologically relevant setting. This is the first method capable of codetection of fluctuations in DA and E2 with the temporal, spatial, and sensitivity requirements necessary for studying real-time neurochemical signaling.
17β-雌二醇(E2)是一种广泛表达的激素,在大脑中具有广泛的神经保护和再生作用。特别是,它是一种众所周知的多巴胺(DA)调节剂,负责调节多巴胺能受体和转运体的表达。最近的研究表明,E2 的释放发生在快速的时间尺度内,并在几秒钟到几分钟内对 DA 活性产生影响。因此,能够实时监测 E2 和 DA 释放的工具对于准确了解它们在神经传递和调节中的相互作用至关重要。目前,不存在能够以高灵敏度、时空分辨率、扩展监测和最小组织损伤同时对这两种分析物进行共检测的分析技术。我们描述了一种使用快速扫描循环伏安法的改进波形,该方法能够在亚秒级的时间尺度上对 DA 和 E2 进行低纳摩尔检测。两种分析物的检测限均在 30 nM 或以下,且具有高灵敏度:DA 的检测限为 11.31 ± 0.55 nA/μM,E2 的检测限为 9.47 ± 0.36 nA/μM。该波形在组织基质中得到了验证,证实了其在生物相关环境中进行测量的可行性。这是第一种能够共检测 DA 和 E2 波动的方法,具有研究实时神经化学信号所需的时间、空间和灵敏度要求。