Sheffield Zach, Paul Priyanka, Krishnakumar Shraddha, Pan Dipanjan
Huck Institutes of the Life Sciences, The Pennsylvania State University, State College, PA, 16802, USA.
Department of Nuclear Engineering, The Pennsylvania State University, State College, PA, 16802, USA.
Adv Sci (Weinh). 2025 Feb;12(5):e2411339. doi: 10.1002/advs.202411339. Epub 2024 Dec 17.
Most wearable biosensors aimed at capturing psychological state target stress biomarkers in the form of physical symptoms that can correlate with dysfunction in the central nervous system (CNS). However, such markers lack the specificity needed for diagnostic or preventative applications. Wearable biochemical sensors (WBSs) have the potential to fill this gap, however, the technology is still in its infancy. Most WBSs proposed thus far target cortisol. Although cortisol detection is demonstrated as a viable method for approximating the extent and severity of psychological stress, the hormone also lacks specificity. Multiplex WBSs that simultaneously target cortisol alongside other viable stress-related biochemical markers (SBMs) can prove to be indispensable for understanding how psychological stress contributes to the pathophysiology of neuropsychiatric illnesses (NPIs) and, thus, lead to the discovery of new biomarkers and more objective clinical tools. However, none target more than one SBM implicated in NPIs. Till this review, cortisol's connection to dysfunctions in the CNS, to other SBMs, and their implication in various NPIs has not been discussed in the context of developing WBS technology. As such, this review is meant to inform the biosensing and neuropsychiatric communities of viable future directions and possible challenges for WBS technology for neuropsychiatric applications.
大多数旨在捕捉心理状态的可穿戴生物传感器以身体症状的形式靶向应激生物标志物,这些症状可能与中枢神经系统(CNS)功能障碍相关。然而,此类标志物缺乏诊断或预防应用所需的特异性。可穿戴生化传感器(WBS)有潜力填补这一空白,然而,该技术仍处于起步阶段。迄今为止提出的大多数WBS都以皮质醇为靶点。虽然皮质醇检测被证明是一种评估心理应激程度和严重程度的可行方法,但这种激素也缺乏特异性。同时靶向皮质醇以及其他与应激相关的可行生化标志物(SBM)的多重WBS对于理解心理应激如何导致神经精神疾病(NPI)的病理生理学,进而发现新的生物标志物和更客观的临床工具可能至关重要。然而,没有一种WBS针对的SBM超过一种与NPI相关。在撰写本综述之前,尚未在WBS技术发展的背景下讨论皮质醇与CNS功能障碍、其他SBM的联系及其在各种NPI中的影响。因此,本综述旨在向生物传感和神经精神学界介绍WBS技术在神经精神应用方面可行的未来方向和可能面临的挑战。