加药
治疗药物监测
治疗窗口
左旋多巴
药代动力学
医学
生物传感器
生物医学工程
持续监测
可穿戴计算机
疾病
药理学
临床试验
校准
药品
吸收(声学)
准确度和精密度
人血浆
生物流体
重症监护医学
临床疾病
治疗指标
血浆浓度
远程病人监护
病危
疾病监测
内科学
临床实习
计算机科学
间质液
作者
Maria Reynoso,Chochanon Moonla,Katherine Longardner,Nuenghathai Chaiya,Stacey Surace,An-Yi Chang,Tamoghna Saha,Umair Mahmood,Muhammad Inam Khan,Michael Skipworth,Ian A. McGregor,Ava Van Damme,Lidia Vazquez,Eshita Shah,Hao Luan,Irene Litvan,Joseph Wang
出处
期刊:ACS Sensors
[American Chemical Society]
日期:2026-07-28
卷期号:11 (8): 7517-7530
标识
DOI:10.1021/acssensors.6c02083
摘要
Optimal levodopa (L-Dopa) dosing for the personal management of Parkinson's disease represents a major clinical challenge due to L-Dopa's narrow therapeutic window and inter- and intra-patient absorption variability. Current methods for measuring L-Dopa, relying on repeated blood draws for centralized laboratory measurements, fall short of capturing dynamic L-Dopa fluctuations that are relevant for timely interventions. Here, we present a minimally invasive microneedle (MN)-based wearable biosensor for continuous monitoring of L-Dopa (CDM) in human subjects. The MN biosensor platform relies on a tyrosinase-functionalized working electrode for detecting L-Dopa in interstitial fluid (ISF) through enzymatic electrochemical detection. The device was evaluated in healthy volunteers and participants with Parkinson's disease in clinical settings, illustrating its ability to provide actionable temporal insights. Critical validation of the MN biosensor was carried out by comparing the ISF L-Dopa signals with plasma L-Dopa concentrations measured by high-performance liquid chromatography (HPLC). Using subject-specific calibration and lag-time correction, the ISF-derived drug profiles showed a close correlation with plasma L-Dopa pharmacokinetics, with a mean absolute relative difference (MARD) of 9.64%. An inverse correlation between the L-Dopa pharmacokinetics and the corresponding motor performance was observed. Such pioneering demonstration of the clinical feasibility of MN-based CDM in humans highlights its considerable potential for supporting the management of Parkinson's disease.
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