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使用可穿戴微流控贴纸对成年囊性纤维化患者汗液生物标志物进行远程分析和管理。

Remote analysis and management of sweat biomarkers using a wearable microfluidic sticker in adult cystic fibrosis patients.

作者信息

Nelson Rachel S, Grossman Margaret G, Klug Zasu M, Calamari Mia, Donayre Alvaro, Cybulski Thaddeus, Schooley Jared, Griffith Garett J, Corcos Daniel M, Wright Donald E, Wallace Jessica C, Yang Da Som, Wright John A, Rogers John A, Lee Stephen P, Ghaffari Roozbeh, Aranyosi A J, Jain Manu

机构信息

Division of Pulmonary and Critical Care Medicine, Feinberg School of Medicine, Northwestern University, Chicago, IL 60611.

Division of Pulmonary and Critical Care Medicine, Northwestern University, Chicago, IL 60611.

出版信息

Proc Natl Acad Sci U S A. 2025 Aug 19;122(33):e2506137122. doi: 10.1073/pnas.2506137122. Epub 2025 Aug 12.

Abstract

Sweat parameters such as volume and chloride concentration may offer invaluable clinical insights for people with CF (PwCF). Pilocarpine-induced sweat collection for chloridometry measurement is the gold standard for a CF diagnosis, but this technique is cumbersome and not suitable for remote settings or repeat measurements. We have previously reported the utility of a skin-interfaced microfluidic device (CF Patch) in conjunction with a smartphone image processing platform that enables real-time measurement of sweating rates and sodium chloride loss in laboratory and remote settings. Here, we conducted clinical studies assessing the accuracy of the CF Patch compared to chloridometry when using pilocarpine to induce sweat. We also tested the feasibility and accuracy of exercise-induced sweat chloride measurements in PwCF and healthy volunteers (HV). In the laboratory, using either pilocarpine or exercise to induce sweat, the CF Patch demonstrated strong correlations with sweat chloride measured by pilocarpine-induced chloridometry. In remote settings, exercise-induced sweat chlorides measured using the CF patch were strongly correlated with in-laboratory exercise-induced CF patch sweat chlorides in HV but had a weaker correlation in PwCF. For PwCF on CFTR modulators, there was greater day-to-day variability in sweat chloride compared to HV, which highlights the limitations of assessing CFTR modulator efficacy and pharmacodynamics based on a single in-laboratory chloridometry measurement. Moreover, these findings demonstrate that the CF Patch is suitable as a remote management device capable of measuring serial sweat chloride concentrations and offers the potential of monitoring the efficacy of CF medication regimens but should not replace pilocarpine-based chloridometry for making a CF diagnosis.

摘要

汗液参数,如汗液量和氯化物浓度,可能为囊性纤维化患者(PwCF)提供宝贵的临床见解。毛果芸香碱诱导汗液收集用于氯化物测定是囊性纤维化诊断的金标准,但该技术操作繁琐,不适用于远程环境或重复测量。我们之前报道了一种皮肤接口微流控设备(CF贴片)与智能手机图像处理平台结合使用的效用,该平台能够在实验室和远程环境中实时测量出汗率和氯化钠流失情况。在此,我们进行了临床研究,评估了在使用毛果芸香碱诱导出汗时,CF贴片与氯化物测定法相比的准确性。我们还测试了在PwCF和健康志愿者(HV)中运动诱导汗液氯化物测量的可行性和准确性。在实验室中,使用毛果芸香碱或运动诱导出汗,CF贴片与毛果芸香碱诱导氯化物测定法测得的汗液氯化物显示出很强的相关性。在远程环境中,使用CF贴片测量的运动诱导汗液氯化物与HV在实验室中运动诱导的CF贴片汗液氯化物高度相关,但在PwCF中相关性较弱。对于使用CFTR调节剂的PwCF,与HV相比,汗液氯化物的日常变异性更大,这突出了基于单次实验室氯化物测定评估CFTR调节剂疗效和药效学的局限性。此外,这些发现表明,CF贴片适合作为一种能够测量连续汗液氯化物浓度的远程管理设备,并具有监测囊性纤维化药物治疗方案疗效的潜力,但不应取代基于毛果芸香碱的氯化物测定法用于囊性纤维化的诊断。

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