Serotonin measurement by lab-on-a-contact lens in porcine and human tears.

Kim, Minwoo; Lee, Sang Won; Zhang, Chenguang; Zeng, Wenyi; Liu, Liangshu; Garrett, Aliesha Danielle; Haghniaz, Reihaneh; Meyer, Dawn et al. · Sci Transl Med · 2026

basic_science · Level V

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Abstract

Stress-related endocrine responses are critical for understanding human performance and mental health. Conventional assessments rely heavily on subjective self-report questionnaires or invasive sampling such as venipuncture. Tears offer a noninvasive source of neurochemical biomarkers, including serotonin, a key regulator of stress and mood. However, real-time and continuous monitoring of tear serotonin has not yet been fully realized. Here, we present a reversible lab-on-a-contact lens platform that integrates a printable, stretchable ferrocene-based electrochemical sensor for in situ detection of serotonin in tear fluid. The device is fabricated on a soft hydrogel lens and uses an electrochemically refreshable redox surface to restore baseline between measurements. Calibration in artificial tears established a limit of detection of 72 picomolar and a dynamic range of 0.1 to 500 nanomolar. Function was maintained for more than 28 days in a tear-like environment and under repeated mechanical deformations (flipping, folding, stretching, and twisting), with stability confirmed by periodic redox cycling. Ocular safety and biocompatibility were demonstrated in a porcine eye model. In a chronic stress mouse model, tear serotonin concentrations inversely correlated with cortisol in both serum and tears, and a first-in-human pilot study further supported the relationship between tear serotonin and stress with off-line analysis by the lab-on-a-contact lens platform. This platform could enable applications in decentralized, noninvasive endocrine monitoring and holds promise as a clinically translatable tool for real-time mental health biomarker assessment.

Medical subject headings