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Lab on a Contact Lens Can Measure Stress Through Serotonin
Smart contact lenses might one day measure body chemistry throughout the day
Charles Q. Choi is a contributing editor for IEEE Spectrum.
In the future, a contact lens printed with winding electronics could act as a wearable sensor for measuring biochemical signals like serotonin levels.
A “lab on a contact lens” can measure the neurotransmitter serotonin in tears, potentially offering a novel wearable method to noninvasively analyze levels of stress, a new study finds.
“Tears could become a practical, noninvasive source of biochemical information that can be measured repeatedly over time,” says Yangzhi Zhu, director of the biomedical device center at the Terasaki Institute for Biomedical Innovation in Los Angeles. “Most biomarker testing today still relies on blood draws or isolated laboratory measurements, which provide only snapshots. A wearable platform based on a contact lens could eventually make it possible to follow biochemical changes more continuously and in everyday settings.”
Stress is linked to the development of many disorders, such as depression and schizophrenia. Currently, doctors often measure stress using questionnaires or diaries, but these are highly subjective, complicating accurate evaluations. In the new study, researchers sought to create a device that measured serotonin for a potentially objective method to gauge stress.
Serotonin, often called a “feel-good” hormone, plays a central role in regulating mood. It’s found mostly in the digestive tract, blood, and nervous system, but small amounts can also be found in tears. As such, the scientists explored whether tears might offer a noninvasive, easily accessible route to analyze serotonin levels. However, because serotonin is only present at very low concentrations, Zhu says, “a sensor needs to be extremely sensitive while still distinguishing serotonin from other molecules in tears.”
Zhu and his team fabricated soft, reusable hydrogel lenses encapsulating flexible biocompatible graphene and silver electrodes printed in serpentine patterns designed to tolerate repeated deformation. A compound called ferrocene was bonded onto the graphene to help detect serotonin in a strong, repeatable manner.
The researchers tested these smart contact lenses in lab dishes with commercially available artificial tears that they laced with serotonin. The lenses could detect as little as 72-trillionths of a mole per liter of serotonin, well below the average serotonin concentration in human tears of roughly 15-billionths of a mole per liter. Experiments also showed the lenses could withstand more than 28 days of repeated flipping, folding, stretching, and twisting while staying functional.
The scientists also tested the lenses in lab dishes on tears collected from 10 volunteers five minutes before, immediately after, and roughly 30 minutes after they each performed a pair of stressful tasks—public speaking and math challenges. As expected, serotonin levels in tears fell with increased stress.