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MedTech Outlook | Tuesday, February 01, 2022
A group of international scientists has developed a smart device for a personal skin treatment modeled after the male diving beetle.
Fremont, CA: A collaboration of worldwide experts has created a smart device based on the male diving beetle for personalized skin treatment. This device adheres to the skin's surface and collects and monitors body fluids, allowing for more precise diagnosis and treatment of skin illnesses and ailments, including acne.
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Traditional non-invasive diagnostic technologies for skincare have several drawbacks. These devices are less accurate, difficult to use, and need expensive analysis equipment. Chemical adhesives used in the process can irritate or even harm the skin, making them difficult to use repeatedly or for an extended period of time. Maintaining adhesion under a variety of situations, such as damp or curved skin, can be difficult.
Hydaticus Pacificus, or male diving beetles, are aquatic insects with special sticky hairs called setae that allow them to grab onto their mates underwater. Setae are suction cup-like structures and chambers found on the male's forelegs that provide a strong connection to wet and uneven surfaces. The researchers created an intelligent device that clings to the skin's uneven surface and monitors skin health in real-time, inspired by male diving beetles.
The researchers developed micro-sized artificial suction cups that can collect and monitor body fluids while clinging to the skin, with fluid-capturing hydrogels implanted in the cup chambers to monitor pH levels. With varying acidity levels, the hydrogel changes color. The researchers also built a software application that can automatically quantify pH levels based on the color suggested by pH-responsive hydrogels, using machine learning techniques. This gadget is predicted to be used in individualized skin treatment patches, medicinal adhesive materials, and diagnostic technologies. The researchers believe it might be utilized for on-site identification of biomarkers for skin illness based on the findings of their study.
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