A conformable ultrasound patch for cavitation enhanced transdermal cosmeceutical delivery
Name
shah-aasthas-SM-MAS-2023-thesis.pdf
Description
Thesis PDF
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3.23 MB
Format
Adobe PDF
Checksum (MD5)
89f35d38223acce642ab9be55441c59b
Author(s)
Shah, Aastha
Advisor(s)
Dagdeviren, Canan
Date Issued
June 2023
Publisher
Massachusetts Institute of Technology
Abstract
Increased consumer interest in healthy-looking skin demands a safe and effective method to increase transdermal absorption of innovative therapeutic cosmeceuticals. However, permeation of small-molecule drugs is limited by the innate barrier function of the stratum corneum. Here, we report a conformable ultrasound patch (cUSP) that enhances transdermal transport of niacinamide by inducing intermediate-frequency sonophoresis in the fluid coupling medium between the patch and the skin. The cUSP consists of piezoelectric transducers embedded in a soft elastomer to create localized cavitation pockets (0.8 cm², 1 mm deep) over larger areas of conformal contact (20 cm²). Multiphysics simulation models, acoustic spectrum analysis and high-speed videography are used to characterize transducer deflection, acoustic pressure fields and resulting cavitation bubble dynamics in the coupling medium. The final system demonstrates a 26.2-fold enhancement in niacinamide transport in a porcine model in vitro with a 10-minute ultrasound application, demonstrating suitability of the device for short-exposure, large-area application of sonophoresis for patients and consumers suffering from skin conditions and premature skin aging.
MIT Department
Program in Media Arts and Sciences (Massachusetts Institute of Technology)
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