Abstract
Inspired by the gecko foot, polymeric microstructures have demonstrated reliable dry adhesion to both stiff objects and sensitive surfaces such as skin. Microstructured silicone patches are proposed, herein, for the treatment of tympanic membrane perforations with the aim of serving as an alternative for current surgical procedures that require anesthesia and ear canal packing. Sylgard 184 PDMS micropillars of 20 μm in diameter and 60 μm in length are topped by a Soft Skin Adhesive (SSA) MG7-1010 terminal layer, of about 25 μm thickness. The adhesion is evaluated by specially designed tack tests against explanted murine eardrums and, for comparison, against a rigid substrate. Functional effects are evaluated using auditory brainstem responses (ABRs) and distortion product otoacoustic emissions (DPOAE). The adhesion strength of the microstructure and unstructured controls to explanted murine tympanic membranes is comparable (typically 12 kPa), but the microstructured patches are easier to handle by the surgeon. For the first time, partial recovery of hearing performance is measured immediately after patch application. The novel patches adhere without the need for further fixation, removing the need for ear canal packing. The proposed material design holds great promise for improving clinical treatments of tympanic membrane perforations.
Recommended Citation
G. Moreira Lana et al., "Self-Adhesive Silicone Microstructures For The Treatment Of Tympanic Membrane Perforations," Advanced Nanobiomed Research, vol. 1, no. 10, article no. 2100057, Wiley, Oct 2021.
The definitive version is available at https://doi.org/10.1002/anbr.202100057
Department(s)
Chemical and Biochemical Engineering
Publication Status
Open Access
Keywords and Phrases
distortion product otoacoustic emissions; microstructured adhesives; silicone patches; tympanic membrane perforations
International Standard Serial Number (ISSN)
2699-9307
Document Type
Article - Journal
Document Version
Citation
File Type
text
Language(s)
English
Rights
© 2026 The Authors, All rights reserved.
Creative Commons Licensing

This work is licensed under a Creative Commons Attribution 4.0 License.
Publication Date
01 Oct 2021

Comments
European Research Council, Grant 842613