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Cited 3 time in webofscience Cited 3 time in scopus
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Latent stem cell-stimulating radially aligned electrospun nanofibrous patches for chronic tympanic membrane perforation therapyopen access

Authors
Lee, JuoPark, SangbaeShin, BeomyongKim, Yeon JuLee, SungminKim, JungsilJang, Kyoung-JeChoo, Oak-SungKim, JanghoSeonwoo, HoonChung, Jong HoonChoung, Yun-Hoon
Issue Date
15-Oct-2024
Publisher
Acta Materialia Inc
Keywords
Chronic otitis media; Insulin-like growth factor-binding protein 2; Nanofibers; Radial alignment; Stem cell stimulating therapy; Tympanic membrane
Citation
Acta Biomaterialia, v.188, pp 212 - 222
Pages
11
Indexed
SCIE
SCOPUS
Journal Title
Acta Biomaterialia
Volume
188
Start Page
212
End Page
222
URI
https://scholarworks.gnu.ac.kr/handle/sw.gnu/74532
DOI
10.1016/j.actbio.2024.09.019
ISSN
1742-7061
1878-7568
Abstract
Chronic tympanic membrane (TM) perforation is a tubotympanic disease caused by either traumatic injury or inflammation. A recent study demonstrated significant progress in promoting the regeneration of chronic TM perforations through the application of nanofibers with radially aligned nanostructures and controlled release of growth factors. However, radially aligned nanostructures with stem cell-stimulating factors have never been used. In this study, insulin-like growth factor binding factor 2 (IGFBP2)-incorporated radially aligned nanofibrous patches (IRA-NFPs) were developed and applied to regenerate chronic TM perforations. The IRA-NFPs were prepared by electrospinning 8 wt% polycaprolactone in trifluoroethanol and acetic acid (9:1). Random nanofibers (RFs) and aligned nanofibers (AFs) were successfully fabricated using a flat plate and a custom-designed circular collector, respectively. The presence of IGFBP2 was confirmed via Fourier transform infrared spectroscopy and the release of IGFBP2 was sustained for up to 20 days. In vitro studies revealed enhanced cellular proliferation and migration on AFs compared to RFs, and the incorporation of IGFBP2 further promoted these effects. Quantitative real-time PCR revealed mRNA downregulation, correlating with accelerated migration and increased cell confluency. In vivo studies showed IGFBP2-loaded RF and AF patches increased regeneration success rates by 1.59-fold and 2.23-fold, respectively, while also reducing healing time by 2.5-fold compared to the control. Furthermore, IGFBP2-incorporated AFs demonstrated superior efficacy in healing larger perforations with enhanced histological similarity to native TMs. This study, combining stem cell stimulating factors and aligned nanostructures, proposes a novel approach potentially replacing conventional surgical methods for chronic TM perforation regeneration. Statement of significance: Chronic otitis media (COM) affects approximately 200 million people worldwide due to inflammation, inadequate blood supply, and lack of growth factors. Current surgical treatments have limitations like high costs and anesthetic risks. Recent research explored the use of nanofibers with radially aligned nanostructures and controlled release of growth factors to treat chronic tympanic membrane (TM) perforations. In this study, insulin-like growth factor binding protein 2 (IGFBP2)-incorporated radially aligned nanofibrous patches (IRA-NFPs) were developed and applied to regenerate chronic TM perforations. We assessed their properties and efficacy through in vitro and in vivo studies. IRA-NFPs showed promising healing capabilities with chronic TM perforation models. This innovative approach has the potential to improve COM management, reduce surgery costs, and enhance patient safety. © 2024 The Authors
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농업생명과학대학 (생물산업기계공학과)
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