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Human Adipose Tissue Derived Extracellular Matrix and Methylcellulose Hydrogels Augments and Regenerates the Paralyzed Vocal Foldopen access

Authors
Kim, Dong WookKim, Eun JiKim, Eun NaSung, Myung WhunKwon, Tack-KyunCho, Yong WooKwon, Seong Keun
Issue Date
Oct-2016
Publisher
PUBLIC LIBRARY SCIENCE
Keywords
FAT INJECTION LARYNGOPLASTY; TERM FOLLOW-UP; XENOGRAFT MODEL; CORD PARALYSIS; SCAFFOLD; TRANSPLANTATION; STRATEGIES; DELIVERY; SURGERY
Citation
PLOS ONE, v.11, no.10, pp.1 - 13
Indexed
SCIE
SCOPUS
Journal Title
PLOS ONE
Volume
11
Number
10
Start Page
1
End Page
13
URI
https://scholarworks.bwise.kr/erica/handle/2021.sw.erica/12588
DOI
10.1371/journal.pone.0165265
ISSN
1932-6203
Abstract
Vocal fold paralysis results from various etiologies and can induce voice changes, swallowing complications, and issues with aspiration. Vocal fold paralysis is typically managed using injection laryngoplasty with fat or synthetic polymers. Injection with autologous fat has shown excellent biocompatibility. However, it has several disadvantages such as unpredictable resorption rate, morbidities associated with liposuction procedure which has to be done in operating room under general anesthesia. Human adipose-derived extracellular matrix (ECM) grafts have been reported to form new adipose tissue and have greater biostability than autologous fat graft. Here, we present an injectable hydrogel that is constructed from adipose tissue derived soluble extracellular matrix (sECM) and methylcellulose (MC) for use in vocal fold augmentation. Human sECM derived from adipose tissue was extracted using two major steps-ECM was isolated from human adipose tissue and was subsequently solubilized. Injectable sECM/MC hydrogels were prepared by blending of sECM and MC. Sustained vocal fold augmentation and symmetric vocal fold vibration were accomplished by the sECM/MC hydrogel in paralyzed vocal fold which were confirmed by laryngoscope, histology and a high-speed imaging system. There were increased number of collagen fibers and fatty granules at the injection site without significant inflammation or fibrosis. Overall, these results indicate that the sECM/MC hydrogel can enhance vocal function in paralyzed vocal folds without early resorption and has potential as a promising material for injection laryngoplasty for stable vocal fold augmentation which can overcome the shortcomings of autologous fat such as unpredictable duration and morbidity associated with the fat harvest.
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Cho, Yong Woo
ERICA 공학대학 (DEPARTMENT OF MATERIALS SCIENCE AND CHEMICAL ENGINEERING)
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