Biomaterial-enabled de novo formation of non-fibrotic tissue in situ would provide an important tool to physicians. One example application, glottic insufficiency, is a debilitating laryngeal disorder wherein vocal folds do not fully close, resulting in difficulty speaking and swallowing. Preferred management of glottic insufficiency includes bulking of vocal folds via injectable fillers, however, the current options have associated drawbacks including inflammation, accelerated resorption, and foreign body response. We developed a novel iteration of microporous annealed particle (MAP) scaffold designed to provide persistent augmentation. Following a 14-month study of vocal fold augmentation using a rabbit vocal paralysis model, most MAP scaffolds were replaced with tissue de novo that matched the mixture of fibrotic and non-fibrotic collagens of the contralateral vocal tissue. Further, persistent tissue augmentation in MAP-treated rabbits was observed via MRI and via superior vocal function at 14 months relative to the clinical standard.
De novo tissue formation using custom microporous annealed particle hydrogel provides long-term vocal fold augmentation.
利用定制的微孔退火颗粒水凝胶进行新生组织形成,可实现声带的长期增强
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作者:Pruett Lauren J, Kenny Hannah L, Swift William M, Catallo Katarina J, Apsel Zoe R, Salopek Lisa S, Scumpia Philip O, Cottler Patrick S, Griffin Donald R, Daniero James J
| 期刊: | npj Regenerative Medicine | 影响因子: | 6.500 |
| 时间: | 2023 | 起止号: | 2023 Feb 23; 8(1):10 |
| doi: | 10.1038/s41536-023-00281-8 | ||
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