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首页> 外文期刊>The Annals of otology, rhinology, and laryngology >Assessment of canine vocal fold function after injection of a new biomaterial designed to treat phonatory mucosal scarring.
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Assessment of canine vocal fold function after injection of a new biomaterial designed to treat phonatory mucosal scarring.

机译:注射设计用于治疗声带黏膜瘢痕的新型生物材料后,评估犬的声带折叠功能。

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OBJECTIVES: Most cases of irresolvable hoarseness are due to deficiencies in the pliability and volume of the superficial lamina propria of the phonatory mucosa. By using a US Food and Drug Administration-approved polymer, polyethylene glycol (PEG), we created a novel hydrogel (PEG30) and investigated its effects on multiple vocal fold structural and functional parameters. METHODS: We injected PEG30 unilaterally into 16 normal canine vocal folds with survival times of 1 to 4 months. High-speed videos of vocal fold vibration, induced by intratracheal airflow, and phonation threshold pressures were recorded at 4 time points per subject. Three-dimensional reconstruction analysis of 11.7 T magnetic resonance images and histologic analysis identified 3 cases wherein PEG30 injections were the most superficial, so as to maximally impact vibratory function. These cases were subjected to in-depth analyses. RESULTS: High-speed video analysis of the 3 selected cases showed minimal to no reduction in the maximum vibratory amplitudes of vocal folds injected with PEG30 compared to the non-injected, contralateral vocal fold. All PEG30-injected vocal folds displayed mucosal wave activity with low average phonation threshold pressures. No significant inflammation was observed on microlaryngoscopic examination. Magnetic resonance imaging and histologic analyses revealed time-dependent resorption of the PEG30 hydrogel by phagocytosis with minimal tissue reaction or fibrosis. CONCLUSIONS: The PEG30 hydrogel is a promising biocompatible candidate biomaterial to restore form and function to deficient phonatory mucosa, while not mechanically impeding residual endogenous superficial lamina propria.
机译:目的:大多数无法解决的声音嘶哑的情况是由于声带黏膜浅层固有层的柔韧性和体积不足所致。通过使用美国食品药品监督管理局批准的聚合物聚乙二醇(PEG),我们创建了一种新型水凝胶(PEG30),并研究了其对多个声带结构和功能参数的影响。方法:我们单侧将PEG30注射到16条正常犬的声带中,存活时间为1-4个月。在每个对象的4个时间点记录由气管内气流引起的声带振动和发声阈值压力的高速视频。对11.7 T磁共振图像进行三维重建分析和组织学分析,发现3例PEG30注射最浅,从而最大程度地影响了振动功能。这些案例进行了深入的分析。结果:对3例选定病例的高速视频分析显示,与未注射的对侧声带相比,注射PEG30的声带的最大振动幅度几乎没有减小或没有减小。所有PEG30注射的声带均表现出具有低平均发声阈值压力的粘膜波活动。在显微喉镜检查中未观察到明显的炎症。磁共振成像和组织学分析显示,吞噬作用使PEG30水凝胶具有时间依赖性吸收,且组织反应或纤维化程度最小。结论:PEG30水凝胶是一种有前途的生物相容性候选生物材料,可恢复缺乏的声带粘膜的形式和功能,同时不会机械性地阻碍残留的内源性浅表固有层。

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