Biomedical Engineering, The School of Biomedical Engineering, Purdue University, West Lafayette, Indiana, USA.
J Voice. 2011 Mar;25(2):254-7. doi: 10.1016/j.jvoice.2009.09.006. Epub 2010 Feb 19.
Collagen influences the biomechanical properties of vocal folds. Altered collagen morphology has been implicated in dysphonia associated with aging and scarring. Documenting the morphological properties of native collagen in healthy vocal folds is essential to understand the structural and functional alterations to collagen with aging and disease. Our primary objective was to quantify the morphological properties of collagen in the vocal fold lamina propria. Our secondary exploratory objective was to investigate the effects of pepsin exposure on the morphological properties of collagen in the lamina propria.
Experimental, in vitro study with porcine model.
Lamina propria was dissected from 26 vocal folds and imaged with atomic force microscopy (AFM). Morphological data on d-periodicity, diameter, and roughness of collagen fibers were obtained. To investigate the effects of pepsin exposure on collagen morphology, vocal fold surface was exposed to pepsin or sham challenge before lamina propria dissection and AFM imaging.
The d-periodicity, diameter, and roughness values for native vocal fold collagen are consistent with literature reports of collagen fibers in other body tissues. Pepsin exposure on vocal fold surface did not appear to change the morphological properties of collagen fibers in the lamina propria.
Quantitative data on collagen morphology were obtained at nanoscale resolution. Documenting collagen morphology in healthy vocal folds is critical for understanding the physiological changes to collagen with aging and scarring and for designing biomaterials that match the native topography of lamina propria.
胶原蛋白会影响声带的生物力学特性。胶原蛋白形态的改变与衰老和瘢痕相关的发声障碍有关。记录健康声带固有胶原蛋白的形态特性对于理解胶原蛋白随年龄和疾病发生的结构和功能改变至关重要。我们的主要目的是定量评估声带固有层中胶原蛋白的形态特性。我们的次要探索目的是研究胃蛋白酶暴露对固有层中胶原蛋白形态特性的影响。
采用猪模型的体外实验研究。
从 26 个声带中分离固有层,并通过原子力显微镜(AFM)进行成像。获得胶原蛋白纤维的 d-周期性、直径和粗糙度的形态学数据。为了研究胃蛋白酶暴露对胶原蛋白形态的影响,在固有层解剖和 AFM 成像之前,对声带表面进行胃蛋白酶或假处理。
天然声带胶原蛋白的 d-周期性、直径和粗糙度值与其他身体组织中胶原蛋白纤维的文献报道一致。胃蛋白酶暴露于声带表面似乎不会改变固有层中胶原蛋白纤维的形态特性。
在纳米尺度分辨率下获得了胶原蛋白形态的定量数据。记录健康声带的胶原蛋白形态对于理解胶原蛋白随衰老和瘢痕的生理变化以及设计与固有层拓扑结构相匹配的生物材料至关重要。