Duflo Suzy, Thibeault Susan L, Li Wenhua, Shu Xiao Zheng, Prestwich Glenn
Fédération d'Otorhinolaryngology, Head and Neck Surgery, Hôpital de la Timone, Marseille, France.
Tissue Eng. 2006 Nov;12(11):3201-7. doi: 10.1089/ten.2006.12.3201.
An improved understanding of molecular response in the vocal folds to a synthetic extracellular matrix (sECM) during early wound repair is essential for understanding functional improvement of the tissue and implementation of future tissue-engineering strategies. The present study used real-time reverse transcriptase polymerase chain reaction to measure transcript expression of selected markers (procollagen alpha 2 type I, fibronectin, fibromodulin, hyaluronan synthase 2, and hyaluronidase 2) in 20 rabbits that underwent vocal fold biopsy bilaterally. After the biopsy, Carbylan-GSX 5% was injected immediately into the left vocal fold, and saline was injected into the right vocal fold. Two unwounded normal rabbit larynges were also harvested. Animals were sacrificed at days 1, 3, 5, and 10 post-surgery. At days 1, 3, and 10, no significant differences were found between the Carbylan-GSX-treated and saline-treated groups. At day 5, significant differences in procollagen (p = 0.02), fibronectin (p = 0.02), and transforming growth factor beta1 (p = 0.02) between the Carbylan-GSX-treated and saline-treated groups were measured. The presence of a sECM in the wound bed during the early stages of repair amplified the normal rabbit vocal fold wound-healing response over a short period of time. This amplification provided an optimal environment for tissue regeneration and may lead to the recovery of the functional biomechanical properties of the vocal folds necessary for voice production.
深入了解声带在早期伤口修复过程中对合成细胞外基质(sECM)的分子反应,对于理解组织功能改善以及未来组织工程策略的实施至关重要。本研究采用实时逆转录聚合酶链反应,测量了20只双侧接受声带活检的兔子中选定标志物(I型前胶原α2、纤连蛋白、纤维调节素、透明质酸合酶2和透明质酸酶2)的转录本表达。活检后,立即向左侧声带注射5%的卡比兰 - GSX,向右侧声带注射生理盐水。还获取了两个未受伤的正常兔喉。在术后第1、3、5和10天处死动物。在第1、3和10天,卡比兰 - GSX治疗组和生理盐水治疗组之间未发现显著差异。在第5天,测量发现卡比兰 - GSX治疗组和生理盐水治疗组之间在前胶原(p = 0.02)、纤连蛋白(p = 0.02)和转化生长因子β1(p = 0.02)方面存在显著差异。在修复早期伤口床中存在sECM,在短时间内放大了正常兔声带的伤口愈合反应。这种放大为组织再生提供了最佳环境,并可能导致声带恢复发声所需的功能生物力学特性。