Department Otolaryngology-Head and Neck Surgery, NYU Voice Center, New York University, New York, New York, USA.
Laryngoscope. 2012 Dec;122 Suppl 5(Suppl 5):S107-25. doi: 10.1002/lary.23735.
OBJECTIVES/HYPOTHESIS: To characterize fundamental late tissue effects in the human vocal fold following radiation therapy. To develop a murine model of radiation fibrosis in order to ultimately develop both treatment and prevention paradigms.
Translational study using archived human and fresh murine irradiated vocal fold tissue.
Human irradiated vocal folds demonstrated increased collagen transcription, with increased deposition and disorganization of collagen in both the thyroarytenoid muscle and the superficial lamina propria. Fibronectin were increased in the superficial lamina propria. Laminin decreased in the thyroarytenoid muscle. Whole genome microarray analysis demonstrated increased transcription of markers for fibrosis, oxidative stress, inflammation, glycosaminoglycan production, and apoptosis. Irradiated murine vocal folds demonstrated increases in collagen and fibronectin transcription and deposition in the lamina propria. Transforming growth factor (TGF)-β increased in the lamina propria.
Human irradiated vocal folds demonstrate molecular changes leading to fibrosis that underlie loss of vocal fold pliability occurring in patients following laryngeal irradiation. The irradiated murine tissue demonstrates similar findings, and this mouse model may have utility in creating prevention and treatment strategies for vocal fold radiation fibrosis.
目的/假设:描述人类声带接受放射治疗后的基本晚期组织效应。建立一个用于辐射纤维化的小鼠模型,最终开发出治疗和预防方案。
使用存档的人类和新鲜的辐射处理的鼠声带组织进行转化研究。
1)从因辐射纤维化而导致功能丧失而接受喉切除术的患者的病理档案中鉴定出辐射性声带组织。进行组织形态计量学、免疫组织化学和全基因组微阵列分析,以及实时转录分析。2)以生存方式对头颈进行聚焦辐射。在辐射后 1 个月,通过组织形态计量学、免疫组织化学和实时 PCR 转录分析,分析声带组织中纤维化的选定标志物。
人类受照射的声带显示出胶原转录增加,甲状腺杓状肌和浅层固有层中的胶原沉积和结构紊乱增加。纤连蛋白在浅层固有层中增加。层粘连蛋白在甲状腺杓状肌中减少。全基因组微阵列分析显示纤维化、氧化应激、炎症、糖胺聚糖产生和细胞凋亡的标志物转录增加。受照射的鼠声带显示在固有层中胶原和纤连蛋白转录和沉积增加。转化生长因子(TGF)-β在固有层中增加。
人类受照射的声带显示出导致纤维化的分子变化,这是喉照射后患者声带柔韧性丧失的基础。受照射的鼠组织显示出相似的发现,这种小鼠模型可能对开发预防和治疗声带辐射纤维化的策略有用。