Zhang Qiang, Qian Chunyu, Xiao Wanshu, Zhu Huajun, Guo Jun, Ge Zili, Cui Wenguo
Department of Oral and Maxillofacial Surgery, The First Affiliated Hospital of Soochow University, Soochow University 188 Shizi St Suzhou Jiangsu 215006 P. R. China
Department of Maxillofacial Surgery, The Affiliated Hospital of Yangzhou University, Yangzhou University 368 Hanjiang Middle Road Yangzhou Jiangsu 225000 P. R. China.
RSC Adv. 2019 Jun 11;9(32):18344-18352. doi: 10.1039/c9ra03009c. eCollection 2019 Jun 10.
Early effective treatment of oral mucosal defects is the key to ensuring defect healing and functional recovery. The application of human amniotic membrane (HAM) in promoting wound healing has been shown to be safe and effective. However, amniotic membrane is thin, easy to tear and difficult to handle. Combined with the natural forces at play in the oral cavity, this has restricted the clinical applications of HAM for healing of mucosal defects. Methacrylated gelatin (GelMA) has good mechanical strength and adhesion, and can be used as a bionic repair film to attach to the damaged surface of oral mucosa, but GelMA lacks bioactive substances and cannot promote the rapid repair of oral mucosal defects. The aim of this study was to design a type of composite GelMA hydrogel mixed with decellularized human amniotic particles (dHAP) as an oral mucosa substitute, to promote regeneration of defective mucosa by stimulating rapid angiogenesis. The composite substitute GelMA-dHAP was easy to synthesize and store, and easy to operate for repair of oral mucosal defects. We show the angiogenic potential of GelMA-dHAP on chick chorioallontoic membrane and the curative effect of GelMA-dHAP as a treatment in the rabbit oral mucosa defect model. In conclusion, this study confirms the effectiveness of GelMA-dHAP as an ideal soft tissue substitute for the repair of oral mucosal defects, overcoming the shortcomings of using HAM or GelMA alone.
早期有效治疗口腔黏膜缺损是确保缺损愈合和功能恢复的关键。人羊膜(HAM)在促进伤口愈合中的应用已被证明是安全有效的。然而,羊膜薄,容易撕裂且难以操作。结合口腔内的自然作用力,这限制了HAM在黏膜缺损愈合方面的临床应用。甲基丙烯酸化明胶(GelMA)具有良好的机械强度和粘附性,可作为仿生修复膜附着于口腔黏膜受损表面,但GelMA缺乏生物活性物质,无法促进口腔黏膜缺损的快速修复。本研究的目的是设计一种混合去细胞人羊膜颗粒(dHAP)的复合GelMA水凝胶作为口腔黏膜替代物,通过刺激快速血管生成来促进缺损黏膜的再生。复合替代物GelMA-dHAP易于合成和储存,且在修复口腔黏膜缺损时易于操作。我们展示了GelMA-dHAP在鸡胚绒毛尿囊膜上的血管生成潜力以及GelMA-dHAP作为治疗方法在兔口腔黏膜缺损模型中的疗效。总之,本研究证实了GelMA-dHAP作为修复口腔黏膜缺损的理想软组织替代物的有效性,克服了单独使用HAM或GelMA的缺点。