Rickert Dorothee
University Hospital and Ambulance for Ear, Nose and Throat Diseases, Ulm, Germany.
GMS Curr Top Otorhinolaryngol Head Neck Surg. 2009;8:Doc06. doi: 10.3205/cto000058. Epub 2011 Mar 10.
The existing therapeutical options for the tracheal and pharyngeal reconstruction by use of implant materials are described. Inspite of a multitude of options and the availability of very different materials none of these methods applied for tracheal reconstruction were successfully introduced into the clinical routine. Essential problems are insufficiencies of anastomoses, stenoses, lack of mucociliary clearance and vascularisation. The advances in Tissue Engineering (TE) offer new therapeutical options also in the field of the reconstructive surgery of the trachea. In pharyngeal reconstruction far reaching developments cannot be recognized at the moment which would allow to give a prognosis of their success in clinical application. A new polymeric implant material consisting of multiblock copolymers was applied in our own work which was regarded as a promising material for the reconstruction of the upper aerodigestive tract (ADT) due to its physicochemical characteristics. In order to test this material for applications in the ADT under extreme chemical, enzymatical, bacterial and mechanical conditions we applied it for the reconstruction of a complete defect of the gastric wall in an animal model. In none of the animals tested either gastrointestinal complications or negative systemic events occurred, however, there was a multilayered regeneration of the gastric wall implying a regular structured mucosa.In future the advanced stem cell technology will allow further progress in the reconstruction of different kind of tissues also in the field of head and neck surgery following the principles of Tissue Engineering.
本文描述了使用植入材料进行气管和咽部重建的现有治疗方法。尽管有多种选择且有非常不同的材料可供使用,但这些用于气管重建的方法均未成功应用于临床常规治疗。主要问题包括吻合口不足、狭窄、缺乏黏液纤毛清除功能和血管化。组织工程(TE)的进展也为气管重建手术领域提供了新的治疗选择。目前在咽部重建方面尚未发现能预测其临床应用成功的重大进展。我们自己的工作中应用了一种由多嵌段共聚物组成的新型聚合物植入材料,由于其物理化学特性,该材料被认为是上消化道(ADT)重建的有前景的材料。为了在极端化学、酶、细菌和机械条件下测试这种材料在ADT中的应用,我们将其应用于动物模型中胃壁完全缺损的重建。在所有测试动物中均未出现胃肠道并发症或负面全身事件,然而,胃壁出现了多层再生,这意味着有规则结构的黏膜。未来,先进的干细胞技术将遵循组织工程原理,在头颈部手术领域的不同组织重建中取得进一步进展。