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Regenerative medicine of the larynx. where are we today? A review

机译:喉的再生医学。我们今天在哪里?回顾

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Tissue engineering is a multidimensional process combining cells, scaffold matrices, and chemical signals to produce a structure similar to a target tissue. These techniques have opened a completely new field in diagnosis and therapy in numerous fields, including that of laryngology. Laryngeal tissue engineering has emerged in the last decade, although clinical applications are rare. The reasons therefore are numerous including ethical reasons, as well as the extremely complex anatomical structure of the vocal fold. The search for new treatment options has also enlarged our knowledge about the microphysiology and micropathophysiology of the vocal fold. To date, only specific growth factors are in clinical use for treatment of vocal fold atrophy. Big advances have been made in creating state-of-the-art scaffolds with various techniques including biomaterials as well as fully synthetic polymers. These scaffolds are supposed to provide an optimal environment for residual or implanted cells. Several in vitro settings showed practicability of these scaffolds, also in studying effects of growth factors. Cell therapy is a powerful tool in regenerative medicine but bears the uncertainty of possible malignant transformation. The aim of this review was to give a comprehensive overview about current knowledge in the field of laryngeal tissue engineering and regenerative medicine, including restoration of both vocal folds and laryngeal cartilage, and furthermore to elucidate further trends in this fascinating field.
机译:组织工程是一个多维过程,将细胞,支架基质和化学信号结合在一起,产生与靶组织相似的结构。这些技术为包括喉科学在内的许多领域的诊断和治疗开辟了一个全新的领域。尽管临床应用很少,但是在最近十年中出现了喉组织工程学。因此,原因很多,包括伦理原因,以及声带的极其复杂的解剖结构。寻找新的治疗选择还扩大了我们对声带的微生理学和微病理生理学的认识。迄今为止,只有特定的生长因子才在临床上用于治疗声带萎缩。在使用各种技术(包括生物材料以及完全合成的聚合物)制造最先进的脚手架方面,已经取得了重大进展。这些支架应该为残留或植入的细胞提供最佳环境。几种体外环境显示了这些支架的实用性,也用于研究生长因子的作用。细胞疗法是再生医学的有力工具,但具有可能发生恶性转化的不确定性。这篇综述的目的是对喉组织工程和再生医学领域的当前知识进行全面的综述,包括声带和喉软骨的修复,并进一步阐明这一令人着迷的领域的进一步趋势。

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