耳鼻喉科对聚合生物材料的当前要求。

Katrin Sternberg
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引用次数: 0

摘要

近年来,耳鼻喉科受到新开发的植入物的强烈影响,这些植入物基于创新的生物材料和新型植入技术。由于生物材料是生物系统的组成部分,因此必须满足所有技术要求并适应生物相互作用。与植入物特定机械性能有关的技术功能、在生理条件下足够高的稳定性以及良好的生物相容性是对生物材料适用性的要求。将生物材料应用于植入物的目标是在较长时间内保持生物功能。这些对生物材料的一般要求同样适用于耳鼻喉科。不同种类的材料可用作生物材料。金属属于最古老的生物材料。此外,合金、陶瓷、无机玻璃和复合材料也已成功通过测试。此外,天然和合成聚合物也是广泛使用的材料,本文将重点介绍它们的特性以及作为耳蜗植入物、骨合成植入物、支架和组织工程基质的用途。由于可用作永久性或临时性植入物,材料可分为生物稳定性聚合物和生物可降解聚合物。这里确定的对生物材料的一般和最新要求,以及在耳鼻喉科中的应用说明,强调了该领域正在进行的研究工作,同时也证明了自然科学、工程学和医学科学之间跨学科合作的重要意义。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Current requirements for polymeric biomaterials in otolaryngology.

Current requirements for polymeric biomaterials in otolaryngology.

Current requirements for polymeric biomaterials in otolaryngology.

Current requirements for polymeric biomaterials in otolaryngology.

In recent years otolaryngology was strongly influenced by newly developed implants which are based on both, innovative biomaterials and novel implant technologies. Since the biomaterials are integrated into biological systems they have to fulfill all technical requirements and accommodate biological interactions. Technical functionality relating to implant specific mechanical properties, a sufficiently high stability in terms of physiological conditions, and good biocompatibility are the demands with regard to suitability of biomaterials. The goal in applying biomaterials for implants is to maintain biofunctionality over extended periods of time. These general demands to biomaterials are equally valid for use in otolaryngology. Different classes of materials can be utilized as biomaterials. Metals belong to the oldest biomaterials. In addition, alloys, ceramics, inorganic glasses and composites have been tested successfully. Furthermore, natural and synthetic polymers are widely used materials, which will be in the focus of the current article with regard to their properties and usage as cochlear implants, osteosynthesis implants, stents, and matrices for tissue engineering. Due to their application as permanent or temporary implants materials are differentiated into biostable and biodegradable polymers. The here identified general and up to date requirements for biomaterials and the illustrated applications in otolaryngology emphasize ongoing research efforts in this area and at the same time demonstrate the high significance of interdisciplinary cooperation between natural sciences, engineering, and medical sciences.

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