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聚乳酸-聚乙醇酸共聚物生物可降解聚合物在骨科领域的应用

Orthopaedic applications for PLA-PGA biodegradable polymers.

作者信息

Athanasiou K A, Agrawal C M, Barber F A, Burkhart S S

机构信息

Department of Orthopaedics, The University of Texas Health Sciences Center at San Antonio, 78284-7774, USA.

出版信息

Arthroscopy. 1998 Oct;14(7):726-37. doi: 10.1016/s0749-8063(98)70099-4.

Abstract

Biodegradable polymers, especially those belonging to the family of polylactic acid (PLA) and polyglycolic acid (PGA), play an increasingly important role in orthopaedics. These polymers degrade by hydrolysis and enzymatic activity and have a range of mechanical and physical properties that can be engineered appropriately to suit a particular application. Their degradation characteristics depend on several parameters including their molecular structure, crystallinity, and copolymer ratio. These biomaterials are also rapidly gaining recognition in the fledging field of tissue engineering because they can be fashioned into porous scaffolds or carriers of cells, extracellular matrix components, and bioactive agents. Although their future appears to be bright, several questions regarding the biocompatibility of these materials linger and should be addressed before their wide-scale use. In the context of musculoskeletal tissue, this report provides a comprehensive review of properties and applications of biodegradable PLA/PGA polymers and their copolymers. Of special interest are orthopaedic applications, biocompatibility studies, and issues of sterilization and storage of these versatile biomaterials. Also discussed is the fact that terms such as PLA, PGA, or PLA-PGA do not denote one material, but rather a large family of materials that have a wide range of differing bioengineering properties and concomitant biological responses. An analysis of some misconceptions, problems, and potential solutions is also provided.

摘要

可生物降解聚合物,尤其是聚乳酸(PLA)和聚乙醇酸(PGA)家族的聚合物,在骨科领域发挥着越来越重要的作用。这些聚合物通过水解和酶活性降解,具有一系列机械和物理性能,可进行适当设计以适应特定应用。它们的降解特性取决于几个参数,包括分子结构、结晶度和共聚物比例。这些生物材料在新兴的组织工程领域也迅速获得认可,因为它们可以制成多孔支架或细胞、细胞外基质成分和生物活性剂的载体。尽管它们的前景似乎光明,但关于这些材料生物相容性的几个问题仍然存在,在其广泛应用之前应予以解决。在肌肉骨骼组织的背景下,本报告全面综述了可生物降解的PLA/PGA聚合物及其共聚物的性能和应用。特别感兴趣的是骨科应用、生物相容性研究以及这些多功能生物材料的灭菌和储存问题。还讨论了PLA、PGA或PLA-PGA等术语并不表示一种材料,而是一大类具有广泛不同生物工程特性和相应生物学反应的材料这一事实。此外,还对一些误解、问题和潜在解决方案进行了分析。

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