Athanasiou K A, Niederauer G G, Agrawal C M
Department of Orthopedics, University of Texas Health Science Center, San Antonio 78284-7774, USA.
Biomaterials. 1996 Jan;17(2):93-102. doi: 10.1016/0142-9612(96)85754-1.
This is a review of salient studies of sterilization, toxicity, biocompatibility, clinical applications and current work in the field of orthopaedics, using implants made of polylactic acid (PLA), polyglycolic acid (PGA) and their copolymers. The intrinsic nature of these biomaterials renders them suitable for applications where temporally slow releases of bioactive agents in situ may be required. They are also desirable as fixation devices of bone, because they can virtually eliminate osteopenia associated with stress shielding or additional surgery. The majority of currently available sterilization techniques are not suitable for these thermoplastic materials and it may be desirable to develop new sterilization standards, which can account for the special character of PLA-PGA materials. Biocompatibility and toxicity studies suggest that, overall, PLA-PGA biomaterials may be suitable for orthopaedic applications, although certain problems, especially pertaining to reduction in cell proliferation, have been reported. Clinical applications are also promising, albeit not without problems usually associated with transient tissue inflammation. The future of these materials appears bright, especially in soft tissues. They may be used to address the exceedingly complex problem of osteochondral repair, but also as a means to enhance fixation and repair processes in tendons and ligaments.
本文综述了使用聚乳酸(PLA)、聚乙醇酸(PGA)及其共聚物制成的植入物在骨科领域的灭菌、毒性、生物相容性、临床应用及当前研究工作的重要研究。这些生物材料的内在特性使其适用于可能需要生物活性剂在原位缓慢释放的应用。它们也适合作为骨固定装置,因为它们几乎可以消除与应力遮挡或额外手术相关的骨质减少。目前大多数可用的灭菌技术不适用于这些热塑性材料,可能需要制定新的灭菌标准,以考虑PLA - PGA材料的特殊性质。生物相容性和毒性研究表明,总体而言,PLA - PGA生物材料可能适用于骨科应用,尽管已报告了某些问题,特别是与细胞增殖减少有关的问题。临床应用也很有前景,尽管通常会出现与短暂组织炎症相关的问题。这些材料的未来前景光明,尤其是在软组织方面。它们可用于解决极其复杂的骨软骨修复问题,也可作为增强肌腱和韧带固定及修复过程的一种手段。