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磷酸三钙与聚(L,DL-丙交酯)制成的复合销钉的降解行为

Degradation behavior of composite pins made of tricalcium phosphate and poly(L,DL-lactide).

作者信息

Ignatius A A, Augat P, Claes L E

机构信息

Institute of Orthopaedic Research and Biomechanics, University of Ulm, Germany.

出版信息

J Biomater Sci Polym Ed. 2001;12(2):185-94. doi: 10.1163/156856201750180915.

Abstract

Combining a bioactive ceramic with a resorbable polymer may improve the biocompatibility and the osseointegration of degradable fracture fixation devices. This study reports on the mechanical properties and degradation behavior of two composite pins made of poly(L,DL-lactide) and 10 and 30% beta-tricalcium phosphate (TCP), respectively. The pins were compared to a pin made of 100% poly(L,DL-lactide). The failure force, bending strength, and molecular weight were determined during in vitro degradation at 37 degrees C up to 78 weeks. The blending with 10 or 30% beta-TCP decreased the initial mechanical properties and led to an accelerated degradation rate. The pins with 30% TCP lost half of their strength after 16 weeks, i.e. faster than the unmodified pin (40 weeks). The pins with 10% TCP, however, showed a decreased initial strength (128+/-9 MPa) compared to the unmodified pin (152+/-9 MPa) but very similar degradation characteristics. The drop of the molecular weight was not significantly different between the three types of pins. It was concluded that the mechanical requirements for a pin for the fixation of small bony fragments with improved biocompatibility were fulfilled by the composite pin with 10% TCP but not by the pin with 30% TCP.

摘要

将生物活性陶瓷与可吸收聚合物相结合,可能会提高可降解骨折固定装置的生物相容性和骨整合能力。本研究报告了分别由聚(L,DL-丙交酯)与10%和30%的β-磷酸三钙(TCP)制成的两种复合销钉的力学性能和降解行为。将这些销钉与由100%聚(L,DL-丙交酯)制成的销钉进行比较。在37℃下进行体外降解长达78周的过程中,测定了失效力、弯曲强度和分子量。与10%或30%的β-TCP混合会降低初始力学性能,并导致降解速率加快。含30%TCP的销钉在16周后强度损失了一半,即比未改性的销钉(40周)更快。然而,含10%TCP的销钉与未改性的销钉(152±9MPa)相比,初始强度有所降低(128±9MPa),但降解特性非常相似。三种类型的销钉之间分子量的下降没有显著差异。得出的结论是,含10%TCP的复合销钉满足了固定小骨碎片且生物相容性得到改善的销钉的力学要求,而含30%TCP的销钉则不满足。

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