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人工关节软骨的研发

Development of artificial articular cartilage.

作者信息

Oka M, Ushio K, Kumar P, Ikeuchi K, Hyon S H, Nakamura T, Fujita H

机构信息

Department of Tissue Regeneration, Institute for Frontier Medical Science, Kyoto University, Japan.

出版信息

Proc Inst Mech Eng H. 2000;214(1):59-68. doi: 10.1243/0954411001535246.

Abstract

Attempts have been made to develop an artificial articular cartilage on the basis of a new viewpoint of joint biomechanics in which the lubrication and load-bearing mechanisms of natural and artificial joints are compared. Polyvinyl alcohol hydrogel (PVA-H), 'a rubber-like gel', was investigated as an artificial articular cartilage and the mechanical properties of this gel were improved through a new synthetic process. In this article the biocompatibility and various mechanical properties of the new improved PVA-H is reported from the perspective of its usefulness as an artificial articular cartilage. As regards lubrication, the changes in thickness and fluid pressure of the gap formed between a glass plate and the specimen under loading were measured and it was found that PVA-H had a thicker fluid film under higher pressures than polyethylene (PE) did. The momentary stress transmitted through the specimen revealed that PVA-H had a lower peak stress and a longer duration of sustained stress than PE, suggesting a better damping effect. The wear factor of PVA-H was approximately five times that of PE. Histological studies of the articular cartilage and synovial membranes around PVA-H implanted for 8-52 weeks showed neither inflammation nor degenerative changes. The artificial articular cartilage made from PVA-H could be attached to the underlying bone using a composite osteochondral device made from titanium fibre mesh. In the second phase of this work, the damage to the tibial articular surface after replacement of the femoral surface in dogs was studied. Pairs of implants made of alumina, titanium or PVA-H on titanium fibre mesh were inserted into the femoral condyles. The two hard materials caused marked pathological changes in the articular cartilage and menisci, but the hydrogel composite replacement caused minimal damage. The composite osteochondral device became rapidly attached to host bone by ingrowth into the supporting mesh. The clinical implications of the possible use of this material in articular resurfacing and joint replacement are discussed.

摘要

基于关节生物力学的新观点,人们尝试开发人工关节软骨,该观点对天然和人工关节的润滑及承重机制进行了比较。聚乙烯醇水凝胶(PVA-H),一种“橡胶状凝胶”,被作为人工关节软骨进行研究,并且通过一种新的合成工艺改善了这种凝胶的机械性能。本文从其作为人工关节软骨的实用性角度,报道了新型改良PVA-H的生物相容性和各种机械性能。关于润滑,测量了加载时玻璃板与试样之间形成的间隙的厚度和流体压力变化,发现PVA-H在较高压力下比聚乙烯(PE)具有更厚的流体膜。通过试样传递的瞬时应力表明,PVA-H的峰值应力比PE低,持续应力持续时间更长,这表明其具有更好的阻尼效果。PVA-H的磨损系数约为PE的五倍。对植入PVA-H 8 - 52周的关节软骨和滑膜进行组织学研究,未发现炎症或退行性变化。由PVA-H制成的人工关节软骨可以使用由钛纤维网制成的复合骨软骨装置附着到下面的骨头上。在这项工作的第二阶段,研究了狗的股骨表面置换后胫骨关节面的损伤情况。将由氧化铝、钛或钛纤维网上的PVA-H制成的成对植入物插入股骨髁。两种硬质材料在关节软骨和半月板中引起了明显的病理变化,但水凝胶复合材料置换造成的损伤最小。复合骨软骨装置通过长入支撑网迅速附着到宿主骨上。讨论了这种材料在关节表面置换和关节置换中可能应用的临床意义。

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