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用于全髋关节置换的聚乙二醇样涂层的微观磨损行为和交联。

Microscale wear behavior and crosslinking of PEG-like coatings for total hip replacements.

机构信息

Joint Graduate Group in Bioengineering, UC San Francisco and UC Berkeley, Berkeley, CA 94720, USA.

出版信息

J Mater Sci Mater Med. 2010 Apr;21(4):1037-45. doi: 10.1007/s10856-009-3935-6. Epub 2009 Dec 20.

Abstract

The predominant cause of late-state failure of total hip replacements is wear-mediated osteolysis caused by wear particles that originate from the ultrahigh molecular weight polyethylene (UHMWPE) acetabular cup surface. One strategy for reducing wear particle formation from UHMWPE is to modify the surface with a hydrophilic coating to increase lubrication from synovial fluid. This study focuses on the wear behavior of hydrophilic coatings similar to poly(ethylene glycol) (PEG). The coatings were produced by plasma-polymerizing tetraglyme on UHMWPE in a chamber heated to 40 degrees C or 50 degrees C. Both temperatures yielded coatings with PEG-like chemistry and increased hydrophilicity relative to uncoated UHMWPE; however, the 40 degrees C coatings were significantly more resistant to damage induced by atomic force microscopy nanoscratching. The 40 degrees C coatings exhibited only one damage mode (delamination) and often showed no signs of damage after repeated scratching. In contrast, the 50 degrees C coatings exhibited three damage modes (roughening, thinning, and delamination), and always showed visible signs of damage after no more than two scratches. The greater wear resistance of the 40 degrees C coatings could not be explained by coating chemistry or hydrophilicity, but it corresponded to an approximately 26-32% greater degree of crosslinking relative to the 50 degrees C surfaces, suggesting that crosslinking should be a significant design consideration for hydrophilic coatings used for total hip replacements and other wear-dependent applications.

摘要

全髋关节置换术后晚期失效的主要原因是由源自超高分子量聚乙烯(UHMWPE)髋臼杯表面的磨屑引起的磨损介导的骨溶解。减少 UHMWPE 磨屑形成的一种策略是用亲水性涂层修饰表面,以增加来自滑液的润滑。本研究关注类似于聚乙二醇(PEG)的亲水性涂层的磨损行为。涂层是通过在加热至 40°C 或 50°C 的腔室中等离子聚合四甘醇在 UHMWPE 上制备的。两种温度都得到了具有 PEG 类似化学性质和相对于未涂层 UHMWPE 增加亲水性的涂层;然而,40°C 涂层对原子力显微镜纳米划痕引起的损伤更具抵抗力。40°C 涂层仅表现出一种损伤模式(分层),并且在重复划痕后通常没有损伤的迹象。相比之下,50°C 涂层表现出三种损伤模式(粗糙化、变薄和分层),并且在不超过两次划痕后总是显示出明显的损伤迹象。40°C 涂层的更高耐磨性不能用涂层化学性质或亲水性来解释,但与 50°C 表面相比,交联度约增加了 26-32%,这表明交联度应该是用于全髋关节置换术和其他磨损相关应用的亲水性涂层的一个重要设计考虑因素。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/10c8/2848970/5cd85adb3cc5/10856_2009_3935_Fig1_HTML.jpg

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