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基于磷脂酰丝氨酸涂层的骨整合潜力的体内评估。

In vivo assessment of the osteointegrative potential of phosphatidylserine-based coatings.

作者信息

Merolli A, Bosetti M, Giannotta L, Lloyd A W, Denyer S P, Rhys-Williams W, Love W G, Gabbi C, Cacchioli A, Leali P Tranquilli, Cannas M, Santin M

机构信息

Universita' Cattolica, Clinica Ortopedica, Rome, Italy.

出版信息

J Mater Sci Mater Med. 2006 Sep;17(9):789-94. doi: 10.1007/s10856-006-9836-z.

Abstract

The successful implantation of titanium-based implants for orthopaedic and dental applications is often hindered because of their mobility, which arises because of a lack of direct binding of the metal surface to the mineral phase of the surrounding bone. Ceramic coatings, although ensuring the integration of the implant within the tissue, are unstable and carry risks of delamination and of failure. Recently, a novel biomimetic approach has been developed where porous titanium implants are coated with calcium-binding phospholipids able to catalyse the nucleation of discrete apatite crystals after only 30 min incubation in simulated body fluids. The present work assesses the osteointegrative potential of this new class of coatings in an in vivo rabbit model and compares its performance with those of bare porous titanium and hydroxyapatite-coated titanium. The data obtained show that phosphatidylserine-based coatings, whilst resorbing, drive the growing bone into apposition with the metal surface. This is in contrast to the case of bare titanium.

摘要

用于骨科和牙科的钛基植入物的成功植入常常受到阻碍,这是因为它们会移动,而移动的原因是金属表面与周围骨的矿化相缺乏直接结合。陶瓷涂层虽然能确保植入物与组织整合,但不稳定,存在分层和失效风险。最近,一种新型的仿生方法被开发出来,即对多孔钛植入物进行钙结合磷脂涂层处理,在模拟体液中孵育仅30分钟后,这种涂层就能催化离散磷灰石晶体的成核。本研究在体内兔模型中评估了这类新型涂层的骨整合潜力,并将其性能与裸露的多孔钛和羟基磷灰石涂层钛的性能进行了比较。获得的数据表明,基于磷脂酰丝氨酸的涂层在吸收的同时,能促使生长的骨与金属表面贴合。这与裸露钛的情况形成对比。

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