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The effect of cationically-modified phosphorylcholine polymers on human osteoblasts in vitro and their effect on bone formation in vivo

机译:阳离子改性的磷酸胆碱聚合物在体外对人成骨细胞的影响及其对体内骨形成的影响

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摘要

AbstractThe effect of introducing cationic charge into phosphorylcholine (PC)-based polymers has been investigated in this study with a view to using these materials as coatings to improve bone formation and osseointegration at the bone-implant interface. PC-based polymers, which have been used in a variety of medical devices to improve biocompatibility, are associated with low protein adsorption resulting in reduced complement activation, inflammatory response and cell adhesion. However, in some applications, such as orthopaedics, good integration between the implant and bone is needed to allow the distribution of loading stresses and a bioactive response is required. It has previously been shown that the incorporation of cationic charge into PC-based polymers may increase protein adsorption that stimulates subsequent cell adhesion. In this paper, the effect of cationic charge in PC-based polymers on human osteoblasts (HObs) in vitro and the effect of these polymers on bone formation in the rat tibia was assessed. Increasing PC positive surface charge increased HOb cell adhesion and stimulated increased cell differentiation and the production of calcium phosphate deposits. However, when implanted in bone these materials were at best biotolerant, stimulating the production of fibrous tissue and areas of loosely associated matrix (LAM) around the implant. Their development, as formulated in this study, as bone interfacing implant coatings is therefore not warranted.
机译:摘要在这项研究中,已经研究了将阳离子电荷引入基于磷酸胆碱(PC)的聚合物中的效果,以期将这些材料用作涂层来改善骨-植入物界面处的骨形成和骨整合。基于PC的聚合物已用于多种医疗设备中,以改善生物相容性,与低蛋白吸附有关,从而导致补体激活,炎症反应和细胞粘附降低。但是,在某些应用中,例如骨科,需要在植入物和骨骼之间实现良好的整合,以实现负载应力的分布,并且需要生物活性反应。以前已经表明,将阳离子电荷掺入PC基聚合物中可以增加蛋白质吸附,从而刺激随后的细胞粘附。在本文中,评估了PC基聚合物中阳离子电荷对人成骨细胞(HObs)的影响以及这些聚合物对大鼠胫骨骨形成的影响。 PC正表面电荷的增加会增加HOb细胞的粘附力,并刺激细胞分化程度的增加和磷酸钙沉积物的产生。然而,当植入骨中时,这些材料至多具有生物耐受性,从而刺激了纤维组织的产生以及植入物周围松散结合的基质(LAM)的区域。因此,不保证如本研究中所述的那样将其作为骨界面植入物涂层的发展。

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