首页> 外文期刊>Journal of biomedical materials research. Part B, Applied biomaterials. >Biomimetic Ca-P coatings incorporating bisphosphonates produced on starch-based degradable biomaterials.
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Biomimetic Ca-P coatings incorporating bisphosphonates produced on starch-based degradable biomaterials.

机译:仿生Ca-P涂层,其结合了在基于淀粉的可降解生物材料上生产的双膦酸酯。

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摘要

In this study, sodium clodronate, a well-known therapeutic agent from the family of bisphosphonates (BPs), is incorporated in a biomimetic calcium phosphate (CaP) coating, previously formed on the surface of a starch-based biomaterial by a sodium silicate methodology, as a strategy to develop a site-specific drug delivery system for bone tissue regeneration applications. The effects on the resulting CaP coatings were evaluated in terms of morphology, chemistry, and structure. The dissolution of Ca and P from the coating and the release profiles of sodium clodronate was also assessed. As a preliminary approach, this first study also aimed at evaluating the effects of this BP on the viability of a human osteoblastic cell line since there is still little information available on the interaction between BPs and this type of cells. Sodium clodronate was successfully incorporated, at different doses, in the structure of a biomimetic CaP layer previously formed by a sodium silicate process. This type of BPs had a stimulatory effect on osteoblastic activity, particularly at the specific concentration of 0.32 mg/mL. It is foreseen that these coatings can, for instances, be produced on the surface of degradable polymers and then used for regulating the equilibrium on osteoblastic/osteoclastic activity, leading to a controlled regenerative effect at the interface between the biomaterial and bone.
机译:在这项研究中,将氯膦酸钠(一种双膦酸盐(BPs)家族的著名治疗剂)掺入到仿生磷酸钙(CaP)涂层中,该涂层先前通过硅酸钠方法在淀粉基生物材料的表面上形成,作为开发针对骨组织再生应用的特定部位药物递送系统的策略。从形态,化学和结构方面评估了对所得CaP涂层的影响。还评估了钙和磷从涂层中的溶解以及氯膦酸钠的释放曲线。作为一种初步方法,该第一项研究还旨在评估该BP对人成骨细胞系生存力的影响,因为关于BP与此类细胞之间相互作用的信息仍然很少。氯膦酸钠已成功地以不同剂量掺入先前通过硅酸钠工艺形成的仿生CaP层的结构中。这类BP对成骨细胞的活性有刺激作用,特别是在0.32 mg / mL的特定浓度下。可以预见的是,这些涂层可以例如在可降解聚合物的表面上产生,然后用于调节成骨细胞/破骨活性的平衡,从而在生物材料和骨骼之间的界面处产生受控的再生作用。

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