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首页> 外文期刊>Biomaterials >Hydroxyapatite/poly(epsilon-caprolactone) composite coatings on hydroxyapatite porous bone scaffold for drug delivery.
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Hydroxyapatite/poly(epsilon-caprolactone) composite coatings on hydroxyapatite porous bone scaffold for drug delivery.

机译:羟基磷灰石多孔骨支架上的羟基磷灰石/聚(ε-己内酯)复合涂层用于药物输送。

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Hydroxyapatite (HA) porous scaffold was coated with HA and polycaprolactone (PCL) composites, and antibiotic drug tetracycline hydrochloride was entrapped within the coating layer. The HA scaffold obtained by a polymeric reticulate method, possessed high porosity ( approximately 87%) and controlled pore size (150-200microm). Such a well-developed porous structure facilitated usage in a drug delivery system due to its high surface area and blood circulation efficiency. The PCL polymer, as a coating component, was used to improve the brittleness and low strength of the HA scaffold, as well to effectively entrap the drug. To improve the osteoconductivity and bioactivity of the coating layer, HA powder was hybridized with PCL solution to make the HA-PCL composite coating. With alteration in the coating concentration and HA/PCL ratio, the morphology, mechanical properties, and biodegradation behavior were investigated. Increasing the concentration rendered the stems thicker and some pores to be clogged; as well increasing the HA/PCL ratio made the coating surface be rough due to the large amount of HA particles. However, for all concentrations and compositions, uniform coatings were formed, i.e., with the HA particles being dispersed homogeneously in the PCL sheet. With the composite coating, the mechanical properties, such as compressive strength and elastic modulus were improved by several orders of magnitude. These improvements were more significant with thicker coatings, while little difference was observed with the HA/PCL ratio. The in vitro biodegradation of the composite coatings in the phosphate buffered saline solution increased linearly with incubation time and the rate differed with the coating concentration and the HA/PCL ratio; the higher concentration and HA amount caused the increased biodegradation. At short period (<2h), about 20-30% drug was released especially due to free drug at the coating surface. However, the release rate was sustained for prolonged periods and was highly dependent on thedegree of coating dissolution, suggesting the possibility of a controlled drug release in the porous scaffold with HA+PCL coating.
机译:用HA和聚己内酯(PCL)复合材料涂覆羟基磷灰石(HA)多孔支架,并将抗生素药物四环素盐酸盐截留在涂层中。通过聚合网状方法获得的HA支架具有高孔隙率(约87%)和受控的孔径(150-200微米)。这种发达的多孔结构由于其高的表面积和血液循环效率而促进了在药物输送系统中的使用。 PCL聚合物作为包衣成分,用于改善HA支架的脆性和低强度,以及有效地截留药物。为了提高涂层的骨传导性和生物活性,将HA粉末与PCL溶液杂交以制备HA-PCL复合涂层。随着涂层浓度和HA / PCL比的变化,研究了形态,机械性能和生物降解行为。浓度增加会使茎变粗,一些孔被堵塞;由于大量的HA颗粒,HA / PCL比例的增加也使涂层表面变得粗糙。然而,对于所有浓度和组成,均形成均匀的涂层,即,HA颗粒均匀地分散在PCL片中。使用复合涂层,机械性能,例如抗压强度和弹性模量提高了几个数量级。这些改进在涂层较厚的情况下更为显着,而HA / PCL比例几乎没有差异。复合涂层在磷酸盐缓冲盐溶液中的体外生物降解随孵育时间的增加而线性增加,且速率随涂层浓度和HA / PCL比的不同而不同。较高的浓度和HA量导致生物降解增加。在短时间内(<2h),大约有20-30%的药物被释放,尤其是由于涂层表面的游离药物。然而,释放速率可长期维持,并且高度取决于包衣的溶解程度,这表明在具有HA + PCL包衣的多孔支架中药物受控释放的可能性。

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