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首页> 外文期刊>Biomacromolecules >Polyelectrolyte Multilayer-Calcium Phosphate Composite Coatings for Metal Implants
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Polyelectrolyte Multilayer-Calcium Phosphate Composite Coatings for Metal Implants

机译:金属植入物的聚电解质多层-磷酸钙复合涂层

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The preparation of organic-inorganic composite coatings with the purpose to increase the bioactivity of bioinert metal implants was investigated. As substrates, glass plates and rough titanium surfaces (Ti-SLA) were employed. The method comprises the deposition of polyelectrolyte multilayers (PEMLs) followed by immersion of the coated substrate into a calcifying solution of low supersaturation (MCS). Single or mixed PEMLs were constructed from poly-L-lysine (PLL) alternating with poly-L-glutamate, (PGA), poly-L-aspartate (PAA), and/or chondroitin sulfate (CS). ATR-FTIR spectra reveal that (PLL/PGA)_(10) multilayers and mixed multilayers with a (PLL/PGA), base contain intermolecular β-sheet structures, which are absent in pure (PLL/PAA)_(10) and (PLL/CS)_(10) assemblies. All PEML coatings had a grainy topography with aggregate sizes and size distributions increasing in the order: (PLL/PGA)? < (PLL/PAA)? < (PLL/CS)?. In mixed multilayers with a (PLL/PGA)? base and a (PLL/PAA)? or (PLL/CS),, top, the aggregate sizes were greatly reduced. The PEMLs promoted calcium phosphate nucleation and early crystal growth, the intensity of the effect depending on the composition of the terminal laycr(s) of the polymer. In contrast, crystal morphology and structure depended on the supersaturation, pH, and ionic strength of the MCS, rather than on the composition of the organic matrix. Crystals grown on both uncoated and coated substrates were mostly platelets of calcium deficient carbonate apatite, with the Ca/P ratio depending on the precipitation conditions.
机译:研究了旨在提高生物惰性金属植入物生物活性的有机-无机复合涂层的制备方法。使用玻璃板和粗糙的钛表面(Ti-SLA)作为基材。该方法包括沉积聚电解质多层(PEML),然后将涂覆的基材浸入低过饱和度的钙化溶液(MCS)中。单个或混合PEML由聚L-赖氨酸(PLL)与聚L-谷氨酸(PGA),聚L-天冬氨酸(PAA)和/或硫酸软骨素(CS)交替构建而成。 ATR-FTIR光谱表明,(PLL / PGA)_(10)多层和具有(PLL / PGA)碱的混合多层包含分子间β-折叠结构,而纯(PLL / PAA)_(10)和(PLL / CS)_(10)组件。所有的PEML涂层都有颗粒状的形貌,聚集体尺寸和尺寸分布按以下顺序增加:(PLL / PGA)? <(PLL / PAA)? <(PLL / CS)?在带有(PLL / PGA)的混合多层中?基本和一个(PLL / PAA)?或(PLL / CS),最重要的是,总尺寸大大减小了。 PEML促进了磷酸钙的成核作用和早期晶体的生长,其效果的强弱取决于聚合物末端的组成。相反,晶体的形态和结构取决于MCS的过饱和度,pH和离子强度,而不取决于有机基质的组成。在未涂覆和涂覆的基材上生长的晶体大多是贫钙的碳酸盐磷灰石薄片,其Ca / P比取决于沉淀条件。

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