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首页> 外文期刊>Clays and clay minerals >NAPROXEN/LAYERED DOUBLE HYDROXIDE COMPOSITES FOR TISSUE-ENGINEERING APPLICATIONS:PHYSICOCHEMICAL CHARACTERIZATION AND BIOLOGICAL EVALUATION
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NAPROXEN/LAYERED DOUBLE HYDROXIDE COMPOSITES FOR TISSUE-ENGINEERING APPLICATIONS:PHYSICOCHEMICAL CHARACTERIZATION AND BIOLOGICAL EVALUATION

机译:用于组织工程应用的萘普克斯/分层双氢氧化物复合材料:物理化学表征和生物学评价

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Injured bone tissues can be healed with bone grafts, but this procedure may cause intense pain to the patient. A slow and localized delivery of nonsteroidal anti-inflammatory drugs (NSAIDs) could help to reduce the pain without affecting bone regeneration. The objective of the present study was to use [Mg-Al]-layered double hydroxide (LDH) as a matrix for controlled release of sodium naproxen (NAP). This system could be applied in biomaterial formulations (such as bone grafts) to achieve a local delivery of naproxen. [Mg-Al]-LDH successfully incorporated up to 80% (w/w) of naproxen by the structural reconstruction route, with the [Mg-Al]-LDH interlayer space increasing by 0.55 nm, corresponding to the drug molecule size. The evaluation of the naproxen release kinetics showed that 40% of the drug was delivered over 48 h in aqueous medium (pH 7.4 +/- 0.1), indicating the potential of [Mg-Al]-LDH/NAP for local release of naproxen at adequate concentrations. Kinetic modeling showed that the naproxen release process was closely related to the Higuchi model, which considers the drug release as a diffusional process based on Fick's law. The chemical stability of NAP after the release tests was verified by H-1 NMR. The [Mg-Al]-LDH/NAP also exhibited low cytotoxicity toward fibroblast cells (L929 cell line), without modifications in their morphology and adhesion capacity. These results describe a suitable approach for preparing efficient systems for local delivery of nonsteroidal anti-inflammatory drugs for biomedical applications.
机译:受伤的骨组织可以用骨移植愈合,但这种方法可能对患者造成强烈的疼痛。非甾体抗炎药(NSAIDs)的缓慢和局部递送可以有助于减轻疼痛而不会影响骨再生。本研究的目的是使用[Mg-Al] - 层的双氢氧化物(LDH)作为萘西钠(午睡)的控制释放的基质。该系统可以应用于生物材料配方(如骨移植物),以实现萘普生的局部递送。 [Mg-Al] -LDH通过结构重建途径成功掺入了高达80%(w / w)的萘普克斯,其中[Mg-Al] -L1]间隔率增加0.55nm,对应于药物分子尺寸。萘普生释放动力学的评价显示,40%的药物在水性介质中超过48小时(pH7.4 +/- 0.1),表明[Mg-Al] -LDH / NAP用于局部释放萘普克纳的电位足够的浓度。动力学建模表明,萘普生释放过程与HIGUCHI模型密切相关,这将药物释放作为基于Fick的法律的扩散过程。通过H-1 NMR验证在释放试验后的午睡的化学稳定性。 [Mg-Al] -L6H / NAP还表现出朝向成纤维细胞(L929细胞系)的低细胞毒性,无需修饰它们的形态和粘附能力。这些结果描述了制备局部递送非甾体抗炎药的有效系统的合适方法,用于生物医学应用。

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