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Nanoscale eluting coatings based on alginate/chitosan hydrogels

机译:基于藻酸盐/壳聚糖水凝胶的纳米级洗脱涂层

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The localized availability of bioactive biomolecules directly at the implant/tissue interface presents a promising strategy for improved wound healing and thus biointegration. Bioactive molecules that cannot be incorporated into the bulk material of a device may be delivered from a compatible surface coating, while the reservoir capacity of thin surface coatings is limited, they offer localized delivery over the first few critical hours or days of wound healing. In this study an alginate/chitosan hydrogel has been utilized as the basis for nanoscale eluting coatings to provide a hydrophilic yet water insoluble surface delivery system. The release characteristics of these hydrogel coatings were measured by employing the model molecules-fluorescein isothiocyanate dextran [FD; molecular weights (MWs) 4, 70, and 2000 kDa], fluorescein isothiocyanate albumin, and rhodamine. Scanning electron microscopy and atomic force microscopy were used to study the morphology of the hydrogel coatings on model substrates, and ellipsometry was employed for measuring the coating thickness. On silicon wafers, the coatings were of good uniformity and conformal, with a thickness of ≈ 120 nm and a rms roughness of 3.0 nm. A model porous substrate, paper, which afforded deep pore penetration of the hydrogel, was used to mimic hydroxyapatite. The release of FD was observed to be dependent on the MW, the release medium, charge, and surface roughness. Sustained release was recorded for FD 70 and FD 2000 with yields of about 90% and 75%, respectively, into simulated body fluid within 26 days. Concurrent elution of different molecules from one hydrogel coating was demonstrated. The observed elution profiles were fitted to release kinetics such as the Korsmeyer-Peppas model or first order release.
机译:直接在植入物/组织界面处的生物活性生物分子的局部可利用性提出了改善伤口愈合从而生物整合的有前途的策略。不能掺入设备主体材料中的生物活性分子可以从兼容的表面涂层中递送,而薄表面涂层的储存能力有限,但它们在伤口愈合的最初几个关键小时或几天内可以进行局部递送。在这项研究中,藻酸盐/壳聚糖水凝胶已被用作纳米级洗脱涂料的基础,以提供亲水性但不溶于水的表面递送系统。通过使用模型分子-异硫氰酸荧光素右旋糖酐[FD]测量这些水凝胶涂层的释放特性。分子量(MWs)4、70和2000 kDa],异硫氰酸荧光素白蛋白和若丹明。用扫描电子显微镜和原子力显微镜研究了模型基体上水凝胶涂层的形貌,并用椭圆光度法测量了涂层的厚度。在硅晶片上,涂层具有良好的均匀性和共形性,厚度约为120 nm,均方根粗糙度为3.0 nm。提供多孔水凝胶深孔的模型多孔基质纸,用于模拟羟基磷灰石。观察到FD的释放取决于MW,释放介质,电荷和表面粗糙度。记录了FD 70和FD 2000在26天之内分别释放到模拟体液中的缓释率,分别约为90%和75%。证明了从一种水凝胶涂层中同时洗脱不同分子。拟合观察到的洗脱曲线以释放动力学,例如Korsmeyer-Peppas模型或一级释放。

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