首页> 外文期刊>International Journal of Nanomedicine >Loading icariin on titanium surfaces by phase-transited lysozyme priming and layer-by-layer self-assembly of hyaluronic acid/chitosan to improve surface osteogenesis ability
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Loading icariin on titanium surfaces by phase-transited lysozyme priming and layer-by-layer self-assembly of hyaluronic acid/chitosan to improve surface osteogenesis ability

机译:通过相变溶菌酶引发和透明质酸/壳聚糖的逐层自组装将icariin负载在钛表面上,以提高表面成骨能力

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Purpose: Icariin (ICA) is one of the main active constituents of Herba Epimedii for improving osteogenesis. It is necessary to create a simple and efficient method to load ICA onto the surface of titanium (Ti) implant. The purpose of this study was to establish a local ICA delivery system via a layer-by-layer (LbL) self-assembly system on phase-transited lysozyme (PTL)-primed Ti surface. Materials and methods: A PTL nanofilm was first firmly coated on the pristine Ti. Then, the ICA-loaded hyaluronic acid/chitosan (HA/CS) multilayer was applied via the LbL system to form the HA/CS-ICA surface. This established HA/CS-ICA surface was characterized by scanning electron microscopy (SEM), X-ray photoelectron spectroscopy (XPS) and contact angle measurement. The ICA release pattern of the HA/CS-ICA surface was also examined. MC3T3-E1 osteoblast culture test and a rat model were used to evaluate the effects of the HA/CS-ICA surface in vitro and in vivo. Results: SEM, XPS and contact angle measurement demonstrated successful fabrication of the HA/CS-ICA surface. The HA/CS-ICA surfaces with different ICA concentrations revealed a controlled release profile of ICA during a 2-week monitoring span. Osteoblasts grown on the coated substrates displayed higher adhesion, viability, proliferation and ALP activity than those on the polished Ti surface. Furthermore, in vivo histological evaluation revealed much obvious bone formation in the ICA-coated group by histological staining and double fluorescent labeling at 2 weeks after implantation. Conclusion: The present study demonstrated that ICA-immobilized HA/CS multilayer on the PTL-primed Ti surface had a sustained release pattern of ICA which could promote the osteogenesis of osteoblasts in vitro and improve early osseointegration in vivo. This study provides a novel method for creating a sustained ICA delivery system to improve osteoblast response and osseointegration.
机译:目的:伊car素(ICA)是淫羊Herb的主要活性成分之一,可改善成骨作用。有必要创建一种简单有效的方法来将ICA加载到钛(Ti)植入物的表面上。这项研究的目的是通过相转移溶菌酶(PTL)涂有底漆的Ti表面上的逐层(LbL)自组装系统来建立本地ICA递送系统。材料和方法:首先将PTL纳米膜牢固地涂覆在原始Ti上。然后,通过LbL系统施加负载ICA的透明质酸/壳聚糖(HA / CS)多层,以形成HA / CS-ICA表面。通过扫描电子显微镜(SEM),X射线光电子能谱(XPS)和接触角测量来表征已建立的HA / CS-ICA表面。还检查了HA / CS-ICA表面的ICA释放模式。使用MC3T3-E1成骨细胞培养试验和大鼠模型来评价HA / CS-ICA表面在体外和体内的作用。结果:SEM,XPS和接触角测量证明HA / CS-ICA表面的成功制造。在2周的监测期间内,具有不同ICA浓度的HA / CS-ICA表面显示了ICA的控制释放曲线。与在抛光的钛表面上相比,在涂覆的基材上生长的成骨细胞显示出更高的附着力,生存能力,增殖能力和ALP活性。此外,体内组织学评估显示,在植入后2周,通过组织学染色和双重荧光标记,在ICA涂层组中有明显的骨形成。结论:本研究表明,在PTL引发的Ti表面上ICA固定的HA / CS多层膜具有ICA的持续释放模式,可以促进体外成骨细胞的成骨作用并改善体内早期骨整合。这项研究提供了一种创建持续ICA递送系统以改善成骨细胞反应和骨整合的新方法。

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