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Layer-by-Layer Deposition of Hyaluronan and Quercetin-Loaded Chitosan Nanoparticles onto Titanium for Improving Blood Compatibility

机译:透明质酸和槲皮素装载的壳聚糖纳米粒子的层逐层沉积在钛上进行血液相容性

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Surface modification is an effective way to improve the hemocompatibility of biomaterials. Quercetin has significant anticoagulation and antithrombotic effects, and thus it is a promising candidate agent for the surface modification of blood-contacting materials. In this study, quercetin was successfully encapsulated in tripolyphosphate–chitosan nanoparticles (TCs) based on the ionic gelation of chitosan with tripolyphosphate (TPP) anions. Then, hyaluronan acid (HA)/quercetin-loaded TPP–chitosan nanoparticle (QTCs) films, in addition to HA/TCs films, were prepared separately using an electrostatic layer-by-layer self-assembly technique. The encapsulation of quercetin in the chitosan nanoparticles was confirmed by UV spectra. The quercetin-loaded multilayer coatings were also successfully self-assembled, as confirmed by the UV spectra and contact angle measurements. Platelet adhesion experiments were carried out with platelet-enriched plasma so as to evaluate the blood compatibility of the different samples. There were many platelets on the surfaces of the glass and HA/TC-coated titanium, which were partially activated but not aggregated. Meanwhile, many more platelets were observed on the uncoated titanium surfaces, most of which developed pseudopodia. By contrast, the platelet adhesion and activation were reduced remarkably on the surface of the HA/QTC-coated titanium. These results showed that the multilayer coatings containing quercetin could act as potential biomaterials to improve the anticoagulation performance of blood-contacting materials.
机译:表面改性是提高生物材料血液相位性的有效方法。槲皮素具有显着的抗凝和抗血栓形成效应,因此是一种有望的候选剂,用于血液接触材料的表面改性。在该研究中,基于用三聚磷酸壳多磷酸(TPP)阴离子的壳聚糖离子凝胶化成功地包封了槲皮素在三聚磷酸 - 壳聚糖纳米粒子(TCS)中。然后,除了HA / TCS膜之外,透明质酸酸(HA)/槲皮素负载的TPP-壳聚糖纳米粒子(QTCS)膜分别使用静电层 - 逐层自组装技术分别制备。通过UV光谱确认壳聚糖纳米粒子中槲皮素的封装。由UV光谱和接触角测量确认,也成功地自组装了槲皮素负载的多层涂层。用富含血小板血浆进行血小板粘附实验,以评估不同样品的血液相容性。在玻璃和HA / TC涂覆钛的表面上存在许多血小板,其部分地活化但未聚集。同时,在未涂层的钛表面上观察到更多的血小板,其中大部分发育了伪多才多多数。相比之下,在HA / QTC涂覆的钛的表面上显着降低血小板粘附和活化。这些结果表明,含有槲皮素的多层涂层可作为潜在的生物材料,以改善血液接触材料的抗凝性能。

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