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Aging Effect on Functionalized Silver-Based Nanocoating Braided Coronary Stents

机译:官能化银基编织冠状动脉支架的老化作用

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A previously developed fiber-based polyester (PES) stent, with mechanical properties comparable to commercial nitinol stents, was coated with metallic silver (Ag0) and silver oxides (AgxO) thin films through direct current (DC) magnetron sputtering. Ag0 and AgxO coatings provide antimicrobial properties to the stents to minimize the occurrence of coronary stent infections. Nevertheless, the stent interacts with the atmosphere and then with the biological fluids and may lead to the generation of silver species with diminished antimicrobial efficiency and/or prone to induce cytotoxicity. Therefore, stent coating nanostructures aged 3 months were thoroughly analyzed by X-ray photoelectron spectroscopy (XPS) and their antimicrobial and cytotoxicity properties were assessed. Aging led to the presence of silver carbonate and bicarbonate as well as chemisorbed oxygen species in Ag0 and AgxO coatings. Bactericidal efficacy was tested against an important nosocomial bacterium, particularly associated to indwelling devices: Staphylococcus epidermidis. Aged Ag0 and AgxO coating presented a Log reduction of 1 and 2 at their surface; respectively. However, aged stents were able to induce a Log reduction of 2 (Ag0) and 4 (AgxO) on the surrounding medium. Only aged AgxO stent was able to provide a mild reduction of the bacterium at its surface and a clear antimicrobial effect (Log reduction 3) within its vicinity. More importantly, both aged Ag0 and AgxO stents were shown to be compatible with fibroblasts cells indicating that they can be safely used as indwelling devices, despite the aging effect.
机译:先前开发的纤维基聚酯(PES)支架,具有与商业镍钛合金支架相当的机械性能,通过直流(DC)磁控溅射用金属银(AG0)和银氧化物(AgXO)薄膜涂覆。 AG0和Agxo涂层为支架提供抗微生物性质,以最大限度地减少冠状动脉通道感染的发生。然而,支架与大气相互作用,然后与生物液体相互作用,并且可能导致银质的产生,抗微生物效率和/或容易诱导细胞毒性。因此,通过X射线光电子能谱(XPS)彻底分析了3个月的支架涂层纳米结构,并评估其抗微生物和细胞毒性特性。老化导致Ag0和Agxo涂层中银碳酸银和碳酸氢盐以及化学吸附氧。针对重要的泌尿剂细菌测试杀菌功效,特别是与留置装置相关的乳腺细菌:葡萄球菌表皮。 Agy Ag0和Agxo涂层在其表面上呈现1和2的降低;分别。然而,老年支架能够在周围培养基上诱导2(Ag0)和4(Agxo)的降低物降低。只有老化的Agxo支架能够在其表面的细菌中提供轻度降低,并且在其附近的透明抗微生物效果(降低> 3)。更重要的是,尽管老化效果,所示的Ag0和Agxo支架两者均与成纤维细胞相容,表明它们可以安全地用作留置装置。

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