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PLLA scaffold modification using magnetron sputtering of the copper target to provide antibacterial properties

机译:使用磁控溅射铜靶材对PLLA支架进行改性以提供抗菌性能

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Abstract Using the electrospinning method, we produced biodegradable scaffolds from poly-l-lactide acid polymer (PLLA – poly-l-lactide acid). Using {DC} magnetron sputtering of the copper target we modified the surface of the scaffolds. For investigate scaffolds morphology, structure and elemental composition were used scanning electron microscopy, X-ray diffraction and X-ray fluorescence analysis. The results of scanning electron microscopy reveal that scaffolds consist of chaotically located fibres. The diameters of fibres range from 0.8 to 2 μm. Initially amorphous scaffold after modification has crystalline structure. The count of oxygen and copper with modification is increased, but count of carbon decreased. For the investigation of the scaffolds wetting ability were used glycerol and water. The wetting angles for the both liquids were similarly comparable. The values for the wetting angles range from 114 ± 5° to 125 ± 5°, what indicated that scaffolds had hydrophobic properties. Testing for antibacterial features indicated that the modified scaffolds are capable to have a bacteriostatic effect. Compared to the number of bacteria cultured without scaffold (11.8 ± 1.26 {CFU} × 104/ml), two modified samples have bacteriostatic properties (reducing the number of bacteria on 30 and 50%). Economically effective method {PLLA} scaffolds modification could be used for creating low-cost wound dressings with antibacterial properties.
机译:摘要我们使用静电纺丝方法,从聚l-丙交酯酸聚合物(PLLA –聚l-丙交酯酸)生产了可生物降解的支架。使用{DC}磁控溅射铜靶,我们对支架的表面进行了改性。为了研究支架的形态,结构和元素组成,使用了扫描电子显微镜,X射线衍射和X射线荧光分析。扫描电子显微镜的结果表明,支架由位置混乱的纤维组成。纤维的直径为0.8至2μm。改性后最初的无定形支架具有晶体结构。经过修饰的氧和铜的数量增加,但碳的数量减少。为了研究支架的润湿能力,使用了甘油和水。两种液体的润湿角相似。润湿角的值在114±5°至125±5°的范围内,这表明支架具有疏水性。抗菌特性测试表明,修饰的支架能够具有抑菌作用。与不使用支架培养的细菌数量(11.8±1.26 {CFU}×104 / ml)相比,两个经过修饰的样品具有抑菌特性(减少30%和50%的细菌数量)。经济有效的方法{PLLA}支架改性可用于制造具有抗菌特性的低成本伤口敷料。

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