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Silver nanoparticles influence on the blood activation process and their release to blood plasma from synthetic polymer scaffold

机译:银纳米粒子对血液活化过程的影响及其从合成聚合物支架中对血液血浆的释放

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In the present work, blood and blood plasma interaction to silver stabilised polyelectrolytes was investigated in vitro. The designed materials are dedicated for regeneration of the cardiovascular system. Silver nanoparticles were introduced into the polyelectrolyte structure in order to reduce the risk of bacterial biofilm formation. The introduction of Ag nanoparticles occurred by deposition at high vacuum by magnetron sputtering. The analysis of blood-materials interactions were performed by using commercially available tester, Impact-R (Diamed). The assessment of silver ion nanoparticles release into the plasma consisted in determining the Prothrombin Time (PT) and Activated Partial Thromboplastin Time (APTT). Unmodified surface of polyelectrolytes is a strong activator for blood elements. The introduction of silver nanoparticles resulted in a significant reduction in the probability of clotting. The extrinsic pathway of coagulation determined on the basis of the PT and the intrinsic and common pathways of coagulation measured by the APTT did not indicate the danger out of range. Microstructure was studied using TEM on thin foils prepared from the cross-section of samples subjected to biomedical treatments. The observations revealed hetero-interface between two different crystalline solids.
机译:在本作的工作中,体外研究了对银稳定聚电解质的血液和血液等离子体相互作用。设计的材料专用于心血管系统的再生。将银纳米颗粒引入聚电解质结构中,以降低细菌生物膜形成的风险。通过磁控溅射在高真空下沉积发生Ag纳米粒子。通过使用市售的测试仪,冲击-R(试验)进行血材料相互作用的分析。将银离子纳米粒子释放到等离子体中的评估组成,该等离子体包括测定凝血酶原时间(Pt)和活化的部分血栓形成时间(aptt)。未改性的聚电解质表面是血液元素的强化剂。银纳米粒子的引入导致凝血概率显着降低。基于PT的凝血的外在凝结途径和通过APT测量的凝血的内在和常见途径没有表示危险范围超出范围。在经过生物医学处理的横截面制备的薄箔上研究了微观结构。观察结果揭示了两种不同结晶固体之间的杂界面。

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