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3D hybrid structures based on biomimetic membranes and Caryophyllus aromaticus - 'green' synthesized nano-silver with improved bioperformances

机译:基于仿生膜的三维杂交结构和芳蒽基芳香族 - “绿色”合成纳米银,具有改进的生物核实

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The paper describes an innovative bio-design of some hybrid nanoarchitectures containing bioartificial membranes and silver nanoparticles phytogenerated by using a natural extract Caryophyllus aromaticus (cloves) that contains many bioactive compounds. Two kinds of liposomes with and without chlorophyll a (Chla) obtained through thin film hydration method were used to achieve bio-green-generated hybrids by a simple, cost effective bottom-up approach. The characteristic peaks of CE-nAg monitored by UV-Vis absorption have firstly demonstrated the biohybrids formation. The slightly blue shift and fluorescence quenching observed by fluorescence emission spectra highlighted the formation of hybrid systems by biointeraction between lipid vesicles and silver nanoparticles. The incorporation of silver nanoparticles in lipid vesicles resulted in significant changes of FT-IR spectra of liposomes, indicating a reorganization of biomimetic membranes. All the microscopic methods (SEM, AFM and TEM) confirmed the biosynthesis of "green" AgNPs together with associated biohybrids, their spherical and quasi-spherical shapes with nano-scaled size. By TEM assay it was shown that CE-nAg are surrounded by petal like cloud structures that consist of biopolymers like proteins or polysaccharides and other phytochemicals arising from clove extract. EDS spectra confirmed the formation of phyto-nanoAg and also the presence of silver in the biohybrids. In addition, Selected Area Electron Diffraction showed characteristic polycrystalline ring patterns for a cubic structure of the clove-generated AgNPs. The hybrid materials showed efficient physical stability, ie. xi value of - 28.0 mV (for biohybrids without Chla, BH) and of - 31.7 mV (for biohybrids labelled with Chla, Chla-BH), assured by strong electrostatic repulsive forces between particles. The "green" nano-silver particles (CE-nAg) showed remarkable antioxidant activity (AA = 90.2%). The biohybrids loaded with clove-AgNPs proved to be mor
机译:本文描述了一种含有生物型膜和银纳米粒子的一些杂交纳米建筑学的创新生物设计,其通过使用含有许多生物活性化合物的天然萃取肠杆菌芳香族(植物)。通过通过薄膜水合方法获得的两种具有和不含叶绿素A(CHLA)的脂质体,通过简单,成本有效的自下而上的方法来实现生物绿色产生的杂种。通过UV-Vis吸收监测的CE-NAG的特征峰首先显示了生物培养的形成。荧光发射光谱观察到的略微蓝移和荧光猝灭突出显示通过脂质囊泡和银纳米颗粒之间的生物互动形成杂种系统。在脂质囊泡中掺入银纳米粒子导致脂质体的FT-IR光谱的显着变化,表明仿生膜的重组。所有的微观方法(SEM,AFM和TEM)都证实了“绿色”agnps的生物合成,以及相关的生物冬小,它们的球形和准球形形状具有纳米缩放的尺寸。通过TEM测定结果表明,CE-NAG被云结构包围,所述云结构包括蛋白质或多糖等生物聚合物和由丁香提取物产生的其他植物化学物质。 EDS光谱证实了Phyto-Nanoag的形成以及生物次常中银中的银。另外,选择的区域电子衍射显示出用于丁香产生的AgNP的立方结构的特征多晶环图案。杂交材料显示出有效的物理稳定性,即。 XI值 - 28.0mV(用于无CHLA,BH)和-11.7mV(用CHLA,CHLA-BH标记的生物冬小),通过颗粒之间的强烈静电驱动力来确保。 “绿色”纳米银颗粒(CE-NAG)显示出显着的抗氧化活性(AA = 90.2%)。被证明是Mor

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