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首页> 外文期刊>ACS Omega >Diverse Pathway to Obtain Antibacterial and Antifungal Agents Based on Silica Particles Functionalized by Amino and Phenyl Groups with Cu(II) Ion Complexes
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Diverse Pathway to Obtain Antibacterial and Antifungal Agents Based on Silica Particles Functionalized by Amino and Phenyl Groups with Cu(II) Ion Complexes

机译:不同的途径,得到基于氨基和苯基与Cu(II)离子复合物官能化的二氧化硅颗粒的抗菌和抗真菌剂

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摘要

Production of environmentally friendly multitasking materials is among the urgent challenges of chemistry and ecotechnology. The current research paper describes the synthesis of amino–/silica and amino–/phenyl–/silica particles using a one-pot sol–gel technique. CHNS analysis and titration demonstrated a high content of functional groups, while scanning electron microscopy revealed their spherical form and ~200 nm in size. X-ray photoelectron spectroscopy data testified that hydrophobic groups reduced the number of water molecules and protonated amino groups on the surface, increasing the portion of free amino groups. The complexation with Cu(II) cations was used to analyze the sorption capacity and reactivity of the aminopropyl groups and to enhance the antimicrobial action of the samples. Antibacterial activities of suspensions of aminosilica particles and their derivative forms containing adsorbed copper(II) ions were assayed against Gram-positive (Staphylococcus aureus ATCC 25923) and Gram-negative bacteria (Escherichia coli ATCC 25922 and Pseudomonas aeruginosa ATCC 27853). Meanwhile, antifungal activity was tested against fungi (Candida albicans UCM Y-690). According to zeta potential measurements, its value could be depended on the suspension concentration, and it was demonstrated that the positively charged suspension had higher antibacterial efficiency. SiO_(2)/–C_(6)H_(5)/–NH_(2) + Cu(II) sample’s water suspension (1%) showed complete growth inhibition of the bacterial culture on the solid medium. The antimicrobial activity could be due to occurrence of multiple and nonspecific interactions between the particle surfaces and the surface layers of bacteria or fungi.
机译:环保多任务材料的生产是化学和生态技术的紧迫挑战之一。目前的研究论文描述了使用一种溶溶胶 - 凝胶技术合成氨基/二氧化硅和氨基/苯基/二氧化硅颗粒。 CHN分析和滴定表明了高含量的官能团,同时扫描电子显微镜显示它们的球形形式和尺寸约为200nm。 X射线光电子能谱数据验证,疏水基团降低了表面上的水分子数和质子化氨基,增加了游离氨基的一部分。使用Cu(II)阳离子的络合来分析氨基丙基的吸附能力和反应性,并增强样品的抗微生物作用。氨基硅藻颗粒悬浮液的抗菌活性和含有吸附的铜(II)离子的衍生物形式的抗菌活性针对革兰氏阳性(葡萄球菌ATCC 25923)和革兰氏阴性细菌(大肠杆菌ATCC 25922和,测定假单胞菌铜绿假单胞菌ATCC 27853)。同时,对真菌进行抗真菌活性(念珠菌蛋白酶UCM Y-690)。根据Zeta电位测量,其值可以依赖于悬浮液,并且证明正电荷悬浮液具有更高的抗菌效率。 SiO_(2)/ - C_(6)H_(5)/ - NH_(2)+ Cu(II)样品的水悬浮液(1%)显示完全生长抑制固体培养基上的细菌培养物。抗微生物活性可能是由于颗粒表面和细菌或真菌表面层之间的多个和非特异性相互作用的发生。

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