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首页> 外文期刊>Powder Technology: An International Journal on the Science and Technology of Wet and Dry Particulate Systems >Multifunctional metal-chelated phosphonate/Fe3O4 magnetic nanocomposite particles for defeating antibiotic-resistant bacteria
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Multifunctional metal-chelated phosphonate/Fe3O4 magnetic nanocomposite particles for defeating antibiotic-resistant bacteria

机译:用于抗生素抗性细菌的多功能金属螯合膦酸酯/ Fe3O4磁性纳米复合粒子

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摘要

The expression and dissemination of beta-lactamase enzymes is the most frequently used antibiotic resistance mechanism in bacteria. The synthesis and characterization of a new nanocomposite particle was performed to inhibit serine beta-lactamase activities. The nanostructure based on an ultra-small iron oxide (Fe3O4) nanocore, is in-situ coated with a hydrophilic and biodegradable compound of N-phosphonomethyl iminodiacetic acid (PMIDA). Through amidation reaction, a tetra-dentate molecule such as (S)-N-(5-Amino-1-carboxypentyl) iminodiacetic acid (NTA) was covalently conjugated to the acid-terminated Fe-PMIDA nanoparticles. The re-sulted Fe-PMIDA-NTA nanostructure was further coordinated with Co2+ ions. Once the nanoparticles loaded with the cobalt ions, the positively charged nanocomposite particles were found effective toward class C beta-lactamase having 66% inhibition of enzyme activity with an IC50 of 45.68 mu g/mL. A significant level of synergism was also observed by co-administration of Fe-PMIDA-NTA-Co2+ NPs and cephalexin as our model of beta-lactam antibiotic against Escherichia coli bacteria. (C) 2021 Published by Elsevier B.V.
机译:β-内酰胺酶的表达和传播是细菌中最常用的抗生素耐药机制。为了抑制丝氨酸-β-内酰胺酶的活性,进行了一种新型纳米复合粒子的合成和表征。该纳米结构基于超小氧化铁(Fe3O4)纳米核,原位涂有亲水性和可生物降解的N-磷酰甲基亚氨基二乙酸(PMIDA)化合物。通过酰胺化反应,四齿分子如(S)-N-(5-氨基-1-羧基戊基)亚氨基二乙酸(NTA)被共价结合到酸封端的Fe-PMIDA纳米颗粒上。得到的Fe-PMIDA-NTA纳米结构进一步与Co2+离子配位。一旦纳米颗粒装载了钴离子,结果发现,带正电的纳米复合颗粒对C类β-内酰胺酶有效,其酶活性抑制率为66%,IC50为45.68μg/mL。同时服用Fe-PMIDA-NTA-Co2+NPs和头孢氨苄作为我们的抗大肠杆菌的β-内酰胺抗生素模型,也观察到了显著的协同作用。(c)2021由爱思唯尔B.V出版。

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