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Shape- and nitric oxide flux-dependent bactericidal activity of nitric oxide-releasing silica nanorods

机译:释放一氧化氮的二氧化硅纳米棒的形状和一氧化氮通量依赖性杀菌活性

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摘要

Silica nanorods (SNRs) are synthesized and then functionalized with aminoalkoxysilanes to prepare a new class of nitric oxide (NO)-releasing materials. The aspect ratio and size of the SNRs are tuned by varying the temperature, pH, and silane concentration used during the surfactant-templated synthesis. N-Diazeniumdiolate nitric oxide (NO) donors are formed on the secondary amine-functionalized SNRs by reaction with NO gas under basic conditions. Particle surface modifications are employed to manipulate the NO release kinetics. The diverse morphology (i.e., aspect ratio ~1-8), NO-release kinetics (2000-14 000 ppb NO/mg particle) and similar sizes (i.e., particle volume ~0.02 μm~3) of the resulting NO-releasing SNRs facilitates further studies of how particle shape and NO flux impacts bactericidal activity against Gram-positive Staphylococcus aureus (S. aureus) and Gram-negative Pseudomonas aeruginosa (P. aeruginosa) bacteria. The bactericidal efficacies of these materials improves with increasing particle aspect ratio and initial NO flux. Both chemical (i.e., NO-release kinetics) and physical (i.e., morphology) properties greatly influenced the bactericidal activity of these materials.
机译:合成二氧化硅纳米棒(SNRs),然后用氨基烷氧基硅烷官能化以制备新型的一氧化氮(NO)释放材料。通过改变表面活性剂模板合成过程中使用的温度,pH和硅烷浓度,可以调整SNR的纵横比和大小。通过在碱性条件下与NO气体反应,在仲胺官能化SNR上形成N-重氮二醇二氮杂(N)供体。使用颗粒表面改性来控制NO释放动力学。产生的NO释放SNR的形态多样(即长径比〜1-8),NO释放动力学(2000-14 000 ppb NO / mg颗粒)和相似的尺寸(即颗粒体积〜0.02μm〜3)有助于进一步研究颗粒形状和NO通量如何影响对革兰氏阳性金黄色葡萄球菌(S. aureus)和革兰氏阴性铜绿假单胞菌(P. aeruginosa)细菌的杀菌活性。这些材料的杀菌效率随颗粒长径比和初始NO流量的增加而提高。化学(即,NO释放动力学)和物理(即,形态)特性都极大地影响了这些材料的杀菌活性。

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