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反离子诱导的两亲水凝胶抗菌活性和生物相容性的调节:原位合成的 Ag 纳米粒子对杀菌性能的影响。

Counterion-induced modulation in the antimicrobial activity and biocompatibility of amphiphilic hydrogelators: influence of in-situ-synthesized Ag-nanoparticle on the bactericidal property.

机构信息

Department of Biological Chemistry, Indian Association for the Cultivation of Science, Jadavpur, Kolkata 700 032, India.

出版信息

Langmuir. 2011 Apr 19;27(8):5000-8. doi: 10.1021/la104903z. Epub 2011 Mar 29.

Abstract

The necessity for the development of new antimicrobial agents due to the ever increasing threat from microbes is causing a rapid surge in research. In the present work, we have shown the efficient antimicrobial activity of a series of amino acid-based hydrogelating amphiphiles through alteration in their counterion. The subtle variation in the counterion from chloride to various organic carboxylates had a significant impact on the antimicrobial properties with notable improvement in biocompatibility toward mammalian cells. Incorporation of a hydrophobic moiety in the counterion augmented the antibacterial property of the amphiphilic hydrogelator as minimum inhibitory concentration (MIC) against the Gram-positive bacterial strain, Bacillus subtilis decreased up to 5-fold (with respect to the chloride) in the case of n-hexanoate. These counterion-varied amphiphilic hydrogelators were also found to be effective against fungal strains (Candida albicans and Saccharomyces cerevisiae) where they exhibited MICs in the range of 1.0-12.5 μg/mL. To widen the spectrum of antibacterial activity, particularly against Gram-negative bacteria, silver nanoparticles (AgNPs) were synthesized in situ within the supramolecular assemblies of the carboxylate hydrogelators. These AgNP-amphiphile soft-nanocomposites showed bactericidal property against both Gram-positive and Gram-negative bacteria. Encouragingly, these carboxylate hydrogelators showed superior biocompatibility toward mammalian cells, HepG2 and NIH3T3, as compared to the chloride analogue at a concentration range of 10-200 μg/mL. Importantly, the AgNP composites also showed sufficient viability to mammalian cells. Because of the intrinsic hydrogelation ability of these counterion-varied amphiphiles, the resulting soft materials and the nanocomposites could find applications in biomedicine and tissue engineering.

摘要

由于微生物的威胁不断增加,开发新的抗菌剂是必要的,这导致研究迅速增加。在本工作中,我们通过改变其反离子,展示了一系列基于氨基酸的水凝胶形成两亲物的有效抗菌活性。反离子从氯化物到各种有机羧酸根的细微变化对抗菌性能有显著影响,对哺乳动物细胞的生物相容性有明显改善。在反离子中引入疏水性部分增强了两亲水凝胶形成剂的抗菌性能,因为正庚酸盐的最低抑菌浓度(MIC)相对于氯化物对革兰氏阳性细菌菌株枯草芽孢杆菌降低了 5 倍。还发现这些反离子变化的两亲水凝胶形成剂对真菌菌株(白色念珠菌和酿酒酵母)有效,其 MIC 值在 1.0-12.5μg/mL 范围内。为了扩大抗菌活性谱,特别是针对革兰氏阴性菌,在羧酸根水凝胶形成剂的超分子组装中就地合成了银纳米粒子(AgNPs)。这些 AgNP-两亲软纳米复合材料对革兰氏阳性菌和革兰氏阴性菌均具有杀菌性能。令人鼓舞的是,与氯化物类似物相比,这些羧酸根水凝胶形成剂在 10-200μg/mL 的浓度范围内对哺乳动物细胞 HepG2 和 NIH3T3 表现出更好的生物相容性。重要的是,AgNP 复合材料对哺乳动物细胞也具有足够的活力。由于这些反离子变化的两亲物具有内在的水凝胶形成能力,所得的软材料和纳米复合材料可以在生物医学和组织工程中找到应用。

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