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基于磁铁矿-蟾蜍灵-II-银纳米生物共轭物的新型抗菌局部治疗制剂。

Formulation of a novel antibacterial topical treatment based on Magnetite-Buforin-II-silver nanobioconjugates.

作者信息

Muñoz Laura N, Jaramillo Valentina, Gantiva-Diaz Mónica, Cifuentes Javier, Muñoz-Camargo Carolina, Cruz Juan C, González Barrios Andrés Fernando

机构信息

Grupo de Diseño de Productos y Procesos (GDPP), Departamento de Ingeniería Química y de Alimentos, Universidad de los Andes, Bogotá, Colombia.

Grupo de investigación en Nanobiomateriales, Ingeniería Celular y Bioimpresión (GINIB), Departamento de Ingeniería Biomédica, Universidad de los Andes, Bogotá, Colombia.

出版信息

Front Bioeng Biotechnol. 2022 Oct 28;10:1003004. doi: 10.3389/fbioe.2022.1003004. eCollection 2022.

Abstract

Community acquired infections caused by Meticillin-resistant (MRSA) have become a growing concern due to its impact on the world public health. This microorganism is a commonly spreading pathogen associated predominantly with skin infections and connected to other more severe conditions (septic shock, and generalized infection). The lack of highly effective antibiotics and treatments to control skin infections with has led to the search of novel therapies using alternative agents such as antimicrobial peptides (AMPs). In order to obtain a viable administration route to counteract superficial skin infections (impetigo, abscesses, furuncles, and cellulitis), a topical formulation based on Magnetite-Buforin-II-silver nanobioconjugates as active antibacterial agents was designed by their dispersion in O/W concentrated emulsions. The prepared topical characterization indicated that O/W emulsions were stable in time, the droplets size remained within the appropriate values (∼1 µm) and their rheological properties, such as pseudoplastic and shear-thinning behavior, remained unchanged for up to 3 months. Additionally, hemolysis and platelet aggregation tests were acceptable (i.e., 14.72 ± 2.62% and 8.06 ± 2.90%, respectively) in compliance with the ISO-10993 standard. Furthermore, the treatment reduced significantly ( 0.0001) the growth of both clinical isolated MRSA and wild Type strains as evidenced by the contact diffusion method. These results are important in the context of proposing new alternatives that allow manage effectively the threat posed by the antibiotic resistant bacterial strains, which jeopardize the lives of thousands of people every year.

摘要

耐甲氧西林金黄色葡萄球菌(MRSA)引起的社区获得性感染因其对全球公共卫生的影响而日益受到关注。这种微生物是一种常见的传播病原体,主要与皮肤感染相关,并与其他更严重的病症(感染性休克和全身性感染)有关。缺乏控制皮肤感染的高效抗生素和治疗方法,促使人们寻找使用抗菌肽(AMPs)等替代药物的新疗法。为了获得一种可行的给药途径来对抗浅表皮肤感染(脓疱病、脓肿、疖肿和蜂窝织炎),基于磁铁矿-蟾蜍灵-II-银纳米生物共轭物作为活性抗菌剂,通过将其分散在水包油浓缩乳液中设计了一种局部用制剂。所制备的局部用制剂特性表明,水包油乳液在一段时间内是稳定的,液滴尺寸保持在合适的值(约1 µm)范围内,其流变学性质,如假塑性和剪切变稀行为,在长达3个月内保持不变。此外,溶血和血小板聚集试验符合ISO-10993标准(分别为14.72±2.62%和8.06±2.90%)。此外,通过接触扩散法证明,该治疗显著降低了临床分离的MRSA和野生型菌株的生长(P<0.0001)。在提出新的替代方案以有效应对抗生素耐药菌株构成的威胁方面,这些结果具有重要意义,抗生素耐药菌株每年危及数千人的生命。

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