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Development of propolis nanoparticles for the treatment of bovine mastitis: in vitro studies on antimicrobial and cytotoxic activities

机译:蜂胶纳米粒子治疗牛乳腺炎的开发:抗菌和细胞毒性活性的体外研究

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摘要

This study describes the development of propolis nanoparticles (PNP) to treat bovine mastitis. Three PNP prepared with varying concentrations of propolis (5% and 7%, w/v) and the surfactants [poloxamer (1%, 3%, and 4%, w/v) and soy lecithin (0.25%, 0.7%, and 1%, w/v)]. PNP were characterized according to their size, polydispersity, zeta potential, pH, morphology, and physical stability. PNP were evaluated for their in vitro antimicrobial and cytotoxic effects. PNP obtained were spherical with a monodisperse distribution (polydispersity index 0.2) and an average particle size between 181 and 201 nm. Stability studies showed that PNP were stable over 150 d. The encapsulation efficiency of total phenolic content varied between 73% and 91%. The chromatographic profile of phenolic compounds from PNP showed selective encapsulation efficiency according to the polarity of compounds. All PNP showed antimicrobial activity against Staphylococcus aureus with a minimum inhibitory concentration ranging from 156 to 310 mu g mL(-1). The IC50 (the concentration responsible for reduction of cellular viability by half) for epithelial cells of bovine mammary gland (MAC-T, mammary alveolar cell-T) varied from 122.2 to 268.4 mu g mL(-1). Results showed that PNP represent a promising nanocarrier for high concentrations of propolis extract in a stable aqueous medium, while, at the same time, presenting antimicrobial activity accompanied by moderate cytotoxicity to the MAC-T cells.
机译:本研究描述了蜂胶纳米粒子(PNP)治疗牛乳腺炎的发展。用不同浓度的蜂胶制备的三种PNP(5%和7%,W / V)和表面活性剂[泊洛沙姆(1%,3%,4%,W / V)和大豆卵磷脂(0.25%,0.7%,和1%,w / v)]。根据尺寸,多分散性,Zeta电位,pH,形态和物理稳定性,PNP的特征在于。评估PNP的体外抗微生物和细胞毒性作用。获得的PNP与单分散分布(多分散指数<0.2)和181-20nm之间的平均粒径为球形。稳定性研究表明,PNP稳定超过150天。总酚醛含量的封装效率在73%和91%之间变化。来自PNP的酚类化合物的色谱分布显示根据化合物的极性的选择性包封效率。所有PNP都显示出对金黄色葡萄球菌的抗微生物活性,其最小抑制浓度范围为156至310μg(-1)。对牛乳腺(MAC-T,乳腺肺泡CELL-T)的上皮细胞的IC 50(负责降低细胞活力的浓度)从122.2至268.4μg(-1)不同。结果表明,PNP在稳定的水性介质中代表高浓度的蜂胶提取物的有前途的纳米载体,同时呈现伴随到MAC-T细胞的中等细胞毒性的抗微生物活性。

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