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首页> 外文期刊>Pharmaceutics >Antimicrobial Effect of Thymus capitatus and Citrus limon var. pompia as Raw Extracts and Nanovesicles
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Antimicrobial Effect of Thymus capitatus and Citrus limon var. pompia as Raw Extracts and Nanovesicles

机译:百里香和柑橘柠檬的抗菌作用。 mp藜作为原料提取物和纳米囊泡

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In view of the increasing interest in natural antimicrobial molecules, this study screened the ability of Thymus capitatus (TC) essential oil and Citrus limon var. pompia (CLP) extract as raw extracts or incorporated in vesicular nanocarriers against Streptococcus mutans and Candida albicans . After fingerprint, TC or CLP were mixed with lecithin and water to produce liposomes, or different ratios of water/glycerol or water/propylene glycol (PG) to produce glycerosomes and penetration enhancer vesicles (PEVs), respectively. Neither the raw extracts nor the nanovesicles showed cytotoxicity against human gingival fibroblasts at all the concentrations tested (1, 10, 100 μg/mL). The disc diffusion method, MIC-MBC/MFC, time-kill assay, and transmission electron microscopy (TEM) demonstrated the highest antimicrobial potential of TC against S. mutans and C. albicans . The very high presence of the phenol, carvacrol, in TC (90.1%) could explain the lethal effect against the yeast, killing up to 70% of Candida and not just arresting its growth. CLP, rich in polyphenols, acted in a similar way to TC in reducing S. mutans , while the data showed a fungistatic rather than a fungicidal activity. The phospholipid vesicles behaved similarly, suggesting that the transported extract was not the only factor to be considered in the outcomes, but also their components had an important role. Even if other investigations are necessary, TC and CLP incorporated in nanocarriers could be a promising and safe antimicrobial in caries prevention.
机译:鉴于对天然抗菌剂分子的兴趣日益浓厚,本研究筛选了百里香(TC)精油和柑桔柠檬皮(Citrus limon var)的能力。 Pompia(CLP)提取物可作为原始提取物或掺入抗变形链球菌和白色念珠菌的囊泡纳米载体中。指纹识别后,将TC或CLP与卵磷脂和水混合以产生脂质体,或以不同比例的水/甘油或水/丙二醇(PG)分别产生甘油体和渗透促进剂囊泡(PEV)。在所有测试浓度(1、10、100μg/ mL)下,原始提取物和纳米囊泡均未显示出对人牙龈成纤维细胞的细胞毒性。圆盘扩散法,MIC-MBC / MFC,时间杀灭测定法和透射电子显微镜(TEM)表明,TC对变形链球菌和白色念珠菌具有最高的抗菌潜力。 TC中苯酚香芹酚的含量很高(90.1%),可以解释它对酵母的致命作用,杀死了多达70%的念珠菌,而不仅阻止了它的生长。富含多酚的CLP在降低变形链球菌方面的作用与TC类似,而数据显示其具有抑真菌作用而不是杀菌作用。磷脂囊泡的行为类似,这表明转运的提取物不是要考虑的唯一因素,而且其成分也起着重要的作用。即使有必要进行其他研究,纳米载体中掺入的TC和CLP在预防龋齿方面也可能是一种有前途且安全的抗菌剂。

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