首页> 外文期刊>Journal of chromatography, B. Analytical technologies in the biomedical and life sciences >The relationship between Candida species charge density and chitosan activity evaluated by ion-exchange chromatography
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The relationship between Candida species charge density and chitosan activity evaluated by ion-exchange chromatography

机译:离子交换色谱法评价念珠菌菌种电荷密度与壳聚糖活性的关系

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Chitosan, a natural biopolymer presents antifungal activity that seems to be dependent on the interaction of its cationic amino groups and yeast cell surface. In this work we used ion-exchange chromatography to assess the surface charge density of Candida species and subsequently to relate this with their sensitivity profile to chitosan. The ability of several strains from distinct Candida species to interact with strong anionic and cationic exchangers was tested and the yeasts charge surface was assessed by measuring the zeta potential. Our results showed that all the yeast cells tested presented no interaction with the cationic resin and a species-related pattern of interaction was observed with the anionic resin. Specifically, regarding the Q-Sepharose support, Candida glabrata showed the lower retention affinity, followed by Candida albicans, presenting Candida tropicalis an intermediate profile; Candida parapsilosis and Candida guilliermondii revealed a stronger ionic interaction. The yeasts retention synergy in the anionic resin corroborates with the zeta potential outcomes. The behavior observed fit with sensitivity patterns to chitosan as the most susceptible species to chitosan presented higher affinity to the anionic resin in contrast to the less sensitive ones (C. albicans and C. glabrata). This data confirms and reinforces that chitosan activity is probably mediated by an ionic reaction between its amino free groups and ionic charges at the cell surface.
机译:壳聚糖是一种天然的生物聚合物,其抗真菌活性似乎取决于其阳离子氨基与酵母细胞表面的相互作用。在这项工作中,我们使用离子交换色谱法评估了念珠菌物种的表面电荷密度,然后将其与壳聚糖的敏感性相联系。测试了来自不同念珠菌属物种的几种菌株与强阴离子和阳离子交换剂相互作用的能力,并通过测量ζ电势来评估酵母的电荷表面。我们的结果表明,所有测试的酵母细胞均未显示与阳离子树脂的相互作用,并且与阴离子树脂观察到物种相关的相互作用模式。具体而言,就Q-琼脂糖的支持而言,光滑念珠菌显示出较低的保留亲和力,其次是白色念珠菌,呈现出热带念珠菌的中间特征。副念珠菌和古德念珠菌显示出较强的离子相互作用。酵母在阴离子树脂中的保留协同作用与zeta潜在结果相符。观察到的行为与对壳聚糖的敏感性模式相吻合,因为对壳聚糖最敏感的物种与对阴离子树脂的亲和力较弱的物种(白色念珠菌和光滑念珠菌)相反。该数据证实并增强了壳聚糖的活性可能是由其氨基游离基团和细胞表面的离子电荷之间的离子反应介导的。

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