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Antimicrobial lectin from Schinus terebinthifolius leaf.

机译:特异宾菌叶的抗菌素凝集素。

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Aims: Schinus terebinthifolius leaves are used for treating human diseases caused by micro-organisms. This work reports the isolation, characterization and antimicrobial activity of S. terebinthifolius leaf lectin (SteLL). Methods and Results: The isolation procedure involved protein extraction with 0.15 mol l-1 NaCl, filtration through activated charcoal and chromatography of the filtrate on a chitin column. SteLL is a 14-kDa glycopeptide with haemagglutinating activity that is inhibited by N-acetyl-glucosamine, not affected by ions (Ca2+ and Mg2+) and stable upon heating (30-100 degrees C) as well as over the pH 5.0-8.0. The antimicrobial effect of SteLL was evaluated by determining the minimal inhibitory (MIC), bactericide (MBC) and fungicide (MFC) concentrations. Lectin was active against Escherichia coli, Klebsiella pneumoniae, Proteus mirabilis, Pseudomonas aeruginosa, Salmonella enteritidis and Staphylococcus aureus. Highest bacteriostatic and bactericide effects were detected for Salm. enteritidis (MIC: 0.45 micro g ml-1) and Staph. aureus (MBC: 7.18 micro g ml-1), respectively. SteLL impaired the growth (MIC: 6.5 micro g ml-1) and survival (MFC: 26 micro g ml-1) of Candida albicans. Conclusions: SteLL, a chitin-binding lectin, purified in milligram quantities, showed antimicrobial activity against medically important bacteria and fungi. Significance and Impact of the Study: SteLL can be considered as a new biomaterial for potential antimicrobial applications.
机译:目的:特异宾鞭草叶用于治疗由微生物引起的人类疾病。这项工作报告了特异链霉菌叶凝集素(SteLL)的分离,表征和抗菌活性。方法与结果:分离步骤为用0.15 mol l -1 NaCl提取蛋白质,经活性炭过滤,滤液在几丁质柱上层析。 SteLL是一种具有血凝活性的14 kDa糖肽,可被N-乙酰氨基葡萄糖抑制,不受离子(Ca 2 + 和Mg 2 + )的影响,并且在加热(30-100摄氏度)以及超过pH 5.0-8.0。通过确定最小抑菌浓度(MIC),杀菌剂(MBC)和杀菌剂(MFC)浓度来评估SteLL的抗菌作用。凝集素对大肠杆菌,肺炎克雷伯菌,奇异变形杆菌,铜绿假单胞菌,肠炎沙门氏菌和金黄色葡萄球菌具有活性。萨尔姆菌具有最高的抑菌和杀菌作用。肠炎(MIC:0.45微克/毫升 -1 )和葡萄球菌。金黄色葡萄球菌(MBC:7.18 micro g ml -1 )。 SteLL损害了白色念珠菌的生长(MIC:6.5 micro g ml -1 )和存活(MFC:26 micro g ml -1 )。结论:几毫克纯化的几丁质结合凝集素SteLL对医学上重要的细菌和真菌显示出抗菌活性。研究的意义和影响:SteLL可以被认为是潜在抗菌应用的新型生物材料。

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