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首页> 外文期刊>Microbial Pathogenesis >Antimicrobial potential of Alpinia purpurata lectin (ApuL): Growth inhibitory action, synergistic effects in combination with antibiotics, and antibiofilm activity
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Antimicrobial potential of Alpinia purpurata lectin (ApuL): Growth inhibitory action, synergistic effects in combination with antibiotics, and antibiofilm activity

机译:Alpinia purpurata凝集素(APUL)的抗菌潜力:生长抑制作用,与抗生素组合的协同效应,以及抗生素活性

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The Alpinia purpurata inflorescence contains a lectin (ApuL), which has immunomodulatory activities on human cells. In the present work, it was evaluated the antibacterial and antifungal effects of ApuL against human pathogens. ApuL showed bacteriostatic activity against non-resistant (UFPEDA-02) and an oxacillin-resistant isolate (UFPEDA-672) of Staphylococcus aureus with minimal inhibitory concentrations (MIC50) of 50 and 400 mu g/mL, respectively. In addition, it showed bactericidal effect on the non-resistant isolate (minimal bactericidal concentration: 200 mu g/mL). For Candida albicans and Candida parapsilosis, ApuL showed fungistatic effect (MIC50: 200 and 400 mu g/mL, respectively). The lectin was able to impair the viability of the microorganism cells, as indicated by propidium iodide (PI) staining. Analysis of growth curves, protein leakage, and ultrastructural changes supported that ApuL acts through distinct mechanisms on S. aureus isolates. Ultrastructural analysis of ApuL-treated Candida cells revealed malformations with elongations and bulges. ApuL-oxacillin combination showed synergistic effect on the oxacillin-resistant isolates UFPEDA-670 and 671, which were not sensitive to lectin alone. Synergism was also detected for ApuL-ceftazidime against a multidrug-resistant isolate of Pseudomonas aeruginosa. Synergistic action of ApuL-fluconazole was detected for C. parapsilosis, which was insensitive to the drug alone. Biofilm formation by S. aureus non-resistant isolate and C. albicans was remarkably inhibited by ApuL at sub-inhibitory concentrations. In conclusion, ApuL showed differential effects on non-resistant and resistant bacterial isolates, was active against Candida species, and showed synergistic action in combination with antibiotics.
机译:alpinia purpurata花序含有凝集素(Apul),其具有关于人细胞的免疫调节活性。在目前的工作中,评估APUL对人病原体的抗菌和抗真菌效应。 APUL显示出对不耐性(UFPEDA-02)的抑菌活性和葡萄球菌的氧化虫抗性分离物(UFPEDA-672),其分别具有50和400μg/ ml的最小抑制浓度(MIC50)。此外,它显示出对不耐性分离物的杀菌作用(最小的杀菌浓度:200μg/ ml)。对于念珠菌和念珠菌甲醛,APUL分别显示出稳定性效果(分别为MIC50:200和400μmg/ ml)。凝集素能够损害微生物细胞的活力,如碘化丙锭(PI)染色所示。分析生长曲线,蛋白质泄漏和超微结构变化,支持APUL通过S. aureus分离株的不同机制作用。 APUL处理的念珠菌细胞的超微结构分析显示出伸长率和凸起的畸形。 Apul-oxacillin组合显示出对氧代虫蛋白抗性UFPEDA-670和671的协同作用,其对单独的凝集素不敏感。对于APUL-CEFTAZIDIME对铜绿假单胞菌的多药隔离物也检测到协同作用。检测到Apul-氟康唑的协同作用,对C.Parapsiliss单独对药物不敏感。在亚抑制浓度下,APUL显着抑制了金黄色葡萄球菌的生物膜形成。总之,APUL对不耐性和抗性细菌分离株的差异效应,对念珠菌物种有效,并表现出与抗生素组合的协同作用。

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