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Actinobacteria Isolated From Laminaria ochroleuca: A Source of New Bioactive Compounds

机译:从斜体海带中分离出的放线菌:一种新的生物活性化合物的来源

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Nature is the major reservoir of biologically active molecules. The urgent need of finding novel molecules for pharmaceutical application is prompting the research of underexplored environments, such as marine ecosystems. Here, we investigated cultivable actinobacteria associated with the macroalgae Laminaria ochroleuca and assessed their potential to produce compounds with antimicrobial or anticancer activities. A specimen of L. ochroleuca was collected in a rocky shore in northern Portugal, and fragments of tissues from different parts of the macroalgae (holdfast, stipe, and blades) were surface sterilized and plated in three culture media selective for actinobacteria. A total of 90 actinobacterial strains were isolated, most of which affiliated with the genus Streptomyces . Isolates associated with the genera Isoptericola , Rhodococcus , Nonomuraeae , Nocardiopsis , Microbispora , and Microbacterium were also obtained. Organic extracts from the isolates were tested for their antimicrobial activity using the agar-based disk diffusion method, followed by determination of minimum inhibitory concentration (MIC) values. Forty-five isolates inhibited the growth of Candida albicans and/or Staphylococcus aureus , with MIC values ranging from &0.5 to 1000 μg mL ~(?1). The actinobacterial isolates were also tested for their anticancer potential on two human cancer cell lines. Twenty-eight extracts affected the viability of at least one human cancer cell line (breast carcinoma T-47D and neuroblastoma SH-SY5Y) and non-carcinogenic endothelial cell line (hCMEC/D3). Seven extracts affected the viability of cancer cells only. This study revealed that L. ochroleuca is a rich source of actinobacteria with promising antimicrobial and anticancer activities and suggests that macroalgae may be a valuable source of actinobacteria and, consequently, of new molecules with biotechnological importance.
机译:大自然是生物活性分子的主要储存库。迫切需要寻找用于药物应用的新型分子,这促使人们对诸如海洋生态系统等未开发环境进行了研究。在这里,我们研究了与大型藻类海带海藻相关的可培养放线菌,并评估了它们产生具有抗微生物或抗癌活性的化合物的潜力。在葡萄牙北部的多岩石的海岸上收集了草的样本,对大型藻类不同部分(保持性,柄状和叶片状)的组织碎片进行了表面灭菌处理,然后将其接种在对放线菌有选择性的三种培养基中。总共分离出90种放线菌菌株,其中大多数与链霉菌属有关。还获得了与等翅目,红球菌,野菌科,诺卡氏菌,微双孢菌和微细菌属相关的分离株。使用基于琼脂的圆盘扩散法测试分离物的有机提取物的抗菌活性,然后确定最小抑制浓度(MIC)值。四十五种分离物抑制白色念珠菌和/或金黄色葡萄球菌的生长,MIC值范围<0.5至1000μgmL〜(?1)。还测试了放线菌分离株对两种人类癌细胞系的抗癌潜力。 28种提取物影响了至少一种人类癌细胞系(乳腺癌T-47D和神经母细胞瘤SH-SY5Y)和非致癌性内皮细胞系(hCMEC / D3)的生存能力。七种提取物仅影响癌细胞的生存能力。这项研究表明,草乳杆菌是放线菌的丰富来源,具有令人信服的抗微生物和抗癌活性,并表明大型藻类可能是放线菌的有价值来源,因此,是具有生物技术重要性的新分子的重要来源。

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