Cornu aspersum mucus

  • 文章类型: Journal Article
    具有抗菌活性的新天然化合物的发现和研究是减少抗菌素耐药性传播的新的潜在策略。这项研究显示,第一次,两种MW<20kDa且MW>20kDa的玉米花粘液级分对五种细菌病原体-蜡样芽孢杆菌1085,痤疮丙酸杆菌1897,肠沙门氏菌8691,粪肠球菌3915和屎肠球菌8754的潜在抗菌潜力。使用从头测序,在MW<20kDa的级分中鉴定了16种具有潜在抗菌活性的新肽。通过在12%十二烷基硫酸钠-聚丙烯酰胺凝胶电泳(SDS-PAGE)和生物信息学上的蛋白质组学分析确定MW>20kDa的粘液级分中的一些生物活性化合物。与蛋白质和糖蛋白有很高的同源性,在名为aspernin的粘液蛋白中具有潜在的抗菌活性,血蓝素,H-凝集素,和L-氨基酸氧化酶样蛋白,以及粘蛋白(粘蛋白-5AC,黏蛋白-5B,粘蛋白2和粘蛋白17)。我们假设,在>20kDa的组分中确定的生物活性成分之间的协同作用是针对浓度在32至128µg/mL之间的测试病原体的高抗菌活性的原因。与万古霉素相当,但对酿酒酵母模型真核细胞没有细胞毒性作用。此外,积极的影响,通过降低细胞内氧化损伤水平和增加抗氧化能力,在酿酒酵母细胞上发现了苹果的两种粘液提取物级分。这些发现可以作为进一步研究的基础,以开发一种新的抗菌剂来防止抗生素耐药性的发展。
    The discovery and investigation of new natural compounds with antimicrobial activity are new potential strategies to reduce the spread of antimicrobial resistance. The presented study reveals, for the first time, the promising antibacterial potential of two fractions from Cornu aspersum mucus with an MW < 20 kDa and an MW > 20 kDa against five bacterial pathogens-Bacillus cereus 1085, Propionibacterium acnes 1897, Salmonella enterica 8691, Enterococcus faecalis 3915, and Enterococcus faecium 8754. Using de novo sequencing, 16 novel peptides with potential antibacterial activity were identified in a fraction with an MW < 20 kDa. Some bioactive compounds in a mucus fraction with an MW > 20 kDa were determined via a proteomic analysis on 12% sodium dodecyl sulfate-polyacrylamide gel electrophoresis (SDS-PAGE) and bioinformatics. High homology with proteins and glycoproteins was found, with potential antibacterial activity in mucus proteins named aspernin, hemocyanins, H-lectins, and L-amino acid oxidase-like protein, as well as mucins (mucin-5AC, mucin-5B, mucin-2, and mucin-17). We hypothesize that the synergy between the bioactive components determined in the composition of the fraction > 20 kDa are responsible for the high antibacterial activity against the tested pathogens in concentrations between 32 and 128 µg/mL, which is comparable to vancomycin, but without cytotoxic effects on model eukaryotic cells of Saccharomyces cerevisiae. Additionally, a positive effect, by reducing the levels of intracellular oxidative damage and increasing antioxidant capacity, on S. cerevisiae cells was found for both mucus extract fractions of C. aspersum. These findings may serve as a basis for further studies to develop a new antibacterial agent preventing the development of antibiotic resistance.
    导出

    更多引用

    收藏

    翻译标题摘要

    我要上传

       PDF(Pubmed)

  • 文章类型: Journal Article
    如今,已经观察到对各种疾病具有预防或治疗潜力的天然化合物的兴趣增加。鉴于氧化应激参与胃溃疡(GU)的发病机制和广泛的生物活性化合物从蜗牛分离,本研究旨在研究玉米的保护作用(Müller,1774)乙醇诱导的GU上的粘液。雄性白化小鼠分为对照组,乙醇,粘液+乙醇和粘液+奥美拉唑治疗组。通过施用96%乙醇(10mL/kg,每个操作系统)。溃疡诱导前一小时,粘液+乙醇组小鼠用粘液预处理(20mg/kg,每个操作系统),粘液+奥美拉唑组小鼠用奥美拉唑预处理(20mg/kg,每个操作系统)。乙醇给药引起胃粘膜严重病变,谷胱甘肽(GSH)和超氧化物歧化酶(SOD)显着降低,过氧化氢酶,和谷胱甘肽还原酶(GR)活性。与乙醇组相比,在有粘液或奥美拉唑预先给药的动物中,观察到以下情况:只有少数出血场,显著降低GU指数,计算出73%的粘液保护和78%的奥美拉唑保护,粘膜GSH、SOD和GR活性显著恢复。此外,粘液抑制了幽门螺杆菌的生长。因此,在乙醇诱导的GU模型中,刺槐粘液对胃粘膜和胃抗氧化潜能的保护作用表明,它可能是预防这种疾病的良好工具。
    Nowadays, an increased interest in natural compounds with preventive or therapeutic potential for various diseases has been observed. Given the involvement of oxidative stress in the pathogenesis of gastric ulcer (GU) and the wide range of bioactive compounds isolated from snails, this study aimed to investigate the protective effect of Cornu aspersum (Müller, 1774) mucus on ethanol-induced GUs. Male albino mice were divided into Control, Ethanol, Mucus + Ethanol and Mucus + Omeprazole treated groups. The GUs were induced by administration of 96% ethanol (10 mL/kg, per os). One hour before ulcer induction, the mice of Mucus + Ethanol group were pretreated with mucus (20 mg/kg, per os), and the mice of Mucus + Omeprazole group were pretreated with omeprazole (20 mg/kg, per os). Ethanol administration caused grave lesions of gastric mucosa and a significant decrease of glutathione (GSH) and superoxide dismutase (SOD), catalase, and glutathione reductase (GR) activities. In the animals with mucus or omeprazole pre-administration compared to the Ethanol group, the following were observed: only a small number of hemorrhagic fields, significantly reduced GU index with calculated 73% protection by mucus and 78% protection by omeprazole, and significant recovery of mucosal GSH and SOD and GR activities. In addition, the mucus inhibited Helicobacter pylori growth. Thus, the protective effect of C. aspersum mucus on both gastric mucosa and gastric antioxidant potential in ethanol-induced GU model suggests that it may serve as a good tool for prevention of this disease.
    导出

    更多引用

    收藏

    翻译标题摘要

    我要上传

    求助全文

  • 文章类型: Journal Article
    Natural products have long played a major role in medicine and science. The garden snail Cornu aspersum is a rich source of biologically active natural substances that might be an important source for new drugs to treat human disease. Based on our previous studies, nine fractions containing compounds with Mw <3 kDa; <10 kDa; <20 kDa; >20 kDa; >30 kDa>50 kDa and between 3 and 5 kDa; 5 and 10 kDa; and 10 and 30 kDa were purified from the mucus of C. aspersum and analyzed by tandem mass spectrometry (MALDI-TOF/TOF). Seventeen novel peptides with potential antibacterial activity were identified by de novo MS/MS sequencing using tandem mass spectrometry. The different fractions were tested for antibacterial activity against Gram─ (Pseudomonas aureofaciens and Escherichia coli) and Gram+ (Brevibacillus laterosporus) bacterial strains as well the anaerobic bacterium Clostridium perfringens. These results revealed that the peptide fractions exhibit a predominant antibacterial activity against B. laterosporus; the fraction with Mw 10-30 kDa against E. coli; another peptide fraction <20 kDa against P. aureofaciens; and the protein fraction >20 kDa against the bacterial strain C. perfringens. The discovery of new antimicrobial peptides (AMPs) from natural sources is of great importance for public health due to the AMPs\' effective antimicrobial activities and low resistance rates.
    导出

    更多引用

    收藏

    翻译标题摘要

    我要上传

       PDF(Sci-hub)

       PDF(Pubmed)

公众号