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首页> 外文期刊>Turkish Journal of Agriculture: Food Science and Technology >Anti-Biofilm and Antimicrobial Activities of Five Edible and Medicinal Macrofungi Samples on Some Biofilm Producing Multi Drug Resistant Enterococcus Strains
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Anti-Biofilm and Antimicrobial Activities of Five Edible and Medicinal Macrofungi Samples on Some Biofilm Producing Multi Drug Resistant Enterococcus Strains

机译:抗生物膜和五种食用和药物Macrofungi样品的抗生物膜和抗菌活性在一些生物膜产生多毒性肠球菌菌株的生物膜上

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It is commonly well-known that biofilms are the predominant mode of bacterial growth, reflected in the clinic observations, where approximately 80% of all bacterial infections are related to biofilms. Bacteria in biofilms are well protected against environmental stresses, antibiotics, disinfectants and the host’s immune system and are usually extremely difficult to eradicate. Due to common problems caused by biofilms, alternative anti-biofilm strategies must be developed. Enterococcus strains are able to form complex surface-associated communities (biofilms), which contribute to its resistance and persistence in both host and non-host environments, and are especially important in food processing and clinical environments. Enterococcus biofilms showed increased antimicrobial resistance to the most of antibiotics as compared to the planktonic bacteria, which make them difficult to combat. There is an increasing evidence that biofilms are often associated with infectious diseases. Novel anti-biofilm strategies must be designed to include natural bio products instead of common antibiotics. Mushrooms are a nutritionally functional foods and a source of pharmaceuticals having functions such as antitumor, immunomodulating, antioxidant, cardiovascular, anti-hypercholesterolemia, antiviral, antibacterial, anti-parasitic, antifungal, detoxification, hepatoprotective, and antidiabetic. In addition, they have a notable activity against biofilms. In this study, the antimicrobial and anti-biofilm activities of some medicinal and edible mushrooms, namely Morchella angusticeps Peck, Ganoderma lucidum (Curtis) P. Karst., Cerioporus squamosus (Huds.) Quél., Trametes versicolor (L.) Lloyd and Lentinula edodes (Berk.) Singer were screened against multi drug resistant Enterococcus strains. As a result, it was observed that these mushrooms have notable potency to develop alternative medicines to struggle infectious diseases and biofilms.
机译:通常众所周知,生物膜是临床观察中反映的细菌生长的主要模式,其中大约80%的细菌感染与生物膜有关。生物膜中的细菌可良好地免受环境压力,抗生素,消毒剂和宿主的免疫系统,并且通常难以根除。由于生物膜引起的常见问题,必须开发替代的抗生物膜策略。肠球菌菌株能够形成复杂的表面相关社区(生物膜),这有助于其宿主和非宿主环境中的抵抗和持久性,并且在食品加工和临床环境中尤为重要。与浮游生物相比,肠球菌生物膜显示出对大多数抗生素的抗菌性抗菌性增加,这使得它们难以打击。越来越多的证据表明生物膜通常与传染病有关。必须设计新的抗生物膜策略,包括天然生物产品而不是常见的抗生素。蘑菇是一种营养功能性食品和药物来源,具有抗肿瘤,免疫调节,抗氧化剂,心血管,抗高胆固醇血症,抗病毒,抗菌,抗菌,抗真菌,排毒,肝脏保护和抗糖尿病等功能。此外,它们对生物膜有一个值得注意的活动。在这项研究中,一些药用和食用蘑菇的抗菌和抗生物膜活性,即莫尔科拉·伊士狄斯佩克,灵芝(柯蒂斯)P.喀斯特,Cerioporus squamosus(HUDS。)Quél。,Trametes Versicolor(L.)Lloyd和Lloyd和Lentinula edodes(伯克。)歌手针对多种耐药肠球菌菌株进行筛选。结果,观察到这些蘑菇具有显着效力,可以促进替代药物以斗争传染性疾病和生物膜。

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