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BIOLOGICAL SYNTHESIS OF NANOPARTICLES FROM MEDICINAL PLANTS AND ITS USES IN INHIBITING BIOFILM FORMATION

机译:药用植物纳米微粒的生物合成及其在抑制生物膜形成中的应用

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Pathogenic micro-organisms have become the main problem in today’s world. All microbes are getting resistant to antibiotics. This is due to the formation of biofilm layer above the micro-organisms. Learning the characteristics of biofilm can help us in treating the infectious disease induced via micro-organisms. They affect human’s life in some or the other way. For example, the plaque formed in our teeth that cause tooth decay is due to the bacterial biofilm. When micro-organisms stick to moist or wet surfaces, it produces glue-like, slimy contents which are known as biofilms. Biofilms belong to the sessile communities, communities in which organisms are considered as immobile. Biofilms are enclosed within a matrix, known as extracellular polymeric matrix, which are secreted by micro-organisms. Biofilms attached to the surfaces are affected by certain characteristics like the growth medium, substratum to which it is attached and cellular surfaces. Each of these factors can either increase or decrease the hold of biofilm on the surfaces. With the help of biofilms, micro-organisms protect themselves from antibiotics and cause various infectious disease. Recent studies had proved medicinal plants to be effective in treating disease caused by microbes. Medicinal plants produce active compounds during secondary metabolism which help in the treatment of infectious disease. The problem that arises with antibiotics is that they are unable to penetrate through the biofilm. This problem is solved by converting antibiotics in nanoparticle size. Nanoparticles have high penetrating ability than the antibiotics. They help in controlling microbial growth by killing them.
机译:病原微生物已成为当今世界的主要问题。所有微生物都对抗生素产生抗药性。这是由于在微生物上方形成了生物膜层。学习生物膜的特征可以帮助我们治疗由微生物引起的传染病。它们以某种方式影响人类的生活。例如,在我们牙齿上形成的导致牙齿腐烂的菌斑是由于细菌生物膜引起的。当微生物粘附在潮湿或潮湿的表面上时,它会产生胶状,粘稠的内容物,被称为生物膜。生物膜属于无柄群落,无生物被认为是不可移动的。生物膜被包裹在一个基质中,该基质被称为细胞外聚合物基质,由微生物分泌。附着在表面的生物膜受某些特性的影响,例如生长介质,附着在其上的基质和细胞表面。这些因素中的每一个都可以增加或减少生物膜在表面上的附着力。借助生物膜,微生物可以保护自己免受抗生素的侵害,并引起各种传染病。最近的研究证明药用植物可有效治疗微生物引起的疾病。药用植物在次级代谢过程中会产生活性化合物,有助于治疗传染病。抗生素引起的问题是它们不能穿透生物膜。通过将抗生素转换成纳米颗粒尺寸可以解决该问题。纳米颗粒具有比抗生素更高的穿透能力。它们通过杀死微生物来帮助控制微生物的生长。

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