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Titlebook: Engineered Antimicrobial Surfaces; S. Snigdha,Sabu Thomas,Nandakumar Kalarikkal Book 2020 Springer Nature Singapore Pte Ltd. 2020 antimicr

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A Thirst for Polymeric Antimicrobial Surfaces/Coatings for Diverse Applications, only happen to wander for a certain period of time in their world. In spite of our own cell count, even our own body is outnumbered by 10:1 microbial cells and we are living only because we can accept this fact and seek to coexist [.]. Sometimes, the presence of microorganisms is essential like in
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Potential Target Sites that Are Affected by Antimicrobial Surfaces,the antimicrobial target sites, their structures, roles, and their inhibition. Life-essential targets include FtsZ and their regulatory proteins; they mediate the cell division and its accompanying modifications in the cell wall. Peptidoglycan biosynthesis enzymes also belong to life-essential targe
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Carbon Nanotube-Based Antimicrobial and Antifouling Surfaces,single- and multi-walled CNTs in the development of antimicrobial and antifouling surfaces. The performance of CNT-containing surfaces seems to depend on a multiplicity of factors that can be conjugated in order to improve their activity. A substantially higher body of knowledge has accumulated rega
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Modulating Surface Energy and Surface Roughness for Inhibiting Microbial Growth,ng-term antibacterial and/or antifouling properties. These include both active (bacteria killing) and passive (preventing bacteria attachment) strategies. We also look at fabrication techniques that replicate nature-inspired micro- and/or nano-patterns onto surfaces as well as other synthetic ways t
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Antimicrobial Metal-Based Nanomaterials and Their Industrial and Biomedical Applications,s. Antibacterial and antifungal metal-based nanocompounds are of great interest to fight microbial pathogens. In this regard, large numbers of studies have been devoted to synthesize and fabricate nanosized fillers and nanocomposites possessing antimicrobial properties. This book chapter aims to giv
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Potential Environmental Effects of Engineered Antimicrobial Surfaces,al products over the last decade. Their regular use in number of consumer products has been linked with increased concern for human and environmental health due to the potential toxicological implications of the mostly widely used engineered nanoparticles (ENPs), which is found to have an important
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Potential Target Sites that Are Affected by Antimicrobial Surfaces, it regulates several genes; we reviewed the quorum quenching through several approaches. Other targets would provide new anti-virulence drugs. The .-alanylation of teichoic acid represents a potential target in Gram-positive bacteria; we discussed the specificity and inter-species conservation of t
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2524-5384 and undergraduate students, and other professionals in the fields of polymer science and engineering, materials science, surface science, bioengineering and chemical engineering..978-981-15-4632-7978-981-15-4630-3Series ISSN 2524-5384 Series E-ISSN 2524-5392
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