Microbial Biofilms

Microbial Biofilms

Author: Dharumadurai Dhanasekaran

Publisher: BoD – Books on Demand

Published: 2016-07-13

Total Pages: 526

ISBN-13: 9535124358

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In the book Microbial Biofilms: Importance and applications, eminent scientists provide an up-to-date review of the present and future trends on biofilm-related research. This book is divided with four subdivisions as biofilm fundamentals, applications, health aspects, and their control. Moreover, this book also provides a comprehensive account on microbial interactions in biofilms, pyocyanin, and extracellular DNA in facilitating Pseudomonas aeruginosa biofilm formation, atomic force microscopic studies of biofilms, and biofilms in beverage industry. The book comprises a total of 21 chapters from valued contributions from world leading experts in Australia, Bulgaria, Canada, China, Serbia, Germany, Italy, Japan, the United Kingdom, the Kingdom of Saudi Arabia, Republic of Korea, Mexico, Poland, Portugal, and Turkey. This book may be used as a text or reference for everyone interested in biofilms and their applications. It is also highly recommended for environmental microbiologists, soil scientists, medical microbiologists, bioremediation experts, and microbiologists working in biocorrosion, biofouling, biodegradation, water microbiology, quorum sensing, and many other related areas. Scientists in academia, research laboratories, and industry will also find it of interest.


Measuring Bacterial Adhesion with Atomic Force Microscopy

Measuring Bacterial Adhesion with Atomic Force Microscopy

Author: Terri Anne Camesano

Publisher: Springer

Published: 2011-01-18

Total Pages: 300

ISBN-13: 9781441955968

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This book focuses on quantitative interpretation of AFM data related to biomedical and environmental applications of bacterial adhesion and bacteria-surface interactions. It provides information that demonstrates how one can collect and analyze AFM data on bacterial systems that will be useful for numerous applications, such as bacterial-biomaterial interactions, bacterial-soil interactions in the subsurface, and inactivation of bacterial spores. This work highlights the most recent advances in applying physical models to AFM data to obtain information that is relevant to these applications.


Open-Space Microfluidics

Open-Space Microfluidics

Author: Emmanuel Delamarche

Publisher: John Wiley & Sons

Published: 2018-01-18

Total Pages: 450

ISBN-13: 3527696792

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Summarizing the latest trends and the current state of this research field, this up-to-date book discusses in detail techniques to perform localized alterations on surfaces with great flexibility, including microfluidic probes, multifunctional nanopipettes and various surface patterning techniques, such as dip pen nanolithography. These techniques are also put in perspective in terms of applications and how they can be transformative of numerous (bio)chemical processes involving surfaces. The editors are from IBM Zurich, the pioneers and pacesetters in the field at the forefront of research in this new and rapidly expanding area.


Bacterial Adhesion

Bacterial Adhesion

Author: Madilyn Fletcher

Publisher: John Wiley & Sons

Published: 1996-09-21

Total Pages: 378

ISBN-13: 9780471021858

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BACTERIAL ADHESION Molecular and Ecological Diversity Edited byMadilyn Fletcher Over the last twenty years, research has revealed the enormouscomplexity underlying the phenomenon of bacterial adhesion. Theinitial research goal was to understand the mechanism of attachmentand its effects on the bacteria as well as the host. As researchprogressed, however, it became evident that many differentattachment mechanisms exist. These diverse forms of adhesion arethe results of numerous evolutionary pressures, and each may bepart of a larger behavioral strategy. This comprehensive overview details how diversity in habitat andecological requirements has led to enormous variety in adhesivecell components, underlying genetic determinants, and behavioralstrategies. It presents the latest research on adhesion mechanismsand strategies found in diverse environments and microorganisms,including the new environment of biomaterials. Bacterial Adhesion: Molecular and Ecological Diversity examinesadhesion as a strategy for nutrient access and as a phase in thecomplex behavior of life cycle processes. It covers the latestresearch and innovative approaches in the field, including: * Conceptual advances in research on the adhesion of bacteria tooral surfaces * Enhancing colonization in a fluctuating environment * The cellulosome: a cell-surface organelle for the adhesion to anddegradation of cellulose * Pseudomonas aeruginosa--versatile attachment mechanisms * Sensing, response, and adaptation to surfaces * Myxococcus coadhesion and role in the life cycle Edited by a leading authority on bacterial adhesion and featuringcontributions from the field's leading experts, this book speaks toresearchers in all areas of microbiology, biotechnology,environmental technology, and environmental science, as well asurology, immunology, and infectious diseases. Bacterial Adhesion: Molecular and Ecological Diversity is thelatest addition to the Wiley Series in Ecological and AppliedMicrobiology. Recent books in the series include: * Microbial Transformation and Degradation of Toxic OrganicChemicals edited by Lily Y. Young and Carl E. Cerniglia * Wastewater Microbiology by Gabriel Bitton * Environmental Microbiology edited by Ralph Mitchell * Biotechnology in Plant Disease Control edited by Ilan Chet * Antarctic Microbiology edited by E. Imre Friedmann * Effects of Acid Rain on Forest Processes edited by Douglas L.Godbold and Aloys Huttermann


Handbook of Bacterial Adhesion

Handbook of Bacterial Adhesion

Author: Yuehuei H. An

Publisher: Springer Science & Business Media

Published: 2000-01-21

Total Pages: 647

ISBN-13: 1592592244

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Research on bacterial adhesion and its significance is a major field involving many different aspects of nature and human life, such as marine science, soil and plant ecology, most importantly, the biomedical field. The adhesion ofbacteria to the food industry, and human tissue surfaces and implanted biomaterial surfaces is an important step in the patho genesis of infection. Handbook 0/ Bacterial Adhesion: Principles, Methods, and Applications is an outgrowth of the editors' own quest for information on laboratory techniques for studying bacte rial adhesion to biomaterials, bone, and other tissues and, more importantly, a response to significant needs in the research community. This book is designed to be an experimental guide for biomedical scientists, biomaterials scientists, students, laboratory technicians, or anyone who plans to conduct bacterial adhesion studies. More specifically, it is intended for all those researchers facing the chal lenge of implant infections in such devices as orthopedic prostheses, cardiovascular devices or catheters, cerebrospinal fluid shunts or extradural catheters, thoracic or abdominal catheters, portosystemic shunts or bile stents, urological catheters or stents, plastic surgical implants, oral or maxillofacial implants, contraceptive implants, or even contact lenses. It also covers research methods for the study of bacterial adhesion to tis sues such as teeth, respiratory mucosa, intestinal mucosa, and the urinary tract. In short, it constitutes a handbook for biomechanical and bioengineering researchers and students at all levels.


Atomic Force Microscopy For Biologists (2nd Edition)

Atomic Force Microscopy For Biologists (2nd Edition)

Author: Victor J Morris

Publisher: World Scientific

Published: 2009-08-11

Total Pages: 423

ISBN-13: 190897821X

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Atomic force microscopy (AFM) is part of a range of emerging microscopic methods for biologists which offer the magnification range of both the light and electron microscope, but allow imaging under the 'natural' conditions usually associated with the light microscope. To biologists, AFM offers the prospect of high resolution images of biological material, images of molecules and their interactions even under physiological conditions, and the study of molecular processes in living systems. This book provides a realistic appreciation of the advantages and limitations of the technique and the present and future potential for improving the understanding of biological systems.The second edition of this bestseller has been updated to describe the latest developments in this exciting field, including a brand new chapter on force spectroscopy. The dramatic developments of AFM over the past ten years from a simple imaging tool to the multi-faceted, nano-manipulating technique that it is today are conveyed in a lively and informative narrative, which provides essential reading for students and experienced researchers alike./a


Bacterial Adhesion

Bacterial Adhesion

Author: Dirk Linke

Publisher: Springer Science & Business Media

Published: 2011-05-10

Total Pages: 376

ISBN-13: 9400709404

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Over the last few years, bacterial adhesion has become a more and more important and active scientific area, but the field lacks communication and scientific exchange between medical and microbiology researchers who work with the relevant biological systems, and biochemists, structural biologists and physicists, who know and understand the physical methods best suited to investigate the phenomenon at the molecular level. The field consequently would benefit from a cross-disciplinary conference enabling such communication. This book tries to bridge the gap between the disciplines.


Atomic Force Microscopy

Atomic Force Microscopy

Author: Peter Eaton

Publisher: Oxford University Press

Published: 2010-03-25

Total Pages: 257

ISBN-13: 0199570450

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Atomic force microscopes are very important tools for the advancement of science and technology. This book provides an introduction to the microscopes so that scientists and engineers can learn both how to use them, and what they can do.


Nanoscale Imaging

Nanoscale Imaging

Author: Yuri L. Lyubchenko

Publisher: Humana Press

Published: 2018-06-29

Total Pages: 600

ISBN-13: 9781493985906

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This volume presents readers with the latest techniques to study nanoimaging and nanoprobing in application to a broad range of biological systems. The chapters in this book are divided into five parts, and cover topics such as imaging and probing of biomacromolecules including high-speed imaging and probing with AFM; probing chromatin structure with magnetic tweezers; and fluorescence correlation spectroscopy on genomic DNA in living cells. Written in the highly successful Methods in Molecular Biology series format, chapters include introductions to their respective topics, lists of the necessary materials and reagents, step-by-step, readily reproducible laboratory protocols, and tips on troubleshooting and avoiding known pitfalls. Cutting-edge and through, Nanoscale Imaging: Methods and Protocols is a valuable resource for anyone interested in learning more about this developing and expanding field.


Atomic Force Microscopy

Atomic Force Microscopy

Author: Ahmed Touhami

Publisher: Springer Nature

Published: 2022-06-01

Total Pages: 97

ISBN-13: 3031023854

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Over the last two decades, Atomic Force Microscopy (AFM) has undoubtedly had a considerable impact in unraveling the structures and dynamics of microbial surfaces with nanometer resolution, and under physiological conditions. Moreover, the continuous innovations in AFM-based modalities as well as the combination of AFM with modern optical techniques, such as confocal fluorescence microscopy or Raman spectroscopy, increased the diversity and volume of data that can be acquired in an experiment. It is evident that these combinations provide new ways to investigate a broad spectrum of microbiological processes at the level of single cells. In this book, I have endeavored to highlight the wealth of AFM-based modalities that have been implemented over the recent years leading to the multiparametric and multifunctional characterization of, specifically, bacterial surfaces. Examples include the real-time imaging of the nanoscale organization of cell walls, the quantification of subcellular chemical heterogeneities, the mapping and functional analysis of individual cell wall constituents, and the probing of the nanomechanical properties of living bacteria. It is expected that in the near future more AFM-based modalities and complementary techniques will be combined into single experiments to address pertinent problems and challenges in microbial research. Such improvements may make it possible to address the dynamic nature of many more microbial cell surfaces and their constituents, including the restructuring of cellular membranes, pores and transporters, signaling of cell membrane receptors, and formation of cell-adhesion complexes. Ultimately, manifold discoveries and engineering possibilities will materialize as multiparametric tools allow systems of increasing complexity to be probed and manipulated.