Bioelectrochemistry: Principles and Practice provides a comprehensive compilation of all the physicochemical aspects of the different biochemical and physiological processes.
Macromolecules, essentially nucleic acids, proteins and complex carbohydrates, are the building blocks of cell structure and function. This fifth volume in the "Bioelectrochemistry" series deals essentially with water-soluble biomacromolecules, since the properties of membrane-bound proteins are considered in other volumes of this series. The first chapter provides an extensive review of the structure, chemical reactivity and electromagnetic properties of nucleic acids.
The following five chapters concentrate on proteins, their structure, folding and function, the electrochemistry of redox proteins and voltammetric methods. The last chapter considers the chemistry and properties of glycosaminoglycans, the complex charged polysaccharides of the cell surface and extracellular matrix.
This series is intended as a set of source books for graduate and postgraduate students as well as research workers at all levels in bioelectrochemistry. Help Centre.
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Adsorption/desorption of biomacromolecules involved in catalytic hydrogen evolution.
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Structure, chemical reactivity and electromagnetic properties of nucleic acids. Proteins: Structure, folding and function. Tt-mechanism for energy conversion in polypeptides and proteins.
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Tt hydrophobic paradigm for protein folding and function. Electrochemistry of redox proteins. Applications of voltammetric methods for probing the chemistry of redox proteins.
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Bioelectrochemistry represents an interdisciplinary scientific field linking together relevant areas of biology, medicine, chemistry, and physics. It is therefore not surprising that research in bioelectrochemistry requires the use of a great many experimental methods.
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These methods are, however, mostly from the methodological arsenal of classical natural sciences so that a description of general principles of common methods of biology, chemistry, physics, and medicine is not presented in this volume. Thus, this volume does not attempt to give an exhaustive survey of techniques used in bioelectrochemical research. The principles of several techniques and methodologies are mainly reviewed from the viewpoint of their specific application in studies of electrochemical and interfacial phenomena in various biological systems involving simple low-molecular-mass molecules of biological significance, biomacro- molecules and their conjugates like for instance chromatine or mem- branes , cells and living organisms.