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This volume contains a comprehensive overview of peptide-lipid interactions by leading researchers. The first part covers theoretical concepts, experimental considerations, and thermodynamics. The second part presents new results obtained through site-directed EPR, electron microscopy, NMR, isothermal calorimetry, and fluorescence quenching. The final part covers problems of biological interest, including signal transduction, membrane transport, fusion, and adhesion. Key Features * world-renowned experts * state-of-the-art experimental methods * monolayers, bilayers, biological membranes * theoretical aspects and computer simulations * rafts * synaptic transmission * membrane fusion * signal transduction
Food proteins and bioactive peptides play a vital role in thegrowth and development of the body’s structural integrity andregulation, as well as having a variety of other functionalproperties. Land animal-derived food proteins such as collagen andgelatine carry risks of contamination (such as BSE). Marine-derivedproteins, which can provide equivalents to collagen and gelatinwithout the associated risks, are becoming more popular amongconsumers because of their numerous health beneficial effects. Mostmarine-derived bioactive peptides are currently underutilized.While fish and shellfish are perhaps the most obvious sources ofsuch proteins and peptides, there is also the potential for furtherdevelopment of proteins and peptides from sources like algae, seacucumber and molluscs. Marine-derived proteins and peptides alsohave potential uses in novel products, with the possibility of widecommercialization in the food, beverage, pharmaceutical andcosmetic industries, as well as in other fields such asphotography, textiles, leather, electronics, medicine andbiotechnology. Marine Proteins and Peptides: Biological Activities andApplications presents an overview of the current status,future industrial perspectives and commercial trends of bioactivemarine-derived proteins and peptides. Many of the industrialperspectives are drawn from the food industry, but the book alsorefers to the pharmaceutical and cosmetics industries. There haverecently been significant advances in isolating functionalingredients from marine bio-resources and seafood by-products foruse in these industries, but little has been published, creating aknowledge gap, particularly with regard to the isolation andpurification processes. This book is the first to fill thatgap. Marine Proteins and Peptides: Biological Activities andApplications is a valuable resource for researchers inmarine biochemistry field as well as food industry managersinterested in exploring novel techniques and knowledge onalternative food protein sources. It will become a standardreference book for researchers involved in developing marinebio-resources and seafood by-products for novel nutraceutical,cosmetics, and pharmaceutical applications. It will also appeal tomanagers and product developers in the food, pharmaceutical andcosmetics industries, particularly those looking to usemarine-derived proteins and peptides as substitutes or replacementsfor unfashionable or outdated food components.
This unique book will provide an up to date and comprehensive account of the potential of peptides and proteins from animal venoms as possible therapeutics. The pharmaceutical industry has become increasingly interested in biologics from animal venoms as a potential source for therapeutic agents in recent years, with a particularly emphasis on peptides. To date six drugs derived from venom peptides or proteins have been approved by the FDA, with nine further agents currently being investigated in clinical trials. In addition to these drugs in approved or advanced stages of development, many more peptides and proteins are being studied in varying stages of preclinical development. Topics covered include chemistry and structural biology of animal venoms, proteomic and transcriptomic approaches to drug discovery, bioassays, high-throughput screens and target identification, and reptile, scorpion, spider and cone snail venoms as a platform for drug development. Case studies are used to illustrate methods and successes and highlight issues surrounding administration and other important lessons that have been learnt from the development of approved therapeutics based on venoms. The first text to focus on this fascinating area and bridging an important gap, this book will provide the reader with essential and current knowledge on this fast-developing area. Venoms to Drugs will find wide readership with researchers working in academia and industry working in all medicinal and pharmaceutical areas.
This Special Issue Book, “Marine Bioactive Peptides: Structure, Function, and Therapeutic Potential" includes up-to-date information regarding bioactive peptides isolated from marine organisms. Marine peptides have been found in various phyla, and their numbers have grown in recent years. These peptides are diverse in structure and possess broad-spectrum activities that have great potential for medical applications. Various marine peptides are evolutionary ancient molecular factors of innate immunity that play a key role in host defense. A plethora of biological activities, including antibacterial, antifungal, antiviral, anticancer, anticoagulant, endotoxin-binding, immune-modulating, etc., make marine peptides an attractive molecular basis for drug design. This Special Issue Book presents new results in the isolation, structural elucidation, functional characterization, and therapeutic potential evaluation of peptides found in marine organisms. Chemical synthesis and biotechnological production of marine peptides and their mimetics is also a focus of this Special Issue Book.
Proteomics and peptidomics is the detailed understanding of the role that proteins and peptides play in health and disease and is a necessary compliment to genetic analysis. The functional expression analysis of both proteins and peptides plays a central role in modern drug discovery as well as drug development, and is also a key research area in systems biology. Proteomics and Peptidomics captures the width as well as the depth within the area and exemplifies the variety as well as the traditional basis of analytical chemistry that is needed in order to move forward in expression analysis studies. As a fast emerging field, it gives and overview of parts within the field combined with highly specialized and dedicated topics that are intended to compliment each other.
This book discusses the chemistry of food proteins and peptides and their relationship with nutritional, functional, and health applications. Bringing together authorities in the field, it provides a comprehensive discussion focused on fundamental chemistries and mechanisms underpinning the structure-function relationships of food proteins and peptides. The functional and bioactive properties hinge on their structural features such as amino acid sequence, molecular size, hydrophobicity, hydrophilicity, and net charges. The book includes coverage of advances in the nutritional and health applications of protein and peptide modifications; novel applications of food proteins and peptides in the development of edible functional biomaterials; advances in the use of proteomics and peptidomics for food proteins and peptide analysis (foodomics); and the relevance of food protein and peptide chemistries in policy and regulation. Research into the fundamental chemistries behind the functional, health and nutritional benefits is burgeoning and has gained the interest of scientists, the industry, regulatory agencies, and consumers. This book fills the knowledge gap providing an excellent source of information for researchers, instructors, students, food and nutrition industry, and policy makers.