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This book provides useful information and applications of biochar produced from agricultural waste, for removal of contaminants from industrial effluent and reutilization of waste sludge in production of biofuel/bioenergy. It deals with the unique features, advantages and disadvantages of techniques for biochar production and analyses.
The book, Bioremediation of Toxic Metal(loid)s, describes the state-of-the-art and potential of emerging technologies on bioremediation of toxic metal(loid)s. It has a compilation of the available comprehensive knowledge of the fundamentals and advancements in the field of bioremediation of toxic metal(loid)s. The mechanisms, applications, and current advancements of various bioremediation strategies used for metal(loid)s have been described in 21 chapters contributed by leading experts from different institutes, universities, and research laboratories from various countries across the globe including Argentina, Canada, Chile, Colombia, France, India, Japan, Republic of Korea, the United Kingdom, and the United States of America. This book offers a bird's eye view on various bioremediation technologies based on a variety of biological agents viz. plants, bacteria, algae, fungi etc., used for environmental clean-up of toxic metal(loid)s.
Examines the ecological importance, threats, and management of biodiversity of freshwater ecosystems; presents new techniques for the evaluation and conservation of freshwater biodiversity; and shows how climate change affects freshwater biodiversity.
Clinical Chemistry Handbook-Workbook of Principles, Techniques, and Correlations is a foundational guide in not only the principles and techniques of medical laboratory science but also the correct definitions of terms needed to be successful in clinical laboratory science (CLS). Perfect for students and those studying for the CLS/MLS license exams, as well as clinical laboratorians, research scientists, and developers of diagnostic products, Dr. N. T. Coleman's book is a thoughtful, useful compendium of the knowledge he's shared with his clinical chemistry students for fifteen years.
This book provides detailed and updated knowledge about medically important ¿Big Four¿ venomous snakes of India (Indian spectacled cobra, Indian common krait, Indian Russell¿s viper, and Indian saw-scaled viper). This book essentially covers the snakebite problem in the world with particular reference to Asia and India. It discusses the evolution and systematics of venomous snakes, emphasizing ¿Big Four¿ venomous snakes of India; the evolution and composition of venoms determined by traditional biochemical and modern proteomic analyses. It also describes the pharmacological properties of enzymatic and non-enzymatic toxins of ¿Big Four¿ venomous snakes of India. Different chapters discuss exciting topics such as species-specific and geographical differences in venom composition and its impact on pathophysiology and clinical manifestations of snakebite envenomation in India, biomedical application of Indian snake venom toxins; production and quality assessment of commercial antivenom,prevention, and treatment of snakebite in India, adverse effects of antivenom including strategies to combat antivenom reactions inpatient.This book caters to toxinologists, pharmacologists, zoologists, antivenom manufacturers, biochemists, clinicians, evolutionary biologists, herpetologists, and informed non-specialists interested to know about the Indian snake venoms.
Molecular farming is a biotechnological approach that includes the genetic adjustment of agricultural products to create proteins and chemicals for profitable and pharmaceutical purposes. Plant molecular farming describes the manufacture of recombinant proteins and other biologically active product in plants. This approach depends on a genetic transformation of plants that can be accomplished by the methods of stable gene transfer, such as gene transfer to nuclei and chloroplasts, and unstable transfer methods like viral vectors. The requirement for recombinant proteins in terms of quality, quantity, and diversity is increasing exponentially This demand is traditionally met by recombinant protein construction technologies and the engineering of orthodox expression systems based on bacteria or mammalian cell cultures. However, majority of developing countries cannot afford the high costs of medicine derived from such existing methods. Hence, we need to produce not only the new drugs but also the cheaper versions of those already present in the market. Plant molecular farming is considered as a cost-effective technology that has grown and advanced tremendously over the past two decades.This book summarizes the advances and challenges of plant molecular farming for all those who are working on or have an interest in this rapidly emerging area of research.
This new book provides comprehensive coverage of the subjects of deuterium oxide and deuteration in biosciences, with an emphasis on the biochemical, biomedical, and pharmacological aspects. Deuterium oxide and deuteration effects also offer various implications for health-related issues, including diseases, vaccines and drugs. Organized in six sections, the chapter topics include the role of regular and heavy water in biosciences, and their implications to biomolecules, biochemical processes, health-related research, and pharmacology.Due to the broad scope, the book may be used as a supplemental text for upper-level undergraduate and graduate courses in the related fields of biochemistry, biology, biomedical sciences, biophysics, and pharmacology. Researchers and pharmaceutical industry professionals will also find the content useful in order to gain knowledge and better understand the implications of deuterium oxide and deuteration research.
This volume explores diverse protocols for peptide conjugation, and provides thoroughly tested and scientifically valid techniques that allow researchers and scientists to prepare, purify, characterize, and use peptide conjugation methods for chemical, biochemical, and biological studies. Some of the topics discussed in this book are gold nanoparticles, proteins, pegylated lipids, and vitamins. Chapters also cover enzymatic ligation using sortase A, construction of a phage-displayed cyclic-peptide library, quantum dot-peptide conjugates, and preparation of lipopeptides by CLipPA chemistry. 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 comprehensive, Peptide Conjugation: Methodsand Protocols is a valuable resource for experienced researches and undergraduate students alike who are interested in learning more about this exciting and developing field.
This book presents a comprehensive overview of the bioactive potential, food applications, and health benefits of coloured cereal grains for researchers carrying out innovative studies.
This volume gathers a selection of original articles and reviews on timely topics about the application of Taurine in human health written by members of the International Taurine Society, including COVID-19, cancer, heart disease, and diabetes, among others. Chapters are written by Taurine experts across the globe in North and South America, Asia, and Europe. A majority of the articles are based on original studies recently carried out in individual laboratories worldwide. The book is divided into eight parts, each covering a unique aspect of Taurine. Each section will highlight new research findings on Taurine and its application in various human systems, including the nervous system, immune system, and cardiovascular system, to combat disease. The first section covers COVID-19, the dominant health event of 2020. Experts will explore and clarify the potential therapeutic effectiveness of Taurine against COVID-19. The volume will promote further research into the application of Taurine in human health, and will be of use to a wide audience, including basic and clinical scientists, pharmaceutical and nutraceutical companies, and libraries.
This volume provides an overview of the current successes as well as pitfalls and caveats that are hindering the design of membrane proteins. Divided into six parts, chapters detail membrane transporter, FoldX force field, protein stability, G-Protein Coupled Receptors (GPCR) structures, transmembrane helices, membrane molecular dynamics (MD) simulations, pH-dependent protonation states, membrane permeability, and passive transport. 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. Authoritative and cutting-edge, Computational Design of Membrane Proteins aims to ensure successful results in the further study of this vital field.Chapter 4 is available open access under a Creative CommonsAttribution 4.0 International License via link.springer.com.
Bioremediation using microbes is a sustainable technology for biodegradation of target compounds, and an omics approach gives more clarity on these microbial communities. This book provides insights into the complex behavior of microbial communities and identifies enzymes/metabolites and their degradation pathways. It describes the application of microbes and their derivatives for the bioremediation of potentially toxic and novel compounds. It highlights the existing technologies along with industrial practices and real-life case studies.Features:Includes recent research and development in the areas of omics and microbial bioremediation.Covers the broad environmental pollution control approaches such as metagenomics, metabolomics, fluxomics, bioremediation, and biodegradation of industrial wastes.Reviews metagenomics and waste management, and recycling for environmental cleanup.Describes the metagenomic methodologies and best practices, from sample collection to data analysis for taxonomies.Explores various microbial degradation pathways and detoxification mechanisms for organic and inorganic contaminants of wastewater with their gene expression.This book is aimed at graduate students and researchers in environmental engineering, soil remediation, hazardous waste management, environmental modeling, and wastewater treatment.
This Volume celebrates 60 years of Oceanography and Marine Biology: An Annual Review over which time it has been one of the most cited sources in marine science and oceanography.
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