Handbook of Algal Technologies and Phytochemicals: Volume I Food, Health and Nutraceutical Applications

Handbook of Algal Technologies and Phytochemicals: Volume I Food, Health and Nutraceutical Applications

by Gokare A. Ravishankar, Ranga Rao Ambati

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Overview

Key features:

  • The most comprehensive resource available on the biodiversity of algal species, their industrial production processes and their use for human consumption in food, health and varied applications.
  • Emphasis on basic and applied research, addressing aspects of scale-up for commercial exploitation for the development of novel phytochemicals (phytochemicals from algae).
  • Addresses the underexplored and underutilized potential of chemicals from marine sources for health benefits.
  • Each chapter, written by expert contributors from around the world, includes Summary Points, Figures and Tables, as well as up-to-date references.
  •  

    The first book in this two-volume set explores the diversity of algal constituents for health and disease applications. The commercial value of chemicals of value to food and health is about $6 billion annually, of which 30 percent relates to micro and macro algal metabolites and products for health food applications. This comprenhensive volume looks in detail at algal genomics and metabolomics as well as mass production of microalgae. As a whole, the two-volume set covers all micro and macro algal forms and their traditional uses; their constituents which are of value for food, feed, specialty chemicals, bioactive compounds for novel applications, and bioenergy molecules. Bio-business and the market share of algae-based products are also dealt with, providing global perspectives.

    Product Details

    ISBN-13: 9780429623431
    Publisher: CRC Press
    Publication date: 07/12/2019
    Sold by: Barnes & Noble
    Format: NOOK Book
    Pages: 300
    File size: 10 MB

    About the Author

    Dr. G.A. Ravishankar is a Professor of Biotechnology, serving as Vice-President in Research and Development, Life Science division, Dayananda Sagar Institute, Bengaluru, Karnataka, India. Previously, Dr. Ravishankar worked as Chief Scientist & Head, Plant Cell Biotechnology Department, Council of Scientific and Industrial Research-Central Food Technological Research Institute, Government of India, Mysore, Karnataka, India. He has 35 years’ research experience in reputed national research laboratories. He has received international and national fellowships from various scientific boards, namely FAFST, FNASc, FNAAS, FBS, FSAB, FISAB, FAMI, FIAFoST (Canada), FIFST(UK), FIFT(USA). He is involved in various research fields such as Plant Biotechnology and Biochemistry, Plant secondary metabolites, Algal Biotechnology, and Food Science and Technology. His has more than 300 research papers in peer reviewed journals, review articles in peer reviewed journals, proceedings of symposia and seminar in India and abroad, and more than 40 chapters in books, 55 filed patents, 14 technologies developed, four books, and over 250 research papers presented in symposia in India and abroad, as well as over 200 invited lectures delivered in India and abroad. His papers have received citation by peer groups, with H index-53, and i-10 index of 196 with total citations of over 11,600 in Google Scholar. Dr. Ravishankar is actively contributing as editor and reviewer for various reputed international publishers.

    Dr. Rangarao Ambati is a Research Assistant Professor in Food Science and Technology Programme, Department of Science and Technology, Beijing Normal University-Hong Kong Baptist University United International College, Zhuhai, Guangdong, China. Dr. Ranga Rao has completed a Ph.D in Biotechnology from the internationally recognized laboratory Central Food Technological Research Institute (CFTRI) which is a part of Laboratory of Council of Scientific and Industrial Research (CSIR), Government of India, India. Dr. Ranga Rao worked as Research Scientist, Postdoctoral Research Associate, Senior Research Fellow at various International Universities in USA, Malaysia, China and India. He is involved in group through his expertise in biotechnology; biochemistry, and food science and technology. Dr. Rangarao has published several research papers in the leading international journals including book chapters. He is also serving as editorial board member, guest editor, and reviewer for reputed international journals. He attended international and national conferences/symposia, traveling to the USA, Canada, China, Malaysia, Indonesia, and Muscat. His research citation was 880 with H-Index (11), and I-index (11) as per Google Scholar. He received research grants, travel grant awards, and scientific awards internationally and nationally. He has contributed research work to biological sciences with research publications in international and national journals. He received Fellow of the Society of Applied Biotechnology (FSAB-India); Young Scientist Award-World Food Congress by International Union of Food Science and Technology (IUFoST, Canada); TWAS-Young Affiliate by Regional office East and South-East Asia and the Pacific (ROESEAP), Chinese Academy of Sciences, China; Young Biotechnologist Award by Society of Applied Biotechnology (India), and Junior Scientist of the Year Award by National Environmental Science Academy, New Delhi, India.

    Table of Contents

    Algal constituents for health and disease applications. Algal polysaccharides: innovative extraction technologies, health benefits and industrial applications. Sulfated polysaccharides from algae for biological and biomedical applications. Bioprocess engineering aspects of cyanobacterial exopolysaccharides: A review on past achievements and recent perspectives. Production, extraction and characterization of alginates from seaweeds. Algal antimicrobial activities and their possible utilizations. Antimicrobial action of compounds from marine seaweed. Algal Bioactive Compounds; A Comprehensive Appraisal. Ultrasound-assisted extraction of bioactive compounds from selected microalgae. Volatile organic compounds in microalgae based system. Antidiabetic usage of brown seaweed (Sargassum polycystum). Potential Bioactives from Seaweed for Diabetes and Obesity Management. Biologically active vitamin B12 from edible seaweeds. Potentials and Challenges in the production of algal pigments with reference to carotenoids, chlorophylls and phycobillins. Nutraceutical applications of astaxanthin and its esters from microalgae. Dunaliella salina: The extreme bioactive source of β-carotene (Pro-Vitamin A) for health and nutraceuticals. Algae based colorants for the food industries. Exploring the potential of using micro and macroalga in cosmetics. Quality control of microalgae utilized in nutraceuticals market. Microalgae for human nutrition: perspectives for the future. Nutraceutical aspects of microalgae: Will our future space foods be microalgae? Potential anti-cancer compounds derived from microalgae and cyanobacteria. Macroalgae and Microalgae: Novel sources of prebiotics and probiotics. Angiogenic actions of anionic polysaccharides from seaweed. Pharmacological Importance of Mediterranean Seaweeds. Platform molecules from Algae by Supercritical CO2 and Subcritical water extraction. Algal Genomics and Metabolomics. Functional Omics and Big Data Analysis in Microalgae: The Repertoire of Molecular Tools in Algal Technologies. Algal metabolomics: Challenges and future prospects of phytochemicals for nutraceuticals and pharmaceuticals. Bioactive metabolites: Genetic regulation, Metabolism, bioactivities and the potential marketing opportunities and bioprocessing. Leaveraging genome sequencing strategies for basic and applied algal research, exemplified by case studies. Mass production of microalgae. Cultivation of microalgae Under stress conditions: a strategy for the accumulation of high value compounds. Modulation of lipid biosynthesis by stress in diatoms. Mass production of the low-cost EPA-enriched biomass with a focus on the filamentous algal strains. Automated Microalgal Nutrient Optimization System (AMNOSS)-An Advanced Revolution of Nutrient Optimization Methodology. Microalgae biomass, lipids and fatty acids production through photobioreactors: Challenges and Future Perspectives. New strategies for the design and control of raceway reactors to optimize microalgae production. Sustainable water and nutrient management in algal biomass production systems. Technologies for Separation and Drying of Algal Biomass for Varied Applications.

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