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Modern Applications of Plant Biotechnology in Pharmaceutical Sciences explores advanced techniques in plant biotechnology, their applications to pharmaceutical sciences, and how these methods can lead to more effective, safe, and affordable drugs. The book covers modern approaches in a practical, step-by-step manner, and includes illustrations, examples, and case studies to enhance understanding. Key topics include plant-made pharmaceuticals, classical and non-classical techniques for secondary metabolite production in plant cell culture and their relevance to pharmaceutical science...
Pharmaceutical biotechnology. --- Plant biotechnology. --- Crop biotechnology --- Crops --- Plants --- Agricultural biotechnology --- Biopharmaceutical technology --- Drugs --- Biotechnology --- Pharmaceutical technology
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"Microfluidics for Pharmaceutical Applications: From Nano/Micro Systems Fabrication to Controlled Drug Delivery is a concept-orientated reference that features case studies on utilizing microfluidics for drug delivery applications. It is a valuable learning reference on microfluidics for drug delivery applications and assists practitioners developing novel drug delivery platforms using microfluidics. It explores advances in microfluidics for drug delivery applications from different perspectives, covering device fabrication, fluid dynamics, cutting-edge microfluidic technology in the global drug delivery industry, lab-on-chip nano/micro fabrication and drug encapsulation, cell encapsulation and delivery, and cell- drug interaction screening"--Publisher.
Microfluidics. --- Pharmaceutical biotechnology. --- Biopharmaceutical technology --- Drugs --- Biotechnology --- Pharmaceutical technology --- Fluidics --- Nanofluids
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For many people, biotechnology means genetically modifi ed organisms, alien species, toxic weapons or hormone-treated beef. Yet it is also a tool to control plant and animal pests, pre-serve species, utilize genetic resources for health and nutrition and protect the environment. Society's ability to manage, share and regulate advanced biotechnology offers many opportu-nities and raises many challenges and risks.This book explores the issues of advanced biotechnology and examines the progress made in recent years. It looks at the drivers of medical and pharmaceutical biotechnology develop-ment
Biotechnology. --- Biotechnology industries. --- Pharmaceutical biotechnology. --- Biopharmaceutical technology --- Drugs --- Biotechnology --- Chemical engineering --- Genetic engineering --- Pharmaceutical technology --- Biomedical industries --- High technology industries
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Phytochemical Nanodelivery Systems as Potential Biopharmaceuticals comprehensively reviews current information on nanotechnology applied to phytochemical nanoencapsulation to enhance their bioavailability and bioactivity. The book is divided into two sections, the first section critically reviews current information on the field of nanotechnology and phytochemicals, and the second section highlights the pre-clinical and clinical studies of phytochemicals to comprehensively review the efficacy of these molecules as drugs of human use. Phytochemical Nanodelivery Systems as Potential Biopharmaceuticals provides a useful overview of this rapidly evolving field for materials scientists and pharmaceutical scientists, as well as for those with an interest in biopharmaceuticals from plant sources, such as organic chemists and food scientists. Provides an introduction to both phytochemicals and nanomaterials for use in biopharmaceutics, allowing both materials scientists and pharmaceutical scientists to gain a basic understanding of each field Reviews key phytochemical types for use as biopharmaceuticals, including terpenes, alkaloids, glucosinolates and more Explores the various nanomaterials and nanoencapsulation techniques for administration of phytochemical nanoformulations.
Nanomedicine. --- Pharmaceutical biotechnology. --- Biopharmaceutical technology --- Drugs --- Biotechnology --- Pharmaceutical technology --- Medicine --- Nanotechnology --- Nanoparticle Drug Delivery System. --- Phytochemicals --- Biopharmaceutics. --- therapeutic use.
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Delivery of therapeutic proteomics and genomics represent an important area of drug delivery research. Genomics and proteomics approaches could be used to direct drug development processes by unearthing pathways involved in disease pathogenesis where intervention may be most successful. This book describes the basics of genomics and proteomics and highlights the various chemical, physical and biological approaches to protein and gene delivery. Covers a diverse array of topics from basic sciences to therapeutic applications of proteomics and genomics delivery<
Drug delivery systems. --- Pharmaceutical biotechnology. --- Biopharmaceutical technology --- Drugs --- Biotechnology --- Pharmaceutical technology --- Delivery systems, Drug --- Drug administration technology --- Drug delivery technology --- Delivery systems
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In this volume, the authors discuss the many significant challenges currently faced in biotechnology dosage form development, providing guidance, shared experience and thoughtful reflection on how best to address these potential concerns. As the field of therapeutic recombinant therapeutic proteins enters its fourth decade and the market for biopharmaceuticals becomes increasingly competitive, companies are increasingly dedicating resources to develop innovative biopharmaceuticals to address unmet medical needs. Often, the pharmaceutical development scientist is encountering challenging pharmaceutical properties of a given protein or by the demands placed on the product by stability, manufacturing and preclinical or clinical expectations, as well as the evolving regulatory expectations and landscape. Further, there have been new findings that require close assessment, as for example those related to excipient quality, processing, viscosity and device compatibility and administration, solubility and opalescence and container-closure selection. The literature varies widely in its discussion of these critical elements and consensus does not exist. This topic is receiving a great deal of attention within the biotechnology industry as well as with academic researchers and regulatory agencies globally. Therefore, this book is of interest for business leaders, researchers, formulation and process development scientists, analytical scientists, QA and QC officers, regulatory staff, manufacturing leaders and regulators active in the pharmaceutical and biotech industry, and expert reviewers in regulatory agencies.
Medicine. --- Pharmaceutical technology. --- Biomedicine. --- Pharmaceutical Sciences/Technology. --- Pharmaceutical biotechnology. --- Proteins --- Biotechnology. --- Biopharmaceutical technology --- Drugs --- Biotechnology --- Pharmaceutical technology --- Pharmaceutical laboratory techniques --- Pharmaceutical laboratory technology --- Technology, Pharmaceutical --- Technology
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This book introduces fundamental principles and practical application of techniques used in the scalable production of biopharmaceuticals with animal cell cultures. A broad spectrum of subjects relevant to biologics production and manufacturing are reviewed, including the generation of robust cell lines, a survey of functional genomics for a better understanding of cell lines and processes, as well as advances in regulatory compliant upstream and downstream development. The book is an essential reference for all those interested in translational animal cell-based pharmaceutical biotechnology.
Animal cell biotechnology. --- Pharmaceutical biotechnology. --- Biopharmaceutical technology --- Drugs --- Biotechnology --- Pharmaceutical technology --- Animal cells in biotechnology --- Animal biotechnology --- Biologics Manufacturing. --- Biopharmaceutical Engineering. --- Biotechnology. --- Cell Culture Engineering. --- Virus Production.
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Pharmaceutical biotechnology. --- Biotechnology. --- Biotechnology industries. --- Biomedical industries --- High technology industries --- Chemical engineering --- Genetic engineering --- Biopharmaceutical technology --- Drugs --- Biotechnology --- Pharmaceutical technology --- Pharmaceutical biotechnology --- Biotechnology industries --- E-books
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Pharmaceutical biotechnology. --- Pharmaceutical technology. --- Pharmaceutical laboratory techniques --- Pharmaceutical laboratory technology --- Technology, Pharmaceutical --- Technology --- Biopharmaceutical technology --- Drugs --- Biotechnology --- Pharmaceutical technology --- Biotecnologia vegetal
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Conceptual Development of Industrial Biotechnology for Commercial Production of Biopharmaceuticals and Vaccines provides insights on how to bring sustainability into biologic drug production. The cumulative facts and figures within in the book are helpful to promoters in monitoring value chain transfer process of super quality biologics for better return in profits. In addition, this is a useful reference for students, researchers and scientists in biotechnology, pharmaceutical science, medical sciences, and the R&D division of biotechnology-based industries. Conceptual development of biotechnology has taken new avenues with the integration of medical sciences, physical science, and engineering, hence this is a timely source. The current global market for vaccines, especially COVID-19, is tremendous. Bivalent oral polio vaccine, diphtheria, tetanus-containing, and measles-containing vaccines have a high demand internationally and recombinant DNA technology and protein engineering are helpful in the production of quality bio-products. Informs how biotechnology and pharmaceutical industries act as central pillars for the stable production of value-added biological drugs and vaccines from genetically engineered suitable vectors like microbe or cell lines from animals, mammals or plants. Highlights various traditional and modern techniques used for improvising the quality of suitable vectors to produce biologic drugs and vaccines under GMP manufacturing facilities. Provides updated information on the latest microchip-based bioreactors, disposable bag bioreactors, and animal systems as bioreactors to produce biologic drugs like Smart Biomolecules (next generation therapeutics), Bio-similar drugs, Bio-betters, and antibody-drug conjugates. Explains how the closed bioreactors with proper mechanical amendments are used for vaccine production.
Vaccines. --- Biologicals --- Biotechnology industries. --- Pharmaceutical biotechnology --- Automation. --- Biopharmaceutical technology --- Drugs --- Biotechnology --- Pharmaceutical technology --- Biomedical industries --- High technology industries --- Vaccines --- Drug Industry --- Biological Products --- Pharmaceutical Preparations --- Biotechnology. --- economics --- methods
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