Therapeutic Proteins and Peptides


Book Description

Therapeutic Proteins and Peptides, Volume 112 in an ongoing series promotes further research in the discovery of new therapeutic targets that can be affected by therapeutic proteins and peptides to cure or manage symptoms of human diseases, with this release focusing on the Rational Design of Stable Liquid Formulations of Biopharmaceuticals, Formulation strategies for peptides, proteins and antibodies using nanotechnology, the Solution structural dynamics of therapeutic peptides and their adsorption on plasmonic nanoparticles, Enzymatic approaches of protein-polymer conjugation, Chimeric small antibody fragments as a strategy to deliver therapeutic payloads, Smart cell-penetrating peptide-based techniques for cytoplasmic delivery of therapeutic macromolecules, and more. - Describes advances in the discovery and application of therapeutic proteins/peptides which allow better targeting to the site of treatment and cause fewer adverse effects when compared to chemical compounds used for disease treatment - Targeted to a very wide audience of specialists, researchers and students - Written by well-renown authorities in their field - Includes a number of high quality illustrations, figures and tables




Therapeutic Proteins Against Human Diseases


Book Description

This book compiles updated research about the implications of therapeutic proteins in various human diseases. The initial chapters of the book provide basic information on the therapeutic proteins and discuss techniques for their formulation, production, and analytic approaches for their characterization. The subsequent chapters shed light on therapies based on therapeutic proteins against metabolic disorders, neurological disorders, cancer, autoimmune disorders, and infectious diseases. Importantly, it presents the factors influencing the immunogenicity of therapeutic proteins, including, genetic factors, disease type, and origin of therapeutic protein, dose frequency, administration route, and treatment duration. The book also reviews the strategies for reducing immunogenicity associated with therapeutic proteins, including PEGylation, site specific mutagenesis, exon shuffling, and humanizing of monoclonal antibodies. Further, it presents strategies for improving the typical drawback associated with protein therapeutics including instability and limited penetration through biological barriers. This book covers various computational methods that are commonly used for designing therapeutic proteins and in silico method for predicting and improving in vivo efficacy of the therapeutic molecules. Lastly, the book highlights the recent advances in developing nanosized delivery systems to improve safety and efficacy of protein therapeutics. This book caters to students and researchers of medicinal chemistry, pharmaceutical sciences and therapeutics. It is also useful to clinicians working with therapeutic proteins.




Protein Therapeutics, 2 Volume Set


Book Description

Branchenführende Big-Pharma-Unternehmen und erstklassige Forscher präsentieren grundlegende Konzepte und Herausforderungen bei proteinbasierten Pharmazeutika. Beinhaltet auch eine Einführung in die aus Sicht der Arzneimittelentwicklung fünf wesentlichen Anwendungsbereiche.




Therapeutic Proteins Against Human Diseases


Book Description

This book compiles updated research about the implications of therapeutic proteins in various human diseases. The initial chapters of the book provide basic information on the therapeutic proteins and discuss techniques for their formulation, production, and analytic approaches for their characterization. The subsequent chapters shed light on therapies based on therapeutic proteins against metabolic disorders, neurological disorders, cancer, autoimmune disorders, and infectious diseases. Importantly, it presents the factors influencing the immunogenicity of therapeutic proteins, including, genetic factors, disease type, and origin of therapeutic protein, dose frequency, administration route, and treatment duration. The book also reviews the strategies for reducing immunogenicity associated with therapeutic proteins, including PEGylation, site specific mutagenesis, exon shuffling, and humanizing of monoclonal antibodies. Further, it presents strategies for improving the typical drawback associated with protein therapeutics including instability and limited penetration through biological barriers. This book covers various computational methods that are commonly used for designing therapeutic proteins and in silico method for predicting and improving in vivo efficacy of the therapeutic molecules. Lastly, the book highlights the recent advances in developing nanosized delivery systems to improve safety and efficacy of protein therapeutics. This book caters to students and researchers of medicinal chemistry, pharmaceutical sciences and therapeutics. It is also useful to clinicians working with therapeutic proteins.




Immunogenicity of Proteins Used as Therapeutics


Book Description

Topic Editor Susan Richards is an employee of Sanofi and owns stock in the corporation. Topic Editor Bernard Maillere declares economic support from pharmaceutical companies (Novartis, Sanofi, and UCB) in the frame of collaborations aiming to evaluate the recognition by human T cells of therapeutic proteins and antibodies.




Protein Engineering


Book Description

A one-stop reference that reviews protein design strategies to applications in industrial and medical biotechnology Protein Engineering: Tools and Applications is a comprehensive resource that offers a systematic and comprehensive review of the most recent advances in the field, and contains detailed information on the methodologies and strategies behind these approaches. The authors—noted experts on the topic—explore the distinctive advantages and disadvantages of the presented methodologies and strategies in a targeted and focused manner that allows for the adaptation and implementation of the strategies for new applications. The book contains information on the directed evolution, rational design, and semi-rational design of proteins and offers a review of the most recent applications in industrial and medical biotechnology. This important book: Covers technologies and methodologies used in protein engineering Includes the strategies behind the approaches, designed to help with the adaptation and implementation of these strategies for new applications Offers a comprehensive and thorough treatment of protein engineering from primary strategies to applications in industrial and medical biotechnology Presents cutting edge advances in the continuously evolving field of protein engineering Written for students and professionals of bioengineering, biotechnology, biochemistry, Protein Engineering: Tools and Applications offers an essential resource to the design strategies in protein engineering and reviews recent applications.




Fusion Protein Technologies for Biopharmaceuticals


Book Description

The state of the art in biopharmaceutical FUSION PROTEIN DESIGN Fusion proteins belong to the most lucrative biotech drugs—with Enbrel® being one of the best-selling biologics worldwide. Enbrel® represents a milestone of modern therapies just as Humulin®, the first therapeutic recombinant protein for human use, approved by the FDA in 1982 and Orthoclone® the first monoclonal antibody reaching the market in 1986. These first generation molecules were soon followed by a plethora of recombinant copies of natural human proteins, and in 1998, the first de novo designed fusion protein was launched. Fusion Protein Technologies for Biopharmaceuticals examines the state of the art in developing fusion proteins for biopharmaceuticals, shedding light on the immense potential inherent in fusion protein design and functionality. A wide pantheon of international scientists and researchers deliver a comprehensive and complete overview of therapeutic fusion proteins, combining the success stories of marketed drugs with the dynamic preclinical and clinical research into novel drugs designed for as yet unmet medical needs. The book covers the major types of fusion proteins—receptor-traps, immunotoxins, Fc-fusions and peptibodies—while also detailing the approaches for developing, delivering, and improving the stability of fusion proteins. The main body of the book contains three large sections that address issues key to this specialty: strategies for extending the plasma half life, the design of toxic proteins, and utilizing fusion proteins for ultra specific targeting. The book concludes with novel concepts in this field, including examples of highly relevant multifunctional antibodies. Detailing the innovative science, commercial realities, and brilliant potential of fusion protein therapeutics, Fusion Protein Technologies for Biopharmaceuticals is a must for pharmaceutical scientists, biochemists, medicinal chemists, molecular biologists, pharmacologists, and genetic engineers interested in determining the shape of innovation in the world of biopharmaceuticals.




Therapeutic Antibody Engineering


Book Description

The field of antibody engineering has become a vital and integral part of making new, improved next generation therapeutic monoclonal antibodies, of which there are currently more than 300 in clinical trials across several therapeutic areas. Therapeutic antibody engineering examines all aspects of engineering monoclonal antibodies and analyses the effect that various genetic engineering approaches will have on future candidates. Chapters in the first part of the book provide an introduction to monoclonal antibodies, their discovery and development and the fundamental technologies used in their production. Following chapters cover a number of specific issues relating to different aspects of antibody engineering, including variable chain engineering, targets and mechanisms of action, classes of antibody and the use of antibody fragments, among many other topics. The last part of the book examines development issues, the interaction of human IgGs with non-human systems, and cell line development, before a conclusion looking at future issues affecting the field of therapeutic antibody engineering. - Goes beyond the standard engineering issues covered by most books and delves into structure-function relationships - Integration of knowledge across all areas of antibody engineering, development, and marketing - Discusses how current and future genetic engineering of cell lines will pave the way for much higher productivity




Therapeutic Enzymes: Function and Clinical Implications


Book Description

Therapeutic enzymes exhibit fascinating features and opportunities, and represent a significant and promising subcategory of modern biopharmaceuticals for the treatment of several severe diseases. Research and drug developments efforts and the advancements in biotechnology over the past twenty years have greatly assisted the introduction of efficient and safe enzyme-based therapies for a range of both rare and common disorders. The introduction and regulatory approval of twenty different recombinant enzymes has enabled effective enzyme-replacement therapy. This volume aims to overview these therapeutic enzymes, focusing in particular on more recently approved enzymes produced by recombinant DNA technology. This volume is composed of four sections. Section 1 provides an overview of the production process and biochemical characterization of therapeutic enzymes, while Section 2 focuses upon the engineering strategies and delivery methods of therapeutic enzymes. Section 3 highlights the clinical applications of approved therapeutic enzymes, including aspects on their structure, indications and mechanisms of action. Together with information on these mechanisms, safety and immunogenicity issues and various adverse events of the recombinant enzymes used for therapy are discussed. Section 4, provides discussion on the prospective and future developments of new therapeutic enzymes. This book is aimed at academics, researchers and students undertaking advanced undergraduate/postgraduate programs in the biopharmaceutical/biotechnology area who wish to gain a comprehensive understanding of enzyme-based therapeutic molecules.




Basic and Applied Aspects of Biotechnology


Book Description

This book explores the journey of biotechnology, searching for new avenues and noting the impressive accomplishments to date. It has harmonious blend of facts, applications and new ideas. Fast-paced biotechnologies are broadly applied and are being continuously explored in areas like the environmental, industrial, agricultural and medical sciences. The sequencing of the human genome has opened new therapeutic opportunities and enriched the field of medical biotechnology while analysis of biomolecules using proteomics and microarray technologies along with the simultaneous discovery and development of new modes of detection are paving the way for ever-faster and more reliable diagnostic methods. Life-saving bio-pharmaceuticals are being churned out at an amazing rate, and the unraveling of biological processes has facilitated drug designing and discovery processes. Advances in regenerative medical technologies (stem cell therapy, tissue engineering, and gene therapy) look extremely promising, transcending the limitations of all existing fields and opening new dimensions for characterizing and combating diseases.