Biological Barriers to Protein Delivery

Biological Barriers to Protein Delivery PDF

Author: Kenneth L. Andus

Publisher: Springer Science & Business Media

Published: 2012-12-06

Total Pages: 507

ISBN-13: 1461528984

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In response to the tremendous increase in the number of protein and peptide drugs, this treatise critically reviews transport and metabolism mechanisms relating to the delivery of endogenous and recombinant proteins to mammalian organs, tissues, and cells. It will promote fruitful collaboration among academic and industrial scientists in the fields of pharmacology, cell biology, biochemistry, physiology, and immunology.

Peptide and Protein Delivery

Peptide and Protein Delivery PDF

Author: Chris Van Der Walle

Publisher: Academic Press

Published: 2011-05-12

Total Pages: 381

ISBN-13: 0123849365

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The growing area of peptide and protein therapeutics research is of paramount importance to medical application and advancement. A needed reference for entry level researchers and researchers working in interdisciplinary / collaborative projects, Peptide and Protein Delivery addresses the current and emerging routes for delivery of therapeutics. Covering cerebral delivery, pulmonary delivery, transdermal delivery, intestinal delivery, ocular delivery, parenteral delivery, and nasal delivery, this resource offers an overview of the main routes in therapeutics. Researchers across biochemistry, pharmaceutical, molecular biology, cell biology, immunology, chemistry and biotechnology fields will find this publication invaluable for peptide and protein laboratory research. Discusses the most recent data, ideas and concepts Presents case studies and an industrial perspective Details information from the molecular level to bioprocessing Thought provoking, for the novice to the specialist Timely, for today's biopharmaceuticals market

Drug Delivery

Drug Delivery PDF

Author: Binghe Wang

Publisher: John Wiley & Sons

Published: 2016-04-18

Total Pages: 740

ISBN-13: 1118833368

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Following its successful predecessor, this book covers the fundamentals, delivery routes and vehicles, and practical applications of drug delivery. In the 2nd edition, almost all chapters from the previous are retained and updated and several new chapters added to make a more complete resource and reference. • Helps readers understand progress in drug delivery research and applications • Updates and expands coverage to reflect advances in materials for delivery vehicles, drug delivery approaches, and therapeutics • Covers recent developments including transdermal and mucosal delivery, lymphatic system delivery, theranostics • Adds new chapters on nanoparticles, controlled drug release systems, theranostics, protein and peptide drugs, and biologics delivery

Nanocapsule-based Protein Delivery Platforms for Overcoming Biological Barriers

Nanocapsule-based Protein Delivery Platforms for Overcoming Biological Barriers PDF

Author: Di Wu

Publisher:

Published: 2018

Total Pages: 118

ISBN-13:

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As the most dynamic and diverse macromolecules in our body, proteins perform a vast array of function, such as catalyzing metabolic reactions, forming receptors and channels for transportation, responding to stimuli and etc. In this context, tremendous opportunities are provided in harnessing proteins for therapeutic and diagnostic purposes. However, there are still challenges in the development and delivery of protein therapeutics. For instance, the vulnerable nature of proteins with poor stability lead to alternation of protein architects during delivery process which hindered its application. In addition, the low permeability of native protein though biological barriers (e.g., cell membrane, the mononuclear phagocyte system, blood brain barrier, etc.) prevents the successful delivery and efficient response of protein therapeutics. Therefore, development of novel protein delivery platforms, which can stabilize proteins and overcome biological barriers, will broaden the utility of protein therapeutics. In this dissertation, novel platforms for protein delivery have been developed based on the protein nanocapsule technology, which is achieved by encapsulating the protein molecules with a thin polymer network via in situ polymerization. Such protein delivery platform can significantly improve the protein stability as well as endow various surface properties (e.g., cationic charge, stealth surface, specific targeting capability, etc.) to overcome different biological barriers. Based on this technology, we enable to rationally design and synthesize nanocarriers, understand and precisely control behaviors during transportation process through the biological barriers. This dissertation can be outlined with the following three topics: 1) Fully understand and precisely control the kinetics of intracellular protein delivery. In this part, FLuc nanocapsules, which can mimic current strategies for intracellular delivery, was employed as a probe to real-time quantify the internalization process. By realizing precisely spatiotemporal control over distribution and functions, this platform provides a simple and efficient approach for optimization of dosimetry, characterization of therapeutic efficiency and screening of novel medicine. 2) Overcome the mononuclear phagocyte system to deliver protein therapeutics with prolonged circulation time and reduced immunogenicity. In this work, another FLuc nanocapsule with stealth surface was developed. The probe improves FLuc stability, reduces the immune clearance, prolongs the circulation time and present a high contrast imaging of the tumor. This method provides an effective and safe route for tumor diagnosis. Overall, this dissertation established various novel strategies toward better protein delivery platforms for overcoming biological barriers, which broaden the application of protein therapeutics.

Novel Strategies for the Development of Protein Delivery Platforms

Novel Strategies for the Development of Protein Delivery Platforms PDF

Author: jie ren

Publisher:

Published: 2020

Total Pages: 110

ISBN-13:

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Protein are the most dynamic and diverse macromolecules in living organisms, taking part in almost every biological reaction. While burst progresses have been made in revealing new pathways mediated by proteins and understanding of protein functions, their clinical applications are still limited due to the biological barriers that in vivo protein delivery encounters. Although strategies based on nanoparticles have been introduced to address this problem, failure in overcoming all the barriers simultaneously could lead to the compromised delivery efficacy. Therefore, development of delivery platforms that can effectively overcome those biological barriers comprehensively would help realize their potential into practical applicationsIn this dissertation, novel strategies have been developed for protein delivery based on coacervate nanoreactors or sheddable PMPC conjugated nanocomplexes depending on the target site of protein therapeutics. This dissertation research consists with two topics outlined below: 1. Realize the co-delivery of enzyme cascade to bloodstream. In this part, we combined the strategy of coacervate complex with in situ polymerization to encapsulate enzyme cascade in a coacervate nanoreactor with crosslinked zwitterionic shell. Such structure and surface property enhanced the overall catalytic efficacy, elimination of reaction intermediates, enzymatic stability, and prolonged circulation time of the enzyme cascade, providing a protein delivery platform for enzyme replacement therapy. 2. Realize the systemic delivery of intracellularly functional protein to tumor. In this part, we combined the strategy of "stealth" surface with cell-permeable nanocapsule to construct a nanocomplex with a PMPC shell. The nanocomplex facilitated overcome the biological barriers of immune clearance, tumor accumulation and penetration, cellular internalization, and endosomal escape, displaying an effective tumor inhibition. Overall, this dissertation utilized various strategies and developed novel protein delivery platforms for overcoming biological barriers and improving the bioavailability of protein therapeutics, which broadens their applications.

Physical Methods to Characterize Pharmaceutical Proteins

Physical Methods to Characterize Pharmaceutical Proteins PDF

Author: James N. Herron

Publisher: Springer

Published: 2013-06-06

Total Pages: 362

ISBN-13: 9781489910813

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Proteins are still gaining importance in the pharmaceutical world, where they are used to improve our arsenal of therapeutic drugs and vaccines and as diagnostic tools. Proteins are different from "traditional" low-molecular-weight drugs. As a group, they exhibit a number of biopharmaceutical and formulation problems. These problems have drawn considerable interest from both industrial and aca demic environments, forcing pharmaceutical scientists to explore a domain previ ously examined only by peptide and protein chemists. Biopharmaceutical aspects of proteins, e.g., low oral bioavailability, have been extensively investigated. Although all possible conventional routes of ad ministration have been examined for proteins, no real, generally applicable alter native to parenteral administration in order to achieve systemic effects has yet been discovered. Several of these biopharmaceutical options have been discussed in Volume 4 of this series, Biological Barriers to Protein Delivery. Proteins are composed of many amino acids, several of which are notorious for their chemical instability. Rational design of formulations that optimize the native structure and/or bioactivity of a protein is therefore of great importance when long shelf life is required, as it is for pharmaceutical products. This issue has also been examined in two prior volumes of this series: Volume 2: Stability of Protein Pharmaceuticals (Part A) and Volume 5: Stability and Characterization of Protein and Peptide Drugs.

Challenges in Delivery of Therapeutic Genomics and Proteomics

Challenges in Delivery of Therapeutic Genomics and Proteomics PDF

Author: Ambikanandan Misra

Publisher: Elsevier

Published: 2010-09-09

Total Pages: 686

ISBN-13: 0123849659

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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 Of interest to researchers in both academia and industry Highlights what’s currently known and where further research is needed

Drug Delivery Systems

Drug Delivery Systems PDF

Author: Kewal K. Jain

Publisher: Springer Science & Business Media

Published: 2008-03-07

Total Pages: 255

ISBN-13: 1588298914

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In this concise and systematic book, a team of experts select the most important, cutting-edge technologies used in drug delivery systems. They take into account significant drugs, new technologies such as nanoparticles, and therapeutic applications. The chapters present step-by-step laboratory protocols following the highly successful Methods in Molecular BiologyTM series format, offering readily reproducible results vital for pharmaceutical physicians and scientists.

Oral Delivery of Therapeutic Peptides and Proteins

Oral Delivery of Therapeutic Peptides and Proteins PDF

Author: Puneet Tyagi

Publisher: Academic Press

Published: 2022-08-18

Total Pages: 318

ISBN-13: 0128210605

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Oral Delivery of Therapeutic Peptides and Proteins provides a complete overview of the journey scientists pursue to attain protein and peptide oral delivery. The book highlights the physiological challenges that must be accounted for in addition to overcoming protease inhibition and acid stability issues that are commonly mentioned in this area of research. Primary topics include formulation technologies being adopted for oral delivery of proteins and peptides, modification of actives to make them more suited for oral delivery, animal models and their shortcomings in assessing oral bioavailability, and in vitro models to simulate drug absorption and transport. Academics and industry researchers working in formulation development and researchers and advanced students in biotechnology and pharmacy will find this a useful resource. Demonstrates how proteins and peptides transport throughout the gastrointestinal tract and how to evaluate their biological fate when encapsulated into certain delivery systems Examines developing technologies to improve future oral bioavailability Includes the in vitro and preclinical techniques needed for development

Drug Delivery

Drug Delivery PDF

Author: Binghe Wang

Publisher: John Wiley & Sons

Published: 2016-03-09

Total Pages: 720

ISBN-13: 1118833236

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Following its successful predecessor, this book covers the fundamentals, delivery routes and vehicles, and practical applications of drug delivery. In the 2nd edition, almost all chapters from the previous are retained and updated and several new chapters added to make a more complete resource and reference. • Helps readers understand progress in drug delivery research and applications • Updates and expands coverage to reflect advances in materials for delivery vehicles, drug delivery approaches, and therapeutics • Covers recent developments including transdermal and mucosal delivery, lymphatic system delivery, theranostics • Adds new chapters on nanoparticles, controlled drug release systems, theranostics, protein and peptide drugs, and biologics delivery