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Viral DNA Vaccines

Viral DNA Vaccines
Author: Karin Mölling
Publisher: S. Karger AG (Switzerland)
Total Pages: 151
Release: 2000-12-31
Genre: Medical
ISBN: 9783805571739

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DNA vaccine research has progressed from the test tube to clinical trials in less than 10 years. This special issue summarizes the latest advances in the field of DNA vaccination against viral infections. An introductory overview of antiviral DNA vaccine research in the years 1998 to 2000 discusses the different target viruses, animal models, improvement strategies as well as the results obtained so far. In the following chapters, leading specialists present their ongoing experiments and preclinical studies. The viruses used as targets in small animal models or primates include HIV, SIV, lyssavirus, influenza A virus and La Crosse virus, a member of the bunyaviridae. Two of the papers deal with safety issues, thus providing important information for authorities, clinicians and patients concerned with risk evaluation. Of decisive importance for the development of DNA vaccination is the improvement of its efficacy, an issue which is discussed in several papers. Approaches to increase the efficacy include targeting of dendritic cells, codon exchange, messenger stabilization, fusion to long-lived protein moieties such as immunoglobulins, nuclear targeting, secretory signals or tissue-specific expression, and, more recently, DNA-prime-, peptide- or particle-based boosting. Needle-free application and low-dose vaccines make DNA an ideal candidate for the treatment and prevention of a large number of diseases. Though still at an early stage of development, hopes that DNA vaccines will one day be used on a worldwide scale are high. Stimulating further interest in this promising approach, this progress report should be read by anyone in academia or in industry involved in vaccine development.


Advances in DNA Vaccines

Advances in DNA Vaccines
Author: Maria Isaguliants
Publisher:
Total Pages: 210
Release: 2021
Genre:
ISBN: 9783036503011

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DNA is a rapidly developing vaccine platform for cancer and infectious and non-infectious diseases. Plasmids are used as immunogens to encode proteins to be further synthesized in vaccine recipients. DNA is mainly synthetic, ensuring enhanced expression in the cells of vaccine recipients (mostly mammalians). Their introduction into the host induces antibody and cellular responses. The latter are often more pronounced, and mimic the events occurring in infection, especially viral. There are a few distinct ways in which the vaccine antigen can be processed and presented, which determine the resulting immune response and which can be manipulated. Routinely, the antigen synthesized within the host cell is processed by proteasome, loaded onto, and presented in a complex with MHC I molecules. Processing can be re-routed to the lysosome, or immunogen can be secreted for further presentation in a complex with MHC II. Apart from expression, vaccination efficacy depends on DNA delivery. DNA immunogens are generally administered by intramuscular or intradermal injections, usually followed by electroporation, which enhances delivery 1000-fold. Other techniques are also used, such as noninvasive introduction by biojectors, skin applications with plasters and microneedles/chips, sonication, magnetofection, and even tattooing. An intense debate regarding the pros and cons of different routes of delivery is ongoing. A number of studies have compared the effect of delivery methods at the level of immunogen expression, and the magnitude and specificity of the resulting immune response. According to some, the delivery route determines immunogenic performance; according to others, it can modulate the level of response, but not its specificity or polarity. The progress of research aiming at the optimization of DNA vaccine design, delivery, and immunogenic performance has led to a marked increase in their efficacy in large species and humans. New DNA vaccines for use in the treatment of infectious diseases, cancer, allergies, and autoimmunity are forthcoming. This Special Issue covers various aspects of DNA vaccine development.


DNA Vaccines

DNA Vaccines
Author: Hildegund C. J. Ertl
Publisher: Springer Science & Business Media
Total Pages: 374
Release: 2003
Genre: Medical
ISBN: 9780306474446

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DNA Vaccines: An Introduction; M.R. Hilleman. Architecture of a DNA vaccine; G. Pavlakis. DNA vaccine delivery; S. Kaufmann. Adjuvanticity of DNA vaccines; A. Krieg. Immune responses to DNA vaccines: Antigen presentation; R. Steinman. Immune responses to DNA vaccines: Antigen processing; J. Yewdell. Immune responses to DNA vaccines: Induction of B cells; G. Kelsoe. Immune responses to DNA vaccines: Induction of CD4+ T cells; E. Shevach. Immune responses to DNA vaccines: Induction of CD8+ T cells; L. Whitton. Immune responses to DNA vaccines: Cytokines as immune mediators as part of the immune response and their potential as genetic adjuvants to DNA vaccines; H. Ertl. Immune responses to DNA vaccines: Chemokines as immune mediators as part of the immune response and their potential as genetic adjuvants to DNA vaccines; P. Murphy. DNA Vaccines to infectious agents: RNA viruses; J. Ulmer. DNA Vaccines to infectious agents: HIV/SIV; B. Wahren. DNA Vaccines to infectious agents: DNA viruses; B. Rouse. DNA Vaccines to infectious agents: Tumor-associated viruses (excluding HBV); R. Kennedy. DNA Vaccines to infectious agents: Bacteria; D. Lowrie. DNA Vaccines to infectious agents: Parasites; S. Hoffman. Use of DNA vaccines for neonatal/early childhood immunization; C.-A. Siegrist. The potential of DNA vaccines for developing countries; H. Wilde. DNA vaccines and their potential to counterbalance biological warfare/bioterrorism; A. Schmaljohn. DNA vaccines to cancer associated/specific antigens; DNA vaccines to autoimmune diseases; H. Wigzell. DNA vaccines to allergic diseases; Yan Chuah, P. Holt. DNA vaccines for gene therapy; K. High. Safety concerns for DNA; D. Klinman. DNA vaccines: Summary.


Opportunities in Biotechnology for Future Army Applications

Opportunities in Biotechnology for Future Army Applications
Author: National Research Council
Publisher: National Academies Press
Total Pages: 118
Release: 2001-07-11
Genre: Science
ISBN: 0309075556

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This report surveys opportunities for future Army applications in biotechnology, including sensors, electronics and computers, materials, logistics, and medical therapeutics, by matching commercial trends and developments with enduring Army requirements. Several biotechnology areas are identified as important for the Army to exploit, either by direct funding of research or by indirect influence of commercial sources, to achieve significant gains in combat effectiveness before 2025.


Concepts in Viral Pathogenesis

Concepts in Viral Pathogenesis
Author: A. L. Notkins
Publisher: Springer Science & Business Media
Total Pages: 418
Release: 2012-12-06
Genre: Science
ISBN: 1461252504

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The current proliferation of scientific information makes it difficult for even the most diligent reader to keep up with the latest developments in his/her own field, let alone other areas of interest. Review articles are one solution, but they too have become so voluminous and detailed that they often defeat the purpose for which they were intended. We have attempted to ease this problem by using a different format. In this volume on Concepts in Viral Pathogenesis, we have assembled a series of mini-reviews/editorials, 1,000 to 2,000 words in length. Each is a pithy distil lation of the state-of-the-art with emphasis on current thinking and unifying concepts rather than a compendium of the literature. The 53 articles, all written by active workers in their respective fields, are organized systemati cally so that the book will provide busy investigators, teachers and students of up-to-date information in a very brief and easily read a conceptual core able form. In addition, the authors have attempted to identify unresolved problems and point to future directions.


Vaccine Development and Manufacturing

Vaccine Development and Manufacturing
Author: Emily P. Wen
Publisher: John Wiley & Sons
Total Pages: 452
Release: 2014-10-06
Genre: Technology & Engineering
ISBN: 1118870905

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Vaccine Manufacturing and Production is an invaluable reference on how to produce a vaccine - from beginning to end - addressing all classes of vaccines from a processing, production, and regulatory viewpoint. It will provide comprehensive information on the various fields involved in the production of vaccines, from fermentation, purification, formulation, to regulatory filing and facility designs. In recent years, there have been tremendous advances in all aspects of vaccine manufacturing. Improved technology and growth media have been developed for the production of cell culture with high cell density or fermentation. Vaccine Manufacturing and Production will serve as a reference on all aspects of vaccine production by providing an in-depth description of the available technologies for making different types of vaccines and the current thinking in facility designs and supply issues. This book will provide insight to the issues scientists face when producing a vaccine, the steps that are involved, and will serve as a reference tool regarding state-of-the-art vaccine manufacturing technologies and facility set-up. Highlights include: Comprehensive coverage of vaccine production : from a process point of view- fermentation to purification to formulation developments; from a production point of view - from facility design to manufacturing; and from a regulatory point of view - requirements from government agencies Authors from different major pharmaceutical and biotechnology companies Describes the challenges and issues involved in vaccine production and manufacturing of the different classes of vaccines, an area not covered by other books currently on the market


Gene Vaccination: Theory and Practice

Gene Vaccination: Theory and Practice
Author: Eyal Raz
Publisher: Springer Science & Business Media
Total Pages: 182
Release: 2012-12-06
Genre: Medical
ISBN: 3642468675

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Vaccination has been established as an efficient procedure to prevent infections. Over the past few years, a new method of subunit vaccination has attracted the attention of immunologists. Despite its popularity, it is only recently that the basic mechanisms that drive the immune response to the encoded antigen have begun to unfold. The multidisciplinary approach of this book outlines the basic characteristics of gene (DNA) vaccination, the role of APCs or bone marrow derived cells in the induction of the immune response. It points out the potential applications for various infectious and allergic diseases and describes the multifaceted properties of DNA in initiating and determining the subsequent immune responses to the encoded antigen.


DNA Vaccines

DNA Vaccines
Author: Douglas B. Lowrie
Publisher: Springer Science & Business Media
Total Pages: 530
Release: 2008-02-01
Genre: Medical
ISBN: 1592596886

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The field of DNA vaccines has undergone explosive growth in the last few years. As usual, some historical precursors of this approach can be d- cerned in the scientific literature of the last decades. However, the present state of affairs appears to date from observations made discreetly in 1988 by Wolff, Malone, Felgner, and colleagues, which were described in a 1989 patent and published in 1990. Quite surprisingly, they showed that genes carried by pure plasmid DNA and injected in a saline solution, hence the epithet “naked DNA,” could be taken up and expressed by skeletal muscle cells with a low but reproducible frequency. Such a simple methodology was sure to spawn many applications. In a separate and important line of experimentation, Tang, De Vit, and Johnston announced in 1992 that it was indeed possible to obtain humoral immune responses against proteins encoded by DNA delivered to the skin by a biolistic device, which has colloquially become known as the “gene gun. ” The year 1993 saw the publication of further improvements in the me- ods of naked DNA delivery and, above all, the first demonstrations by several groups of the induction of humoral and cytotoxic immune responses to viral antigens expressed from injected plasmid DNA. In some cases, protection against challenge with the pathogen was obtained. The latter result was - questionably the touchstone of a method of vaccination worthy of the name.


The Flaviviruses: Detection, Diagnosis and Vaccine Development

The Flaviviruses: Detection, Diagnosis and Vaccine Development
Author:
Publisher: Elsevier
Total Pages: 607
Release: 2003-12-18
Genre: Medical
ISBN: 0080493831

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Over 50% of known flaviviruses have been associated with human disease. The Flavivirus genus constitutes some of the most serious human pathogens including Japanese encephalitis, dengue and yellow fever. Flaviviruses are known for their complex life cycles and epidemic spread, and are considered a globally-emergent viral threat. Detection, Diagnosis and Vaccine Development, the third volume of The Flaviviruses details the current status of technologies for detection and differentiation of these viruses, their use in surveillance and outbreak investigation, and also reviews the latest clinical research. Comprehensive approach to the scientific disciplines needed to unravle the complexities of virus-host interactions Descibes the technologies that have contributed to our current knowledge about the Flaviviruses Identifies the major problems faced in understanding the virus-host interactins that result in disease An exhaustive compendium of current and past knowledge on the Flavivirus family


Gene Vaccines

Gene Vaccines
Author: Josef Thalhamer
Publisher: Springer Science & Business Media
Total Pages: 332
Release: 2011-08-31
Genre: Medical
ISBN: 3709104394

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The induction of antigen-specific immune responses after in vivo transfection with expression plasmids has triggered a revolution of vaccine research. After a first hype, evoked by the fascinating options of this method, clinical studies did not reach the ambitious aims and a phase of disillusion ensued. It became obvious that Gene vaccines displayed a weaker immunogenicity in humans than had been observed in the mouse models. Meanwhile these hurdles have been overcome and gene vaccines undergo a renaissance. The present book gives an update of the “world of naked gene vaccines”, namely DNA and RNA vaccines. Its content ranges from general mechanisms, inherent immunostimulatory properties and the vast potential to modulate immune responses, to recent successful clinical studies and approved veterinary gene vaccines. Beyond the state-of-the-art of genetic immunization, the reader will be stimulated with a chapter addressing “burning questions”.