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Peptide-Based Cancer Vaccines

Peptide-Based Cancer Vaccines
Author: W. Martin Kast
Publisher: CRC Press
Total Pages: 231
Release: 2000-10-01
Genre: Science
ISBN: 1498713238

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The field of peptide based cancer vaccines has evolved tremendously in the last decade of this century. The exploration on how to apply the peptide knowledge for vaccination purposes began when it was demonstrated that these peptides after being mixed into adjuvants actually induced T cell responses that could prevent virus infections and tumor gro


Peptide-based Cancer Vaccines

Peptide-based Cancer Vaccines
Author:
Publisher:
Total Pages: 239
Release: 2000
Genre: Cancer
ISBN: 9781587064081

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The field of peptide based cancer vaccines has evolved tremendously in the last decade of this century. The exploration on how to apply the peptide knowledge for vaccination purposes began when it was demonstrated that these peptides after being mixed into adjuvants actually induced T cell responses that could prevent virus infections and tumor growth in experimental animal models.


Vaccines for Cancer Immunotherapy

Vaccines for Cancer Immunotherapy
Author: Nima Rezaei
Publisher: Academic Press
Total Pages: 198
Release: 2018-10-17
Genre: Medical
ISBN: 0128140402

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Therapeutic cancer vaccines represent a type of active cancer immunotherapy. Clinicians, scientists, and researchers working on cancer treatment require evidence-based and up-to-date resources relating to therapeutic cancer vaccines. Vaccines for Cancer Immunotherapy provides a reference for cancer treatment for clinicians and presents a well-organized resource for determining high-potential research areas. The book considers that this promising modality can be made more feasible as a treatment for cancer. Chapters cover cancer immunology, general approaches to cancer immunotherapy, vaccines, tumor antigens, the strategy of allogeneic and autologous cancer vaccines, personalized vaccines, whole-tumor antigen vaccines, protein and peptide vaccines, dendritic cell vaccines, genetic vaccines, candidate cancers for vaccination, obstacles to developing therapeutic cancer vaccines, combination therapy, future perspectives and concluding remarks on therapeutic cancer vaccines. Introduces the feasible immunotherapeutic vaccines for patients with different types of cancer Presents the status of past and current vaccines for cancer treatment Considers advantages and disadvantages of different therapeutic cancer vaccines Looks at the combination of vaccines and other modalities, including immunotherapeutic and conventional methods Analyzes obstacles to development of therapeutic cancer vaccines Gives a view on future perspectives in the application of therapeutic cancer vaccines


Cancer Vaccines and Immunotherapy

Cancer Vaccines and Immunotherapy
Author: Peter L. Stern
Publisher: Cambridge University Press
Total Pages: 304
Release: 2000-08-17
Genre: Medical
ISBN: 9780521622639

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Rapid progress in the definition of tumor antigens, and improved immunization methods, bring effective cancer vaccines within reach. In this wide-ranging survey, leading clinicians and scientists review therapeutic cancer vaccine strategies against a variety of diseases and molecular targets. Intended for an interdisciplinary readership, their contributions cover the rationale, development, and implementation of vaccines in human cancer treatment, with specific reference to cancer of the cervix, breast, colon, bladder, and prostate, and to melanoma and lymphoma. They review target identification, delivery vectors and clinical trial design. The book begins and ends with lucid overviews from the editors, that discuss the most recent developments.


Cancer Vaccines as Immunotherapy of Cancer

Cancer Vaccines as Immunotherapy of Cancer
Author: Luigi Buonaguro
Publisher: Academic Press
Total Pages: 273
Release: 2022-03-04
Genre: Science
ISBN: 0128239026

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Cancer Vaccines as Immunotherapy of Cancer provides extensive and state-of-the-art information about the meaning, relevance and limitation of therapeutic cancer vaccines. It covers all the aspects involved in the vaccine research and development (identification of optimal target antigens, formulations, delivery strategies, adjuvants among others) as well as their use in combination with other immunomodulatory approaches. The book discusses topics such as identification of tumor associated and specific antigens, proteogenomic for identification of novel target tumor antigens, antigen-specific T cells, and Peptide and RNA based vaccines. Additionally, it covers oncolytic viruses for antigen delivery, cancer vaccine targeting viral antigens and combinatorial immunotherapy strategies. Written by leading experts worldwide, this is a valuable resource for cancer researchers, oncologists and members of biomedical field who wants to understand in depth the recent findings in the field of cancer vaccines. Describes the state-of-the-art of the research and development of therapeutic cancer vaccines Presents detailed diagrams to help the reader understand the functionality of each type of vaccine discussed Encompasses recent findings in the field through chapters written by leading experts worldwide


Nanotherapeutics in Cancer Vaccination and Challenges

Nanotherapeutics in Cancer Vaccination and Challenges
Author: Mahfoozur Rahman
Publisher: Academic Press
Total Pages: 496
Release: 2022-03-03
Genre: Business & Economics
ISBN: 0128236876

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Nanotherapeutics in Cancer Vaccination and Challenges consolidates the current research on cancer nanomedicine and therapeutic cancer vaccination to explore the most effective and promising avenues. The book covers cancer vaccines before exploring nanotherapeutics, DNA and mRNA vaccines in cancer treatment. Finally, it considers regulatory and industrial perspectives on cancer vaccination and nanotherapeutics. This resource will be useful for pharmaceutical scientists and researchers focused on biomedical engineering, chemical engineering, vaccine development, and cancer immunotherapy, along with advanced students in these subjects. Cancer is arguably the most complex and challenging disease known to mankind. Over the last two-decades, significant advancements have been made in new and novel concepts of cancer nanomedicines. Therapeutic cancer vaccines may be utilized to inhibit further growth of advanced cancers and/or relapsed tumors that are refractory to conventional therapies, such as surgery, radiation therapy and chemotherapy. Presents the progress made in cancer medicines from conventional to targeted therapy Covers the present state-of-the-art of cancer nanomedicines and upcoming therapeutic cancer vaccination Contains a focus on advanced nanomaterials that are utilized for encapsulation of nucleic acid, mRNA, DNA, siRNA


Synthetic Peptide Vaccine Models

Synthetic Peptide Vaccine Models
Author: Mesut Karahan
Publisher: CRC Press
Total Pages: 315
Release: 2021-02-28
Genre: Science
ISBN: 1000342735

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A new generation of technological vaccines protect against many infectious diseases. This book describes synthetic peptide-based vaccine prototypes – the future of vaccination. Production of peptides becomes simple using automatic synthesizers. Peptides are weak immunogen and need adjuvants to provide an effective autoimmune response, which is why peptide antigens are conjugated with biopolymers and loaded with nanoparticles. The book illustrates the use of peptides vaccine systems and makes predictions of future development not only for infectious diseases, but also for cancers and brain diseases such as Alzheimer, Parkinson and psychiatric diseases. Key Features Summarizes current studies on technological vaccines Describes the uses of vaccines for the prevention of brain diseases Reviews the ways different polymers are used to enhance vaccine efficacy


Addressing Delivery and Synthesis Challenges for Peptide-based Cancer Vaccines

Addressing Delivery and Synthesis Challenges for Peptide-based Cancer Vaccines
Author: Rebecca Lynn Holden
Publisher:
Total Pages: 193
Release: 2020
Genre:
ISBN:

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Therapeutic peptide vaccines have the potential to elicit and direct an anti-cancer T cell response, but their clinical efficacy has been limited in part by poor delivery to the lymphatic system, inefficient cell uptake, and scalable synthesis in the case of personalized vaccines. The work presented in this thesis explores several approaches to address these challenges. First, we use our fast-flow automated synthesis technology to confront the synthesis bottleneck for patient-specific 'neoantigen' vaccines, which have shown early promise but are hindered by slow production. We synthesize a particularly challenging set of peptides from a previous clinical trial as a test case, demonstrating that our technology can produce the majority of sequences in sufficient quantities with comparable or higher purity than a commercial vendor in a fraction of the time. Turning towards vaccine design, we explore several approaches to address the lymphatic and intracellular delivery of peptide antigens. We demonstrate the generality and anti-tumor efficacy of vaccines containing cell-penetrating peptides (CPPs), sequences shown to enhance the cell uptake of various cargo. We characterize their mechanism and identify several unanticipated contributors, namely trafficking to the lymph nodes, serum stability, and extended presentation in vivo. We then expand on an existing approach to mediate lymphatic trafficking via binding serum albumin by exploring additional albumin binding moieties. Next, we develop a straightforward and general approach to directly quantify antigen presentation and implement this technique to explore two strategies to design more effective vaccines, including CPPs. Finally, we build on previous work using CPPs to deliver antisense oligonucleotides (ASOs), another application that we pursued in tandem with cancer vaccines. We combine amphipathic and cationic CPPs to create chimeric sequences that synergistically enhance activity of an ASO and access new routes of uptake not utilized by either parent CPP. Drawing from our experience using CPPs to deliver ASOs as well as our expertise in peptide synthesis and design, we provide insight into the rapid production of personalized vaccines and efficient delivery of vaccine antigens. This thesis represents a new area of research for our lab, one in which we will hopefully continue to apply our unique skillset and perspective.