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Drug Repurposing in Cancer Therapy: Approaches and Applications provides comprehensive and updated information from experts in basic;
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This brief summarizes different types of organic and inorganic nanomaterials for drug delivery in cancer therapy. It highlights that;
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Kinase Inhibitor Drugs covers a wide and comprehensive range of topics about kinase-targeted inhibitors in cancer therapy, one of the;
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Drug development can be time-consuming and expensive. Recent estimates suggest that, on average, it takes 10 years and at least $1 billion;
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This Brief focuses on the cancer therapy available till date, from conventional drug delivery to nanomedicine in clinical trial;
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owing to their unique structure. Nanoparticle-based drugs are now widely regarded as a safer, more precise, and more effective mode of cancer;
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Nucleic Acids as Gene Anticancer Drug Delivery Therapy highlights the most recentdevelopments in cancer treatment using nucleic acids;
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Drug repurposing is the development of existing drugs for new uses: given that 9 in 10 drugs that enter drug development are never marketed;
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provide a comprehensive overview on gene therapy and delivery methods for cancer treatment, oral drug delivery and barriers, cancer imaging for;
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In Silico Drug Design: Repurposing Techniques and Methodologies explores the application of computational tools that can be utilized;
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Intraperitoneal Cancer Therapy: Principles and Practice is one of the first books to combine the latest clinical developments in the;
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natural components of the body and offer effective and versatile drug delivery systems for cancer therapy. It also assesses the potential;
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Completely revised and updated for 2017, the Physicians' Cancer Chemotherapy Drug Manual is an up-to-date guide to the latest information;
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nanoparticles, radiofrequency, gene therapy, biological particles, and the intermolecular interactions associated with nanoparticle based cancer therapy;
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Epigenetic Cancer Therapy unites issues central to a translational audience actively seeking to understand the topic. It is ideal for;
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regimens for all major cancers * Provides an overview of the basic principles of cancer drug therapy;
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all major cancers * Provides an overview of the basic principles of cancer drug therapy;
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Antigens as Surrogate Markers and Targets for Therapy and Vaccines; Practices and Pitfalls of Mouse Cancer Models in Drug Discovery; Biomarker;
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One of the main causes of failure in the treatment of cancer is the development of drug resistance by the cancer cells. The design;
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. As nanopharmaceuticals improve the therapeutic performance of cancer therapy drugs, but also provide opportunities for site-specific;
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mesoporous silica and protein delivery, Drug loading, stimuli-responsive delivery and cancer treatment, Animal models and cancer therapy, siRNA;
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mesoporous silica and protein delivery, Drug loading, stimuli-responsive delivery and cancer treatment, Animal models and cancer therapy, siRNA;
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Drug Discovery in Cancer Epigenetics is a practical resource for scientists involved in the discovery, testing, and development;
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Drug resistance in cancer, whereby a proportion of cancer cells evades chemotherapy, poses a profound and continuing challenge for the;
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Drug resistance in cancer, whereby a proportion of cancer cells evades chemotherapy, poses a profound and continuing challenge for the;
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