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This book addresses the biological processes relevant to the immune phenotypes of cancer and their significance for immune responsiveness, based on the premise that malignant cells manipulate their surroundings through an evolutionary process that is controlled by interactions with innate immune sensors as well as the adaptive recognition of self/non-self. Checkpoint inhibitor therapy is now an accepted new form of cancer treatment. Other immuno-oncology approaches, such as adoptive cell therapy and metabolic inhibitors, have also shown promising results for specific indications. Immune resistance is common, however, limiting the efficacy of immunotherapy in many common cancer types. The rea...
This book presents essential information on the use of the immunodeficient C.B.-17 SCID/SCID mouse for studying human hematopoiesis in vivo. Because of the lack of both humoral and cellular immunity, this mouse can be a unique host for implantation of human hematopoietic tissue using different methods. In the first section, in vivo development of human hematopoietic stem cells and differentiation of human T cells are described. In addition, the effects of growth factors and toxic agents of human hematopoiesis are described. The second section contains chapters in which the human immune responses in the SCID mouse are reviewed. The third section covers SCID mouse models to study human infectious diseases, leukemias and genetic disorders.
Cancer, a global health crisis, is projected by WHO to cause 10 million deaths by 2020, with a mortality rate of one in six. This has spurred intensive research for innovative treatments. Cancer arises from genetic abnormalities triggering uncontrolled cell division, presenting distinct hallmarks. Both inherited and acquired mutations transform cell behavior, resulting in abnormal growth, reproduction, and death. Environmental toxins and spontaneous mutations contribute to genetic changes, while hereditary factors predispose some individuals. Despite rapid advancements in targeted treatments and immunotherapy, therapy resistance remains a formidable challenge due to the disease's heterogeneity. Understanding cancer biology is crucial for developing effective treatments. This book provides a comprehensive overview, covering basic cell biology, genetics, cancer development mechanisms, immune system involvement, diagnostic methods, treatment modalities, including emerging therapies, and challenges like drug resistance. Geared towards students and researchers in biology, medicine, and oncology, it offers vital insights into combating this complex disease.
An integrated overview of cancer drug discovery and development from the bench to the clinic, showing with broad strokes and representative examples the drug development process as a network of linked components leading from the discovered target to the ultimate therapeutic product. Following a systems biology approach, the authors explain genomic databases and how to discover oncological targets from them, how then to advance from the gene and transcript to the level of protein biochemistry, how next to move from the chemical realm to that of the living cell and, ultimately, pursue animal modeling and clinical development. Emerging cancer therapeutics including Ritux an, Erbitux, Gleevec Herceptin, Avastin, ABX-EGF, Velcade, Kepivance, Iressa, Tarceva, and Zevalin are addressed. Highlights include cancer genomics, pharmacogenomics, transcriptomics, gene expression analysis, proteomic and enzymatic cancer profiling technologies, and cellular and animal approaches to cancer target validation.
The Advances in Cancer Research series provides invaluable information on the exciting and fast-moving field of cancer research. This volume presents outstanding and original reviews on a variety of topics including
The AACR Annual Meeting is a must-attend event for cancer researchers and the broader cancer community. This year's theme, "Delivering Cures Through Cancer Science," reinforces the inextricable link between research and advances in patient care. The theme will be evident throughout the meeting as the latest, most exciting discoveries are presented in every area of cancer research. There will be a number of presentations that include exciting new data from cutting-edge clinical trials as well as companion presentations that spotlight the science behind the trials and implications for delivering improved care to patients. This book contains abstracts 2697-5293 presented on April 19-20, 2016, at the AACR Annual Meeting.