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Home > Mathematics and Science Textbooks > Biology, life sciences > Developmental biology > Animal Models of Disease Part A: Volume 185(Volume 185 Methods in Cell Biology)
Animal Models of Disease Part A: Volume 185(Volume 185 Methods in Cell Biology)

Animal Models of Disease Part A: Volume 185(Volume 185 Methods in Cell Biology)


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About the Book

Animal Models of Disease, Part A, Volume 185 in the Methods in Cell Biology series, highlights advances in the field, with this new volume presenting interesting chapters on a variety of timely topics, including New mouse model to study aneurysm development, Mouse Model of Secondary Cystic Echinococcosis, Modelling childhood cancer in Drosophila, Analysis of immunohistomorphological changes in the colonic mucosa in a high-saturated fat and high-cholesterol fed streptozotocin/nicotinamide diabetic rat model, Establishment of an orthotopic Glioblastoma mouse model for preclinical studies, Lateral Fluid Percussion Injury as a Model for Traumatic Brain Injury, Ovarian and colorectal peritoneal carcinomatosis in mouse models, and more. Other chapters cover Genetically engineered mouse model of hepatocellular carcinoma, Radiotherapy protocol in cancer mouse models, Using C. elegans as a model for neurodegenerative diseases: Methodology and evaluation, Methodology for the induction of myocardial infarction and cardiac function evaluation, Behavioral assessment of fine socio-sexual olfactory cues detection in a mouse model of neurodegeneration, Heat shock and thermotolerance in Caenorhabditis elegans: an overview of laboratory techniques, and Using the model cestode Taenia crassiceps for the study of cysticercosis.

Table of Contents:
Preface Lorenzo Galluzzi, Fernando Aranda Vega, Aitziber Buque and José Manuel Bravo-San Pedro 1. Heat shock and thermotolerance in Caenorhabditis elegans: an overview of laboratory techniques Nektarios Tavernarakis 2. Using the model cestode Taenia crassiceps for the study of cysticercosis Marcela Alejandra Cucher 3. Modelling childhood cancer in Drosophila Isabel Adrados 4. Establishment of an orthotopic Glioblastoma mouse model for preclinical studies Nerea Iturrioz Rodriguez 5. Ovarian and colorectal peritoneal carcinomatosis in mouse models Ángela Bella Carreño 6. Genetically engineered mouse model of hepatocellular carcinoma Navarro Flor 7. Radiotherapy protocol in cancer mouse models Maria Esperanza Rodriguez Ruiz 8. MURINE MODEL OF SECONDARY CYSTIC ECHINOCOCCOSIS Gustavo Mourglia-Ettlin 9. Behavioral assessment of fine socio-sexual olfactory cues detection in a mouse model of neurodegeneration Adrián Portalés and Alberto Sanchez Aguilera 10. Methodology for the induction of myocardial infarction and cardiac function evaluation Ernesto Martinez Martinez 11. Analysis of immunohistomorphological changes in the colonic mucosa in a high-saturated fat and high-cholesterol fed streptozotocin/nicotinamide diabetic rat model. Marina Hernandez Martin and F.J. Sanchez-Muniz 12. Lateral Fluid Percussion Injury as a Model for Traumatic Brain Injury María Sancho and Luisa Lilia Rocha

About the Author :
Lorenzo Galluzzi is Assistant Professor of Cell Biology in Radiation Oncology at the Department of Radiation Oncology of the Weill Cornell Medical College, Honorary Assistant Professor Adjunct with the Department of Dermatology of the Yale School of Medicine, Honorary Associate Professor with the Faculty of Medicine of the University of Paris, and Faculty Member with the Graduate School of Biomedical Sciences and Biotechnology of the University of Ferrara, the Graduate School of Pharmacological Sciences of the University of Padova, and the Graduate School of Network Oncology and Precision Medicine of the University of Rome “La Sapienza”. Moreover, he is Associate Director of the European Academy for Tumor Immunology and Founding Member of the European Research Institute for Integrated Cellular Pathology. Galluzzi is best known for major experimental and conceptual contributions to the fields of cell death, autophagy, tumor metabolism and tumor immunology. He has published over 450 articles in international peer-reviewed journals and is the Editor-in-Chief of four journals: OncoImmunology (which he co-founded in 2011), International Review of Cell and Molecular Biology, Methods in Cell biology, and Molecular and Cellular Oncology (which he co-founded in 2013). Additionally, he serves as Founding Editor for Microbial Cell and Cell Stress, and Associate Editor for Cell Death and Disease, Pharmacological Research and iScience. Fernando Aranda holds a BSc in Biology (2006) and Biochemistry (2007) from the University of Navarra. Then, he specialized in different strategies of Cancer Immunotherapy with a MSc in Biomedical Research (2008), and a PhD Degree (2012) from the University of Navarra (Pamplona) – Cima University of Navarra. More than 12 years in translational research focus on antitumor immune responses and Cancer Immunotherapy. Author of 64 publications indexed in PubMed in prestigious international journals, with h-index 30 and 4,296 cites (October 2022). He completed the Program of Sara Borrell (ISCIII) -competitive Postdoctoral contract- in the Group of Immune Receptors of the Innate and Adaptive System (IDIBAPS), Barcelona (2016-2018). Co-author of 1 invention patent: Composition based on the fibronectin domain A for the treatment of melanoma - WO/2011/101332. In 2012, Fernando Aranda obtained a Scientific Award, "Profesor Durantez" II Edición, for the best scientific article in Tumor Immunology by Fundación LAIR. Recently, Fernando Aranda awarded a competitive Research Fellow contract “Miguel Servet tipo I” by Instituto de Salud Carlos III, to continue his independent researcher career (IP) in cancer immunotherapy issues. Specifically, he is involved in Translational Immunotherapy of Peritoneal Carcinomatosis. Currently, Fernando Aranda leads a research group in cooperation with Dr. Pedro Berraondo. Aitziber Buqué is currently a Post-Doctoral Associate with the Galluzzi Lab, in the Department of Radiation Oncology at Weill Cornell Medical College (New York), where she investigates innate and acquired mechanisms of resistance to immunotherapy in HR+ breast cancer and radiotherapy as a means to overcome them. Prior to joining the Galluzzi Lab (2018), Aitziber was a Post-Doctoral Associate with the Kroemer Lab in the Cordeliers Research Center (Paris, France; 2014-2018), after receiving her M.Sc. in Bioinformatics and Computational Biology (2006) from the Complutense University (Madrid, Spain) and her Ph.D. in Biomedicine (2013) from the BioCruces Research Institute (Barakaldo, Spain). Aitziber has a long-standing interest in the immunological mechanisms controlling cancer progression and response to treatment. Jose Manuel Bravo-San Pedro is currently a researcher at the Department of Physiology of the Complutense University of Madrid thanks to a Ramon y Cajal contract grant. He got his Ph.D. in biochemistry, cellular biology and genetics from the University of Extremadura (Caceres, Spain) in 2011, and he did a post-doctoral stage in the laboratory of Prof. Guido Kroemer. His main research interests have always been linked to autophagy, addressing this cellular process associated with neurodegenerative diseases or cancer and recently obesity and specifically related to problems in the correct functioning of the cilium. He is co-inventor of two patents and co-author of 110 publications indexed in PubMed in prestigious international journals, with h-index 45 and 23768 cites (Dec 2022).


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Product Details
  • ISBN-13: 9780443222382
  • Publisher: Elsevier Science Publishing Co Inc
  • Publisher Imprint: Academic Press Inc
  • Height: 229 mm
  • Series Title: Volume 185 Methods in Cell Biology
  • Weight: 580 gr
  • ISBN-10: 044322238X
  • Publisher Date: 02 Apr 2024
  • Binding: Hardback
  • Language: English
  • Sub Title: Volume 185
  • Width: 152 mm


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