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Engineering and Physical Approaches to Cancer / edited by Ian Y. Wong, Michelle R. Dawson

Material type: materialTypeLabelE-bookSeries: (Current Cancer Research, 2199-2592).Publisher: Cham : Springer International Publishing, 2023Edition: 1st ed. 2023.Description: 1 recurso en línea.ISBN: 9783031228025.Subject: Cáncer -- TratamientoOnline resources: Acceso a este recurso digital (usuarios Universidad Europea de Madrid)Digital Resources
Contents:
Chapter 1. EMT -- Chapter 2. Nuclear/Chromatin Mechanics -- Chapter 3. Cell level mechanical changes -- Chapter 4. Physical aspects related to metabolism -- Chapter 5. Mechanical tropism / Physical aspects of seed and soil -- Chapter 6. Tumor microenvironment interactions -- Chapter 7. Extracellular Matrix -- Chapter 8. Physical Assays Focused on Tumor Heterogeneity -- Chapter 9. Ecology / evolution of the tumor microenvironment -- Chapter 10. Spatial transcriptomics / proteomics in the Human Tumor Atlas.
Summary: Engineering and Physical Approaches to Cancer addresses the newest research at this interface between cancer biology and the physical sciences. Several chapters address the mechanobiology of collective and individual cell migration, including experimental, theoretical, and computational perspectives. Other chapters consider the crosstalk of biological, chemical, and physical cues in the tumor microenvironment, including the role of senescence, polyploid giant cells, TGF-beta, metabolism, and immune cells. Further, chapters focus on circulating tumor cells and metastatic colonization, highlighting both bioengineered models as well as diagnostic technologies. Further, this book features the work of emerging and diverse investigators in this field, who have already made impressive cross-disciplinary scientific contributions. This book is designed for a general audience, particularly researchers conversant in cancer biology but less familiar with engineering (and vice-versa). Thus, we envision that this book will be suitable for faculty, postdoctoral fellows, and advanced graduate students across medicine, biological sciences, and engineering. We also anticipate this book will be of interest to medical professionals and trainees, as well as researchers in the pharmaceutical and biomedical device industry.
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Holdings
Item type Current library Collection Call number Status Date due Barcode Item holds
LIBRO-E NO PRÉSTAMO LIBRO-E NO PRÉSTAMO Madrid Digital Acceso Electrónico (UEM) Ciencias de la Salud RC270.8 2023 EB (Browse shelf(Opens below)) Acceso electrónico ebook28052282
Total holds: 0

Chapter 1. EMT -- Chapter 2. Nuclear/Chromatin Mechanics -- Chapter 3. Cell level mechanical changes -- Chapter 4. Physical aspects related to metabolism -- Chapter 5. Mechanical tropism / Physical aspects of seed and soil -- Chapter 6. Tumor microenvironment interactions -- Chapter 7. Extracellular Matrix -- Chapter 8. Physical Assays Focused on Tumor Heterogeneity -- Chapter 9. Ecology / evolution of the tumor microenvironment -- Chapter 10. Spatial transcriptomics / proteomics in the Human Tumor Atlas.

Engineering and Physical Approaches to Cancer addresses the newest research at this interface between cancer biology and the physical sciences. Several chapters address the mechanobiology of collective and individual cell migration, including experimental, theoretical, and computational perspectives. Other chapters consider the crosstalk of biological, chemical, and physical cues in the tumor microenvironment, including the role of senescence, polyploid giant cells, TGF-beta, metabolism, and immune cells. Further, chapters focus on circulating tumor cells and metastatic colonization, highlighting both bioengineered models as well as diagnostic technologies. Further, this book features the work of emerging and diverse investigators in this field, who have already made impressive cross-disciplinary scientific contributions. This book is designed for a general audience, particularly researchers conversant in cancer biology but less familiar with engineering (and vice-versa). Thus, we envision that this book will be suitable for faculty, postdoctoral fellows, and advanced graduate students across medicine, biological sciences, and engineering. We also anticipate this book will be of interest to medical professionals and trainees, as well as researchers in the pharmaceutical and biomedical device industry.

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