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  • Books  (6)
  • Cancer Treatment.  (5)
  • Cancers.
  • Cham :Springer International Publishing :  (6)
  • 571.978  (6)
  • 1
    Online Resource
    Online Resource
    Cham :Springer International Publishing :
    Keywords: Cancer. ; Cancer Treatment. ; Tumor markers. ; Cancer Biology. ; Cancer Therapy. ; Tumour Biomarkers.
    Description / Table of Contents: Part 1. CTC Technologies -- Affinity -- Physical -- ctDNA -- miRNA -- Exosomes -- Part 2 -- Biology of CTC -- Dormancy -- Culture -- EMT -- ctDNA and Exosomes -- Cells in circulation with CTC -- Part 3 -- CTC Analysis -- IHC, FISH, and other molecular assays -- Functional characterization -- Advanced microscopy and AI -- Analysis of non-cellular circulating markers -- Part 4 -- Clinical Applications of the Liquid Biopsy -- Early detection and cancer screening -- Prognosis and therapeutic monitoring -- Applications in Clinical Trials -- Applications in Drug Development.
    Abstract: It is well recognized that blood could be the optimal site for evaluating cancer, allowing easy and repeated access for determining prognosis, establishing molecular targets, evaluating the efficacy of therapy, detecting the earliest signs of recurrence, and even detecting cancer at its earliest and most curable stages. The analysis of cancer through blood samples is now known as the liquid biopsy and has been a rich source of research and clinical application. There has been an explosion of interest and progress in liquid biopsy technologies since the first edition of this book. The second edition will expand its focus to now include not only circulating tumor cells (CTC), but also other emerging aspects of the liquid biopsy, including circulating tumor DNA and methylated DNA (ctDNA, ct meDNA), ctRNA, ct miRNA, circulating tumor proteins (and other) biomarkers and circulating tumor derived exosomes (ctExosomes).
    Type of Medium: Online Resource
    Pages: XXI, 668 p. 77 illus., 72 illus. in color. , online resource.
    Edition: 2nd ed. 2023.
    ISBN: 9783031229039
    Series Statement: Current Cancer Research,
    DDC: 571.978
    Language: English
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  • 2
    Online Resource
    Online Resource
    Cham :Springer International Publishing :
    Keywords: Cancer. ; Cancer Treatment. ; Neurosciences. ; Immunotherapy. ; Cancer Biology. ; Cancer Therapy. ; Neuroscience. ; Cancer Microenvironment. ; Immunotherapy.
    Description / Table of Contents: Chapter 1. Introduction -- Chapter 2. Neuronal influence on cancer initiation and growth -- Chapter 2.1 Paracrine signaling in CNS primary tumors and brain metastases -- Chapter 2.2 Paracrine signaling in PNS primary tumors -- Chapter 3. Neuronal influence on cancer invasion and metastasis including perineurial invasion -- Chapter 4. Neurotrophic activity of tumors -- Chapter 5. Cancer interactions with Schwann cells -- Chapter 6. Cancer-glial interactions -- Chapter 7. Neuron-cancer synaptic and other electrical signaling -- Chapter 8. Neuro-immune interactions system and immuno-oncology -- Chapter 9. Nervous system interactions with non-immune elements in the cancer microenvironment -- Chapter 10. Cancer-induced remodeling of the nervous system -- Chapter 11. Cancer and pain -- Chapter 12. Systemic interactions of cancer and the impact on the nervous system -- Chapter 13. Tools and model systems to study nerve-cancer interactions -- Chapter 14. Conclusions and Future Directions.
    Abstract: This volume is the first on the market to address and discuss the emerging field of cancer neuroscience. Edited by pioneers in the field with contributions from top researchers, the volume serves as a comprehensive overview of the role of nerves in tumorigenesis and cancer progression. Chapters will address how the innervation of tumors can serve as both prognostic and predictive biomarkers as well as actionable therapeutic targets. Authors will describe current research efforts, and future directions for study and translation to the clinic. It is becoming increasingly apparent that certain treatments will need to consider interactions between the nervous system and cancer, and the novel concepts presented in the book address related accumulating evidence regarding therapeutic strategies. This unique volume will be useful for cancer researchers, neuroscientists, cancer biologists, oncologists, and others looking to gain a greater understanding of this emerging field.
    Type of Medium: Online Resource
    Pages: XII, 202 p. 21 illus., 20 illus. in color. , online resource.
    Edition: 1st ed. 2023.
    ISBN: 9783031324291
    DDC: 571.978
    Language: English
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  • 3
    Online Resource
    Online Resource
    Cham :Springer International Publishing :
    Keywords: Cancer. ; Tumor markers. ; Non-coding RNA. ; Cancers. ; Tumour Biomarkers. ; Non-coding RNAs.
    Description / Table of Contents: Chapter 1. The Role of MicroRNAs in Cancer Biology and Therapy from a Systems Biology Perspective -- Chapter 2. Circulating MicroRNAs as Cancer Biomarkers in Liquid Biopsies -- Chapter 3. Regulation of Immune Cells by MicroRNAs and MicroRNA-Based Cancer Immunotherapy -- Chapter 4. Machine-Learning-Based Methods and Best Practices of MicroRNA-Target Prediction and Validation -- Chapter 5. Turning Data to Knowledge: Online Tools, Databases and Resources in MicroRNA Research -- Chapter 6. Bioinformatics Methods for Modeling MicroRNA Regulatory Networks in Cancer -- Chapter 7. Analysis of the p53/MicroRNA Network in Cancer -- Chapter 8. Machine Learning Using Gene-Sets to Infer miRNA Function -- Chapter 9. miRNA:miRNA Interactions: A Novel Mode of miRNA Regulation and Its Effect on Disease -- Chapter 10. ClustMMRA v2: A Scalable Computational Pipeline for the Identification of MicroRNA Clusters Acting Cooperatively on Tumor Molecular Subgroups -- Chapter 11. 3D Modeling of Non-coding RNA Interactions.
    Abstract: This book provides an update on the latest development in the field of microRNAs in cancer research with an emphasis on translational research. Since the early 2000s, microRNAs have been recognized as important and ubiquitous regulators of gene expression. Soon it became evident that their deregulation can cause human diseases including cancer. This book focuses on the emerging opportunities for the application of microRNA research in clinical practice. In this context, computer models are presented that can help to identify novel biomarkers, e.g. in circulating microRNAs, and tools that can help to design microRNA-based therapeutic interventions. Other chapters evaluate the role of microRNAs in immunotherapy, immune responses and drug resistance. Covering key topics on microRNAs in cancer research this book is a valuable resource for both emerging and established microRNA researchers who want to explore the potential of microRNAs as therapeutic targets or co-adjuvants in cancer therapies.
    Type of Medium: Online Resource
    Pages: VII, 317 p. 1 illus. , online resource.
    Edition: 1st ed. 2022.
    ISBN: 9783031083563
    Series Statement: Advances in Experimental Medicine and Biology, 1385
    DDC: 571.978
    Language: English
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  • 4
    Online Resource
    Online Resource
    Cham :Springer International Publishing :
    Keywords: Cancer. ; Cancer Animal models. ; Cancer Treatment. ; Cancer Genetic aspects. ; Cancer Biology. ; Cancer Models. ; Cancer Therapy. ; Cancer Genetics and Genomics. ; Cancer Microenvironment.
    Description / Table of Contents: Chapter 1: Cancer as a Disease of Cell Proliferation -- Chapter 2: Genetic and Chromosomal Instability -- Chapter 3: Cancer as a Disease of Defective Cell Cycle Checkpoint Function -- Chapter 4: The DNA Damage Checkpoint -- Chapter 5: Dynamics of the Spindle Assembly Checkpoint -- Chapter 6: Cancer as a Disease of Complexity: The Dynamics of Drug Resistance -- Chapter 7: Chronic Myeloid Leukaemia: a One-Hit Malignancy -- Chapter 8: Chronic Myelomonocytic Leukaemia: a Three-Hit Malignancy -- Chapter 9: The Cancer Stem Cell and Tumour Progression -- Chapter 10: Evading the antitumour immune response -- Chapter 11: Implications of Evolutionary Dynamics for Cancer Treatment and Prevention -- Chapter 12: In science, all conclusions are provisional.
    Abstract: Advances in cancer genomics are transforming our understanding of cancer, and have profound implications for its prevention, diagnosis, and treatment. Evolutionary dynamics suggests that as few as two mutations can cause transformation of normal cells into cancer stem cells. A process of Darwinian selection, involving a further three or more mutations, taking place over a period of years, can then result in progression to a life-threatening tumour. In many cases the immune response can recognise and eliminate the mutant cells, but most advanced tumours have mutations that activate immune checkpoints and enable the tumour to hide from the immune system. For the most hard-to-treat tumours, future progress will require molecular diagnostics to detect cancer-causing mutations in healthy subjects, and new drugs or vaccines that prevent the progression process. Chapters of this book deal with the signalling pathways that control cell division, and changes in these pathways in cancer cells. Three cell cycle checkpoints that are often mutated in cancer are analysed in detail. A discussion of chronic myeloid leukaemia illustrates the role of reactive oxygen species in driving progression from a chronic to an acute condition. A single drug that suppresses reactive oxygen can prevent disease progression and turn an otherwise deadly disease into a condition that can be managed to enable many years of normal life. Another chapter discusses chronic myelomonocytic leukaemia, a disease that involves both genetic and epigenetic change. Tumour progression is discussed as a multi-stage process in which cancer stem cells evolve into genetically unstable, invasive, metastatic, drug-resistant growths. Each of these stages can act as targets for drugs or immunomodulators, but the future of cancer treatment lies in understanding tumour dynamics, and arresting malignancy at the earliest possible stage. Evolutionary dynamics is a primarily mathematical technique, but the target readership will be tumour biologists, clinicians, and drug developers. Computational detail is provided in an online supplement, but the main text emphasises the implications of the dynamics for an understanding of tumour biology and does not require mathematical expertise.
    Type of Medium: Online Resource
    Pages: XIV, 269 p. 96 illus., 58 illus. in color. , online resource.
    Edition: 1st ed. 2023.
    ISBN: 9783031325731
    DDC: 571.978
    Language: English
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  • 5
    Keywords: Cancer. ; Biochemical markers. ; Microfluidics. ; Pharmacology. ; Cancer Treatment. ; Cancer Biology. ; Biomarkers. ; Microfluidics. ; Pharmacology. ; Cancer Therapy.
    Description / Table of Contents: Part 1. Fundamentals of Microfluidics and Biosensors -- Chapter 1. Fundamentals of Biosensors and Detection Methods -- Chapter 2. How to Get Away with Gradients -- Chapter 3. Sensors and Biosensors in Organs-on-a-chip Platforms -- Chapter 4. Current Trends in Microfluidics and Biosensors for Cancer Research Applications -- Part 2. Modelling the Tumor Microenvironment and Its Dynamic Events -- Chapter 5. The Tumor Microenvironment — an Introduction for the Development of Microfluidic Devices -- Chapter 6. Biomaterials for Mimicking and Modelling Tumor Micro-environment -- Chapter 7. Advancing Tumor Microenvironment Research by Combining Organs-on-chips and Biosensors -- Chapter 8. Microfluidic-driven Biofabrication and the Engineering of Cancer-like Microenvironments -- Chapter 9. Advances in 3d Vascularized Tumor-on-a-chip Technology -- Part 3. Cancer Detection and Diagnosis -- Chapter 10. Biosensors Advances: Contributions to Cancer Diagnostics and Treatment -- Chapter 11. Flexible Sensing Systems for Cancer Diagnostics -- Chapter 12. Coupling Micro-physiological Systems and Biosensors for Improving Cancer Biomarkers Detection -- Chapter 13. Microfluidic Biosensor-based Devices for Rapid Diagnosis and Effective Anti-cancer Therapeutic Monitoring for Breast Cancer Metastasis -- Chapter 14. Liquid Biopsies: Flowing Biomarkers -- Chapter 15. From Exosomes to Circulating Tumor Cells: Using Microfludics to Detect High Predictive Cancer Biomarkers -- Chapter 16. Microfluidics for the Isolation and Detection of Circulating Tumor Cells -- Chapter 17. Evolution in Automatized Detection of Cancer Cells: Advances in Magnetic Microcytometers -- Chapter 18. Droplet-based Microfluidic Chip Design, Fabrication and Use for Ultrahigh-throughput DNA Analysis and Quantification -- Chapter 19. Emerging Microfluidic and Biosensor Technologies for Improved Cancer Theranostics -- Part 4. Clinical Applications: Towards Personalized Medicine -- Chapter 20. Microfluidics for Cancer Biomarker Discovery, Research and Clinical Application -- Chapter 21. Methods for the Detection of Circulating Biomarkers in Cancer Patients -- Chapter 22. Advances in Microfluidics for the Implementation of Liquid Biopsy in Clinical Routine.
    Abstract: This book offers a comprehensive overview of the development and application of microfluidics and biosensors in cancer research, in particular, their applications in cancer modeling and theranostics. Over the last decades, considerable effort has been made to develop new technologies to improve the diagnosis and treatment of cancer. Microfluidics has proven to be a powerful tool for manipulating biological fluids with high precision and efficiency and has already been adopted by the pharmaceutical and biotechnology industries. With recent technological advances, particularly biosensors, microfluidic devices have increased their usefulness and importance in oncology and cancer research. The aim of this book is to bring together in a single volume all the knowledge and expertise required for the development and application of microfluidic systems and biosensors in cancer modeling and theranostics. It begins with a detailed introduction to the fundamental aspects of tumor biology, cancer biomarkers, biosensors and microfluidics. With this knowledge in mind, the following sections highlight important advances in developing and applying biosensors and microfluidic devices in cancer research at universities and in the industry. Strategies for identifying and evaluating potent disease biomarkers and developing biosensors and microfluidic devices for their detection are discussed in detail. Finally, the transfer of these technologies into the clinical environment for the diagnosis and treatment of cancer patients will be highlighted. By combining the recent advances made in the development and application of microfluidics and biosensors in cancer research in academia and clinics, this book will be useful literature for readers from a variety of backgrounds. It offers new visions of how this technology can influence daily life in hospitals and companies, improving research methodologies and the prognosis of cancer patients.
    Type of Medium: Online Resource
    Pages: XIX, 590 p. 100 illus., 99 illus. in color. , online resource.
    Edition: 1st ed. 2022.
    ISBN: 9783031040399
    Series Statement: Advances in Experimental Medicine and Biology, 1379
    DDC: 571.978
    Language: English
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  • 6
    Online Resource
    Online Resource
    Cham :Springer International Publishing :
    Keywords: Cancer. ; Metabolism. ; Cancer Treatment. ; Cancer Metabolism. ; Cancer Therapy. ; Cancer Biology.
    Description / Table of Contents: Part I. Basic Metabolism of Cancer Cells -- Glucose Metabolism in Cancer the Warburg effect and Beyond -- Glutamine Metabolism in Cancer -- The Heterogeneity of Lipid Metabolism in Cancer -- Part II. Heterogeneity of Cancer Metabolism -- The Multifaceted Glioblastoma: from Genomic Alterations to Metabolic Adaptions -- The Intricate Metabolism of Pancreatic Cancers -- The heterogeneity of breast cancer metabolism for therapy -- Non-Hodgkin Lymphoma Metabolism -- The Heterogeneity Metabolism of Renal Cell Carcinomas -- The Heterogeneity Metabolism of Liver Cancer -- Different Tumor Microenvironments Lead to Different Metabolic Phenotypes -- The Intratumoral Heterogeneity of Cancer Metabolism -- Cancer Stem Cells Metabolism -- Metabolism of Immune cells in the Tumor Microenvironment -- Part III. Relationship between Cancer Cells and Cancer-Associated Fibroblasts -- Metabolic Relationship between Cancer-Associated Fibroblasts and Cancer Cells -- Targeting Metabolic Cross Talk between Cancer Cells and Cancer-Associated Fibroblasts -- Part IV. The metabolic interplay between cancer and other diseases -- Diabetes and Cancer: the Epidemiological and Metabolic Associations -- Bridging the Metabolic Parallels between Neurological Diseases and Cancer -- Metabolic Intersection of Cancer and Cardiovascular Diseases: Opportunities for Cancer Therapy -- Index.
    Abstract: This open access volume will introduce recent discoveries in the field of cancer metabolism since the publication of the first edition in 2018, providing readers with an up-to-date understanding of developments in the field. Genetic alterations in cancer, in addition to being the fundamental drivers of tumorigenesis, can give rise to a variety of metabolic adaptations that allow cancer cells to survive and proliferate in diverse tumor microenvironments. This metabolic flexibility is different from normal cellular metabolic processes and leads to heterogeneity in cancer metabolism within the same cancer type or even within the same tumor. In this book, the authors delve into the complexity and diversity of cancer metabolism and highlight how understanding the heterogeneity of cancer metabolism is fundamental to the development of effective metabolism-based therapeutic strategies for cancer treatment. Deciphering how cancer cells utilize various nutrient resources will enable clinicians and researchers to pair specific chemotherapeutic agents with patients who are most likely to respond with positive outcomes, allowing for more cost-effective and personalized cancer treatment. This book has four major parts. Part one will cover the basic metabolism of cancer cells, followed by a discussion of the heterogeneity of cancer metabolism in part two. Part three addresses the relationship between cancer cells and cancer-associated fibroblasts, and the new part four will explore the metabolic interplay between cancer and other diseases. This new section makes the book unique from other texts currently available on the market. The second edition will be useful for cancer metabolism researchers, cancer biologists, epidemiologists, physicians, health care professionals in related disciplines, policymakers, marketing and economic strategists, etc. It may also be used in courses such as intro to cancer metabolism, cancer biology, and related biochemistry courses for undergraduate and graduate students. .
    Type of Medium: Online Resource
    Pages: XXIII, 271 p. 55 illus., 54 illus. in color. , online resource.
    Edition: 2nd ed. 2021.
    ISBN: 9783030657680
    Series Statement: Advances in Experimental Medicine and Biology, 1311
    DDC: 571.978
    Language: English
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