Dendritic Cells [electronic resource] : Biophysics, Biomechanics, Mechanobiology and Tumor Microenvironment / edited by Zhu Zeng.

Colaborador(es): Zeng, Zhu [editor.] | SpringerLink (Online service)Tipo de material: TextoTextoEditor: Singapore : Springer Nature Singapore : Imprint: Springer, 2024Edición: 2nd ed. 2024Descripción: XV, 234 p. 165 illus., 84 illus. in color. online resourceTipo de contenido: text Tipo de medio: computer Tipo de portador: online resourceISBN: 9789819762460Tema(s): Immunology | Biophysics | Cancer | Pharmacology | Immunology | Biophysics | Cancer Biology | PharmacologyFormatos físicos adicionales: Printed edition:: Sin título; Printed edition:: Sin título; Printed edition:: Sin títuloClasificación CDD: 571.96 | 616.079 Clasificación LoC:QR180-189.5Recursos en línea: Libro electrónicoTexto
Contenidos:
Chapter 1 Introduction -- Chapter 2 The Measurement Protocols for Cell's Biophysical Characteristics -- Chapter 3 Bioinformatics analysis of the tumor microenvironment and mathematical modeling of the initiation of the dendritic cell-induced T-cell immune response -- Chapter 4 Relationship among the biophysical characteristics, cytoskeletal structure and functions of dendritic cells at different stages of differentiation -- Chapter 5 Effects of chemical factors in the tumor microenvironment on the biophysical properties and immune function of dendritic cells -- Chapter 6 Mechano-immunological coupling mechanism in DCs sensing mechanical stimulation in the microenvironment -- Chapter 7 Effects of selenium on DCs in the tumor microenvironment.
En: Springer Nature eBookResumen: This book focuses on the fascinating topic of tumor microenvironment and dendritic cell immunotherapy. It provides readers with comprehensive insights into this field by offering detailed measurement protocols for assessing the biophysical characteristics of cells, along with bioinformatics analysis and mathematical modeling techniques to explore the initiation of dendritic cell-induced T cell immune responses within the tumor microenvironment. We also delve into the effects of chemical factors, mechanical stimulation, and traditional Chinese medicine on dendritic cells in this specific context. By delving into the intricate interactions between the tumor microenvironment and dendritic cells, readers will gain a profound understanding of tumor progression and the potential of dendritic cells as a therapeutic target. Moreover, the book presents novel perspectives that can pave the way for the development of innovative cancer treatment strategies. .
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Chapter 1 Introduction -- Chapter 2 The Measurement Protocols for Cell's Biophysical Characteristics -- Chapter 3 Bioinformatics analysis of the tumor microenvironment and mathematical modeling of the initiation of the dendritic cell-induced T-cell immune response -- Chapter 4 Relationship among the biophysical characteristics, cytoskeletal structure and functions of dendritic cells at different stages of differentiation -- Chapter 5 Effects of chemical factors in the tumor microenvironment on the biophysical properties and immune function of dendritic cells -- Chapter 6 Mechano-immunological coupling mechanism in DCs sensing mechanical stimulation in the microenvironment -- Chapter 7 Effects of selenium on DCs in the tumor microenvironment.

This book focuses on the fascinating topic of tumor microenvironment and dendritic cell immunotherapy. It provides readers with comprehensive insights into this field by offering detailed measurement protocols for assessing the biophysical characteristics of cells, along with bioinformatics analysis and mathematical modeling techniques to explore the initiation of dendritic cell-induced T cell immune responses within the tumor microenvironment. We also delve into the effects of chemical factors, mechanical stimulation, and traditional Chinese medicine on dendritic cells in this specific context. By delving into the intricate interactions between the tumor microenvironment and dendritic cells, readers will gain a profound understanding of tumor progression and the potential of dendritic cells as a therapeutic target. Moreover, the book presents novel perspectives that can pave the way for the development of innovative cancer treatment strategies. .

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