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Septins provides established septin and molecular and developmental biologists and researchers new to the field with proven, state-of-art techniques and relevant historical background and theory to aid efficient design and effective implementation of experimental methodologies. Topics include the purification of septin proteins from diverse systems, their visualization in live cells, and their analysis by a variety of cutting-edge microscopy approaches. Provides the latest information on septinsIncludes both established and new technologies Brings together specialists from the field who contribute their expertise
Flow Cytometry in Immuno-oncology, Volume 173 in the Methods in Cell Biology series, highlights advances in the field, with this new volume presenting interesting chapters on timely topics, Basic principles of Flow cytometry in immuno-oncology, Good practice and methods for flow cytometry in immuno-oncology, Automated flow cytometry in immuno-oncology, Flow cytometric analysis of Tregs in solid tumors, Multiparametric analysis of Tumor infiltrating lymphocytes in solid tumors, Analysis of tumor-infiltrating immune cells in intracranial glioblastoma, Assessing chromosomal abnormalities in leukemias by Imaging flow cytometry, Flow cytometric analysis of cellular alkaline phosphatase in acute myeloid leukemia, and much more.
Expansion Microscopy for Cell Biology, Volume 161 in the Methods in Cell Biology series, compiles recent developments in expansion microscopy techniques (Pro-ExM, U-ExM, Ex-STED, X10, Ex-dSTORM, etc.) and their applications in cell biology, ranging from mitosis, centrioles or nuclear pore complex to plant cell, bacteria, Drosophila or neurons. Chapters in this new release include Protein-retention Expansion Microscopy: Improved Sub-cellular Imaging Resolution through Physical Specimen Expansion, Ultrastructure Expansion Microscopy (U-ExM), Expansion STED microscopy (ExSTED), Simple multi-color super-resolution by X10 microscopy, Expansion microscopy imaging of various neuronal structures, Mapping the neuronal cytoskeleton using expansion microscopy, Mechanical expansion microscopy, and much more.Provides the authority and expertise of leading contributors from an international board of authorsRepresents the latest release in the Methods in Cell Biology seriesIncludes the latest information on Expansion Microscopy for Cell Biology
Cytokinesis, the latest volume in the Methods in Cell Biology series, looks at the latest advances in cytokinesis. Edited by leaders in the field, this volume presents proven, state-of-art techniques, along with relevant historical background and theory, to aid researchers in efficient design and effective implementation of experimental methodologies.Covers sections on cytokinesis and emerging studies Presents chapters written by experts in the fieldIncludes cutting-edge materials that supplement study
Covering protein translocation within and between cells, this book presents various methods and topics, and information on the use of anti-idiotype antibodies, gene fusions, transcription, crosslinking, pulse-labeling, and reconstitution. It describes contemporary approaches for studying; and also covers protein transport and protein topology.
Cell-Derived Matrices, Part A, Volume 156, provides a detailed description and step-by-step methods surrounding the use of three-dimensional cell-derived matrices for tissue engineering applications. Biochemical, biophysical and cell biological approaches are presented, along with sample results. Specific chapters cover Anisotropic cell-derived matrices with controlled 3D architecture, Generation of functional fluorescently-labelled cell-derived matrices by means of genetically-modified fibroblasts, Bi-layered cell-derived matrices, Engineering clinically-relevant cell-derived matrices using primary fibroblasts, Decellularized matrices for bioprinting applications, and much more. Contains contributions from leading experts in the field from across the globe Covers a wide array of topics on the use of cell-derived matrices for tissue engineering and regenerative medicine applications Includes relevant, analysis-based topics, such as quantification of the mechanical properties, decellularization protocols, and innovative matrix engineering methods
Methods in Kidney Cell Biology, Volume 153, represents state-of-the-art techniques in renal research that are ideal for veterans, graduate students, postdoctoral fellows, and clinical scientists and principal investigators. Topics in the new release include Single glomerular proteomics - a novel method in translational glomerular cell biology, Measurement of cytosolic and intraciliary calcium in live cells, Differentiation of human kidney organoids from pluripotent stem cells, Quantifying autophagic flux in kidney tissue using structured illumination microscopy, the Generation of primary cells from ADPKD and normal human kidneys, ADPKD cell proliferation and Cl-dependent fluid secretion, In vitro cyst formation of ADPKD cells, and much more. Written by experts in their field who have perfected the methods they write aboutCovers a wide range of topics, from state-of-the-art techniques that may require specialized equipment, to tried-and-true classic methods in their most refined formIncludes cutting-edge, recently developed methods
G-Protein-Coupled Receptors, Part B, 2nd Edition, Volume 149, the latest release in the Methods in Cell Biology series, continues the legacy of this premier serial with quality chapters authored by leaders in the field. This volume covers Optical Approaches for Visualization of Arrestin Binding to Muscarinic Receptors, Luciferase Reporter Assay for Unlocking Ligand-mediated Signaling of GPCRs, Assays to Measure GPCR Dependent Cellular Migration, Characterization of the Frizzled GPCRs, Binding Assays for Bradykinin and Angiotensin Receptors, Detection of Misfolded Rhodopsin Aggregates in Cells, Measuring GPCR Ubiquitination and Trafficking, Culture of Primary Neurons and its Use in Studying GPCR Trafficking, and much more. Covers the increasingly appreciated cell biology field of G-protein-coupled receptorsIncludes both established and new technologiesContributed by experts in the field
Echinoderms, Volume 151, the latest release in the Methods in Cell Biology series, highlights advances in the field, with this update presenting chapters on Echinoderm Genome Databases, analysis of gene regulatory networks, using ATAC-seq and RNA-seq to increase resolution in GRN connectivity, multiplex cis-regulatory analysis, experimental approaches GRN/signal pathways, BACs, analysis of chromatin accessibility using ATAC-seq, analysis of sea urchin proteins /Click IT, CRISPR/Cas9-mediated genome editing in sea urchins, super-resolution and in toto imaging of echinoderm embryos, and methods for analysis of intracellular ion signals in sperm, eggs and embryos.Presents clear, concise protocols provided by experts who have established the echinoderms as a model systemsHighlights new advances in the field, with this update presenting interesting chapters on echinoderms
Methods in Cell Biology, Volume 158, the latest release in this series, highlights new advances in the field, with this release covering How to orient cells in micro-cavities for high resolution imaging of cytokinesis and lumen formation, A body-on-a-chip (BOC) system for studying gut-liver interaction, Manipulating cultured mammalian cells for mitosis research, Live-cell FLIM-FRET using a commercially available system, A comparative analysis of methods to measure kinetochore-microtubule attachment stability, A workflow for visualizing human cancer biopsies using large-format electron microscopy, Isolation of stage-specific germ cells using facs in drosophila germarium, Computational analysis of filament polymerization dynamics in cytoskeletal networks, and more. Provides the authority and expertise of leading contributors from an international board of authorsPresents the latest release in the Methods in Cell Biology series Updated release includes the latest information in this area of study
A compendium covering the various aspects of sample preparation of diverse biological systems. It also covers the preparation and analysis of model systems for biological electron microscopy. It includes the most popular systems but also organisms that are less frequently used in cell biology.
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