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Current Protocols in Cell Biology

Current Protocols in Cell Biology

Last Update: December 11, 2014
Print ISSN: 1934-2500
Online ISSN: 1934-2616

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What's New in Current Protocols in Cell Biology
Supplement 65, December 2014

Unit 2.9 Standardized Isolation and Culture of Murine Liver Sinusoidal Endothelial Cells
         Abstract | Full Text:  HTML   PDF

Unit 4.28 Freeze-Fracture Immunocytochemistry: Fracture-Label and Label-Fracture for the Localization of Membrane Proteins
         Abstract | Full Text:  HTML   PDF

Unit 9.7 In Situ Detection of Integrin Ligands
         Abstract | Full Text:  HTML   PDF

Unit 14.15 A High Content Assay for Biosensor Validation and for Examining Stimuli that Affect Biosensor Activity
         Abstract | Full Text:  HTML   PDF

Unit 22.19 Analysis of Copy-Number Variation in Single Cells Using Array-Based Comparative Genomic Hybridization (aCGH)
         Abstract | Full Text:  HTML   PDF

Unit 22.20 Mapping Replication Origins in Eukaryotic Chromosomes
         Abstract | Full Text:  HTML   PDF



Developed by leading scientists in the field and including contributions from scientists internationally, Current Protocols in Cell Biology is a continuously updating essential reference for researchers who study the cell, its internal and external environment, and its relationships to other cells. This title includes detailed methods for analysis of the relationship between specific molecules and genes and their locations, functions, and structure at the cellular level.

A subscription gives you access to all the content in the collection plus four quarterly issues of new and updated content. Current Protocols in Cell Biology...

  • offers expert research tips and guidelines for isolating and culturing cells in two- and three-dimensional cultures, analyzing the morphology of the cell, and characterizing the functions of molecules and organelles in the cell and its environment
  • provides methods for a broad spectrum of microscopic techniques, including the use of fluorescent proteins and nanomaterials, as well as antibodies
  • covers methods for investigation of major pathways in the differentiation and function of cells
  • includes special appendices on the use of inhibitors and pharmacologic agents, protein motifs, excitation and emission maxima for common fluorophores, and common molecular biology methods

Edited by: Juan S. Bonifacino (Bethesda, Maryland); Mary Dasso (Bethesda, Maryland); Joe B. Harford (Bethesda, Maryland); Jennifer Lippincott-Schwartz (Bethesda, Maryland); and Kenneth M. Yamada (Bethesda, Maryland)

Developmental Editor: Karen Chambers

While the authors, editors, and publisher believe that the specification and usage of reagents, equipment, and devices, as set forth in this book, are in accord with current recommendations and practice at the time of publication, they accept no legal responsibility for any errors or omissions, and make no warranty, express or implied, with respect to material contained herein. In view of ongoing research, equipment modifications, changes in governmental regulations, and the constant flow of information relating to the use of experimental reagents, equipment, and devices, the reader is urged to review and evaluate the information provided in the package insert or instructions for each chemical, piece of equipment, reagent, or device for, among other things, any changes in the instructions or indication of usage and for added warnings and precautions. This is particularly important in regard to new or infrequently employed chemicals or experimental reagents. Moreover, the information presented herein is not a substitute for professional judgment, especially as concerns any applications in a clinical setting or the interpretation of results thereby obtained.