Innate Immunity
| Körperschaft: | |
|---|---|
| Weitere Verfasser: | , | 
| Zusammenfassung: | XIV, 458 p. text  | 
| Sprache: | Englisch | 
| Veröffentlicht: | 
        Totowa, NJ :
          Humana Press : Imprint: Humana,
    
        2008.
     | 
| Ausgabe: | 1st ed. 2008. | 
| Schriftenreihe: | Methods in Molecular Biology,
              415             | 
| Schlagworte: | |
| Online-Zugang: | https://doi.org/10.1007/978-1-59745-570-1 | 
| Format: | Elektronisch Buch | 
                Inhaltsangabe: 
            
                  - ENU Mutagenesis in Mice
 - Innate Immunity Genes as Candidate Genes
 - KIR Genotyping and Analysis
 - Experimental Model for the Study of the Human Immune System
 - Bacterial Artificial Chromosome Transgenesis Through Pronuclear Injection of Fertilized Mouse Oocytes
 - Bioluminescence Imaging to Evaluate Infections and Host Response In Vivo
 - Intravital Two-Photon Imaging of Natural Killer Cells and Dendritic Cells in Lymph Nodes
 - Dissection of the Antiviral NK Cell Response by MCMV Mutants
 - Analyzing Antibody–Fc-Receptor Interactions
 - The Isolation and Identification of Murine Dendritic Cell Populations from Lymphoid Tissues and Their Production in Culture
 - Analysis of Individual Natural Killer Cell Responses
 - Isolation and Analysis of Human Natural Killer Cell Subsets
 - Innate Immune Function of Eosinophils
 - Ex Vivo and In Vitro Primary Mast Cells
 - Murine Macrophages
 - Clinical Analysis of Dendritic Cell Subsets
 - Clinical Analysis of Human Natural Killer Cells
 - Lentiviral Transduction of Immune Cells
 - Axenic Mice Model
 - In Vivo Analysis of Zebrafish Innate Immunity
 - Reverse Genetics Analysis of Antiparasitic Responses in the Malaria Vector, Anopheles gambiae
 - Drosophila Immunity
 - Investigating the Involvement of Host Factors Involved in Intracellular Pathogen Infection by RNAi in Drosophila Cells
 - Models of Caenorhabditis elegans Infection by Bacterial and Fungal Pathogens
 - Genetic Analysis of Caenorhabditis elegans Innate Immunity
 - Measuring Cell-Wall-Based Defenses and Their Effect on Bacterial Growth in Arabidopsis.