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- Models of Investigation
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1. Antifungal innate immunity in C. elegans
- Dr. Jonathan Ewbank
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2. The anti-microbial defense of Drosophila: a paradigm for innate immunity
- Prof. Jules Hoffmann
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3. Phagocytosis in the fruit fly, Drosophila melanogaster
- Dr. Lynda Stuart
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4. Innate immune sensing and response
- Prof. Bruce Beutler
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5. Macrophages and systems biology
- Prof. David Hume
- Cell Types and Recruitment
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6. Leukocyte recruitment in vivo
- Prof. Paul Kubes
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8. Eosinophils
- Prof. Tim Williams
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9. Dendritic cells: linking innate to different forms of adaptive immunity
- Prof. Ralph Steinman
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11. Innate-like lymphocytes 1
- Prof. Adrian Hayday
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12. Innate-like lymphocytes 2
- Prof. Adrian Hayday
- Recognition and Signaling
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13. Colony stimulating factor-1 regulation of macrophages in development and disease
- Prof. E. Richard Stanley
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14. Fc receptors: linking innate and acquired immunity
- Prof. Ken G C Smith
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15. Phagocytosis
- Prof. Joel Swanson
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16. Clearance of apoptotic cells and the control of inflammation
- Prof. Sir John Savill
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17. Signaling by innate immune receptors
- Prof. Michael Karin
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18. Nuclear receptors at the crossroads of inflammation and atherosclerosis
- Prof. Christopher Glass
- Modulation of Effector Responses
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19. Humoral innate immunity and the acute phase response 1
- Prof. Alberto Mantovani from humanitas.it
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20. Humoral innate immunity and the acute phase response 2
- Prof. Alberto Mantovani from humanitas.it
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21. Cytokines regulating the innate response
- Prof. Anne O’Garra
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22. Arginase and nitric oxide
- Dr. Peter Murray
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23. Novel lipid mediators in resolution of inflammation
- Prof. Charles Serhan
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25. Cationic peptides in innate immunity
- Dr. Dawn Bowdish
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26. Iron metabolism and innate immunity
- Prof. Tomas Ganz
- Pathogen-Host Interactions
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27. Innate recognition of viruses
- Prof. Caetano Reis e Sousa
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28. Type I interferons in innate immunity to viral infections
- Prof. Christine Biron
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29. HIV-1 and immunopathogenesis: innate immunity
- Prof. Luis Montaner
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30. Understanding and combating tuberculosis
- Prof. David Russell
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32. Innate immunity and malaria
- Prof. Douglas Golenbock
- Health and Disease
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33. Innate immunity in children
- Prof. David Speert
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34. From bench to bedside: evolution of anti-TNFalpha therapy in rheumatoid arthritis
- Prof. Sir Ravinder Maini
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35. NOD-like receptors in innate immunity and inflammatory disease
- Prof. Gabriel Nunez
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36. Paneth cells in innate immunity and inflammatory bowel disease
- Prof. Satish Keshav
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37. Innate immunity in the brain in health and disease
- Prof. V. Hugh Perry
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38. The fate of monocytes in atherosclerosis
- Prof. Gwendolyn Randolph
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39. Macrophages, a cellular toolbox used by tumors to promote progression and metastasis
- Prof. Jeffrey Pollard
- Archived Lectures *These may not cover the latest advances in the field
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40. Monocyte/macrophages in innate immunity
- Prof. Emeritus Siamon Gordon
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41. Innate immunity in C. elegans
- Dr. Jonathan Ewbank
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43. NLR genes: infection, inflammation and vaccines
- Prof. Jenny Ting
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44. Manipulation of innate immune response: lessons from shigella
- Prof. Philippe Sansonetti
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45. Innate immunity of the lung and adaptation to air breathing at birth
- Prof. Jeffrey Whitsett
Printable Handouts
Navigable Slide Index
- Introduction
- Mononuclear phagocyte system
- Macrophages.com website
- Image from macrophages.com
- Localization of macrophages in tissues
- Marker for the mononuclear phagocyte system
- EGFP expression in all MacGreen macrophages
- The MacGreen mouse: possible applications
- Intravital imaging of MacGreen mouse hind joint
- Macrophages and bone
- Using MacGreen to study macrophages in bone
- Distribution of BAMs on bone surface
- Macrophages in blood vessels of MacGreen
- Binary expression system using CSF-1R promoter
- The binary system is functional in macrophages
- Using MacBlue to study tissue remodeling
- ECFP expression in microglia of MacBlue mice
- Expression of a tagged Schlafen4 in primary cells
- Cellular systems biology
- The FANTOM consortium
- CAGE technology
- TAG clusters identify TSS and promoters
- CAGE is a form of expression profiling
- Macrophage-specific promoters and their biology
- Biology of gelsolin
- Two major promoters in the gelsolin locus
- The two promoters lead to two forms of gelsolin
- Gelsolin promoter 2: lung-enriched
- Conservation of promoter 2 in mouse and human
- Promoter 1: macrophage-enriched, broad type
- Conservation of promoter 1 in mouse and human
- What do we learn from gelsolin?
- Gelsolin-related protein (CapG) is also complex
- Using promoter analysis to study IGF-1
- Expression patterns: macrophage vs. osteoblast
- The complicated IGF-1 promoter region
- IGF-1 promoter conservation across species
- CSF-1 deficient animal is also IGF-1 deficient
- THP-1: a model for cellular differentiation
- THP-1: PMA differentiation time-course
- PMA induces macrophage markers
- PU1- one gene, three promoters
- Integrating data from THP-1 differentiation analysis
- Motif activity analysis
- Example of a network of transcription factors
- So, what does it all mean?
- Credits
Topics Covered
- Marker for the mononuclear phagocyte system
- CSF-1R
- EGFP
- The MacGreen mouse
- Macrophages and bone
- MacBlue mice
- Association of macrophages with tissue remodelling during embryonic development
- Cellular systems biology
- Transcriptional landscape of the mammalian genome
- CAGE technology
- Expression profiling
- Macrophage-specific promoters and their associated biology
- Biology of Gelsolin
- Gelsolin-related protein
- IGF-1 promoter region
- THP-1: a model for cellular differentiation
- PMA induces macrophage markers
- Motif activity analysis
Talk Citation
Hume, D. (2020, July 23). Macrophages and systems biology [Video file]. In The Biomedical & Life Sciences Collection, Henry Stewart Talks. Retrieved December 14, 2024, from https://doi.org/10.69645/EZKB4579.Export Citation (RIS)
Publication History
Financial Disclosures
- Prof. David Hume has not informed HSTalks of any commercial/financial relationship that it is appropriate to disclose.