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1. Mononuclear phagocytes - origins, fates and functions
- Prof. Steffen Jung
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2. Transcription factors in macrophage differentiation
- Dr. Michael Sieweke
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3. Fetal macrophages
- Prof. Paul Martin
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4. The alveolar macrophage
- Dr. Ronald G. Crystal
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5. Airway macrophages in health and disease
- Prof. Tracy Hussell
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6. Intestinal macrophages - heterogeneity, origins and functions
- Prof. Allan Mowat
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7. Osteoclasts: what do they do and how do they do it?
- Prof. Steven L. Teitelbaum
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8. The biology of Fc receptors and complement receptors
- Prof. Steven Greenberg
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10. Tumour-associated macrophages
- Prof. Michele De Palma
- Dr. Mario Squadrito
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11. The recognition of pathogens by C-type lectins
- Prof. Gordon D. Brown
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12. Macrophage phagocytosis
- Prof. Joel Swanson
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13. Macrophage CD36 and atherosclerosis
- Dr. Maria Febbraio
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14. Toll-Like receptor signaling and the innate immune response
- Dr. Kate Fitzgerald
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15. Innate immune receptors as mediators of systemic inflammation and pathogenesis of malaria
- Prof. Ricardo Gazzinelli
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17. Triggering receptors expressed on myeloid cells (TREM)
- Dr. Daniel W. McVicar
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18. Influence of eicosanoid lipid mediators on macrophage innate immune functions
- Prof. Marc Peters-Golden
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19. Macrophage paired receptor interactions
- Prof. Neil Barclay
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20. Macrophage heterogeneity in atherosclerosis regression
- Prof. Edward Fisher
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21. Gaucher disease: from lysosomal storage to immunopathology
- Prof. Johannes M.F.G. Aerts
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22. Macrophage in asthma
- Prof. Douglas Robinson
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23. The macrophage mannose receptor
- Dr. Luisa Martinez-Pomares
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24. Myeloid-derived suppressor cells in cancer
- Prof. Dmitry Gabrilovich
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25. EGF-TM7 receptors
- Dr. Jörg Hamann
- Dr. Hsi-Hsien Lin
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26. Macrophages in helminth infection
- Prof. Judith Allen
- Archived Lectures *These may not cover the latest advances in the field
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27. Immunosuppressive mechanisms in myeloid cells
- Prof. Dmitry Gabrilovich
Printable Handouts
Navigable Slide Index
- Introduction
- Generation of the F4/80 mAb for macrophages
- F4/80 pan-macrophage marker
- F4/80 antigen revealed it as a 7-TM receptor
- EGF-TM7-R: novel type of heptahelical receptor
- GRAFS classification of GPCRs
- Human adhesion GPCRs
- Evolution
- Expression
- Exp. restricted to eosinophilic granulocytes
- Structure
- Autocatalytic proteolysis of EMR3
- Homo-, hetero-dimerization of adhesion-GPCRs
- Complement regulator CD55 is a ligand of CD97
- EMR2 and CD97 bind chondroitin sulfate B
- CD97 has several cellular ligands
- CD97 antibodies affect granulocyte accumulation
- Granulopoietic activity in CD55 and CD97 KO mice
- CD97 overexpression strengthens cell junctions
- F4/80 required for peripheral tolerance
- EMR2, priming neutrophil migration and activation
- EMR2 signaling
- EGF-TM7 receptors at a glance
- Outstanding questions
- Acknowledgments
Topics Covered
- F4/80 is a marker for mouse macrophages
- The EGF-TM7 receptors EMR1 (F4/80), EMR2, EMR3, EMR4 and CD97 belong to the adhesion class of GPCRs
- Evolution, expression and structure of EGF-TM7 receptors
- EGF-TM7 receptors bind cell- and matrix-associated ligands
- Role of EGF-TM7 receptors in immunity
Links
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Talk Citation
Hamann, J. and Lin, H. (2012, May 8). EGF-TM7 receptors [Video file]. In The Biomedical & Life Sciences Collection, Henry Stewart Talks. Retrieved December 21, 2024, from https://doi.org/10.69645/CAJF8297.Export Citation (RIS)
Publication History
Financial Disclosures
- Dr. Jörg Hamann has not informed HSTalks of any commercial/financial relationship that it is appropriate to disclose.
- Dr. Hsi-Hsien Lin has not informed HSTalks of any commercial/financial relationship that it is appropriate to disclose.