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- Models of Investigation
-
1. Antifungal innate immunity in C. elegans
- Dr. Jonathan Ewbank
-
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
-
4. Innate immune sensing and response
- Prof. Bruce Beutler
-
5. Macrophages and systems biology
- Prof. David Hume
- Cell Types and Recruitment
-
6. Leukocyte recruitment in vivo
- Prof. Paul Kubes
-
8. Eosinophils
- Prof. Tim Williams
-
9. Dendritic cells: linking innate to different forms of adaptive immunity
- Prof. Ralph Steinman
-
11. Innate-like lymphocytes 1
- Prof. Adrian Hayday
-
12. Innate-like lymphocytes 2
- Prof. Adrian Hayday
- Recognition and Signaling
-
13. Colony stimulating factor-1 regulation of macrophages in development and disease
- Prof. E. Richard Stanley
-
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
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20. Humoral innate immunity and the acute phase response 2
- Prof. Alberto Mantovani
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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
-
25. Cationic peptides in innate immunity
- Dr. Dawn Bowdish
-
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
-
28. Type I interferons in innate immunity to viral infections
- Prof. Christine Biron
-
29. HIV-1 and immunopathogenesis: innate immunity
- Prof. Luis Montaner
-
30. Understanding and combating tuberculosis
- Prof. David Russell
-
32. Innate immunity and malaria
- Prof. Douglas Golenbock
- Health and Disease
-
33. Innate immunity in children
- Prof. David Speert
-
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
-
36. Paneth cells in innate immunity and inflammatory bowel disease
- Prof. Satish Keshav
-
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
-
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
-
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
- Strategies to sense pathogens & damaged tissues
- Complement system activation & regulation
- Complement system activation pathways (1)
- Evolutionary perspective of the complement system
- Complement system activation pathways (2)
- Results of complement system activation
- Domain and structure of MBL & ficolin (1)
- Carbohydrate pattern recognition by MBP
- Domain and structure of MBL & ficolin (2)
- Domain structure of the MASP family
- Collectins: Players of the innate immune system
- Lung collectins: Dual function surveillance
- Pattern recognition molecules and cell receptors
- Cascade of inflammatory cytokines
- Main acute phase proteins
- General significance of the acute phase response
- The IL-1 receptor (ILR) superfamily
- Schematic representation of IL-1’s role in immunity
Topics Covered
- Sensing pathogens and damaged tissues
- Complement system activation and regulation
- The classical, lectin, and alternative pathways
- The MASP family
- Collectins
Links
Series:
Categories:
Therapeutic Areas:
Talk Citation
Mantovani, A. (2016, August 31). Humoral innate immunity and the acute phase response 1 [Video file]. In The Biomedical & Life Sciences Collection, Henry Stewart Talks. Retrieved December 21, 2024, from https://doi.org/10.69645/ZFRH2377.Export Citation (RIS)
Publication History
Financial Disclosures
- Prof. Alberto Mantovani, Grant/Research Support (Principal Investigator): SIGMA-TAU, ROME
Humoral innate immunity and the acute phase response 1
A selection of talks on Infectious Diseases
Transcript
Please wait while the transcript is being prepared...
0:00
This presentation
will be focused
on the Humoral arm of the
Innate Immunity
and the Acute Phase Response
will be discussed in the context
and in the perspective
of fluid phase
humoral pattern
recognition molecules.
0:20
The innate immune system
includes a cellular
and a humoral arm.
Cell associated
pattern recognition molecules
are strategically located
on the cell surface
the Toll-like receptors
and co-receptors shown here
are also located
in the endosomal compartment,
a subset of the Toll-like receptor
and in the cytoplasm.
The latter include
NOD-like receptors,
RIG-like receptors
and not shown here,
AIM-like receptors.
This is where all the hype is,
cellular innate immunity.
But the innate immune system
also includes a humoral arm
which is generally represented
as a collection of weird molecules.
Humoral pattern
recognition molecules
include ficolins, collectins
such as mannose-binding lectin
and surfactant protein A and D.
Components of the complement
cascade and
short and long interactions.
In this presentation, I will focus
on the humoral arm
of the innate immunity
and on the humoral
pattern recognition molecules.
Using in particular, pentraxins
and along pentraxin PTX3,
as a paradigm for the logic
and the mode of action
and interplay
of the cellular innate immunity
of the humoral fluid phase
pattern recognition molecules.