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Yellow Fever Immune Response at Single Cell Resolution
NCT03458780
NULLOBSERVATIONAL
Rockefeller University
6 participants
Started 2016-08-22 · Completed 2018-09-05
Status: Completed (as of 12-23-2025)
Conditions
Healthy
Interventions
Linked Papers (from SciSciNet-V2)
Total Papers8
Background
8Result
0Derived
0Unknown
0Total Citations Per Year
Brief Summary
The immune system is composed of diverse cell types with different functions that act together in order to defend against infection. This pilot study will test a new technology for studying these many different cell types at very large numbers at the level of individual cells. This method will then be used to identify the cell types and functions important for the immune response to the highly protective yellow fever vaccine, which will improve our understanding of effective vaccine features.
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Background Papers16
Systems biology approach predicts immunogenicity of the yellow fever vaccine in humans
2008
1,063 citations
Systems biology approach predicts immunogenicity of the yellow fever vaccine in humans
2008
1,063 citations
Molecular signatures of antibody responses derived from a systems biology study of five human vaccines
2013
691 citations
Molecular signatures of antibody responses derived from a systems biology study of five human vaccines
2013
691 citations
Yellow fever vaccine induces integrated multilineage and polyfunctional immune responses
2008
573 citations
Yellow fever vaccine induces integrated multilineage and polyfunctional immune responses
2008
573 citations
Global Analyses of Human Immune Variation Reveal Baseline Predictors of Postvaccination Responses
2014
413 citations
Global Analyses of Human Immune Variation Reveal Baseline Predictors of Postvaccination Responses
2014
413 citations
Systems Scale Interactive Exploration Reveals Quantitative and Qualitative Differences in Response to Influenza and Pneumococcal Vaccines
2013
285 citations
Systems Scale Interactive Exploration Reveals Quantitative and Qualitative Differences in Response to Influenza and Pneumococcal Vaccines
2013
285 citations
Dengue Virus Infection Induces Expansion of a CD14+CD16+ Monocyte Population that Stimulates Plasmablast Differentiation
2014
230 citations
Dengue Virus Infection Induces Expansion of a CD14+CD16+ Monocyte Population that Stimulates Plasmablast Differentiation
2014
230 citations
Pre-vaccination inflammation and B-cell signalling predict age-related hyporesponse to hepatitis B vaccination
2016
163 citations
Pre-vaccination inflammation and B-cell signalling predict age-related hyporesponse to hepatitis B vaccination
2016
163 citations
Systems analysis of West Nile virus infection
2014
13 citations
Systems analysis of West Nile virus infection
2014
13 citations
Result Papers0
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Derived Papers0
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Unknown Papers0
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