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Daniel Joseph Prantner
University Of Maryland Baltimore
$368,936
Attributed
$581,373
Total exposure
2
Grants
1
Lead (contact PI)
Attributed= this PI's even-split share of every grant they're on (the fair, additive number). Exposure = full size of all those grants.
Funding over time
peak $231.8K · FY2012–24$250K$187.5K$125K$62.5K$0
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'21
'22
'23
'24
Funding mix
By agency
NIH$581,373 · 2
By mechanism
R21$424,875 · 1
F32$156,498 · 1
Top collaborators
- Stefanie N. Vogel2 shared
Most similar at University Of Maryland Baltimore
Same institution · by research overlap
- Marcelo B. Sztein$36,733,861
- Dean A Dessem$3,717,451
- Stephen J Meltzer$26,520,343
- Mohammad Mohseni Sajadi$9,238,668
- Norman F Capra$6,045,882
Others in their field
Top investigators on “Prevent”
- Lawrence Corey · Fred Hutchinson Cancer Center$609,181,782
- Jeffrey P Krischer · University Of South Florida$605,511,231
- Margaret Juliana McElrath · Fred Hutchinson Cancer Center$530,065,238
- Bambra Strokes · Ppd Development Lp$526,656,217
- Judith S. Currier · University Of California Los Angeles$499,311,118
- David Heimbrook · Leidos Biomedical Research, Inc.$496,394,926
Research focus
PreventMacrophageInflammation MediatorsPathogenSignal PathwayMediatingGenesInfectionLeukocytesMitochondriaReactive Oxygen SpeciesResponseTranscription FactorProductionAntimicrobialCell RespirationCellsImmune ResponseInterferonsInvadedBiological MarkersBinding (Molecular Function)Aldehyde ReductaseBase
Grant awards (5)
Methylglyoxal-induced macrophage metabolic dysregulation in sepsis$193,125
R21 · FY2024 · AI
Methylglyoxal-induced macrophage metabolic dysregulation in sepsis$231,750
R21 · FY2023 · AI
The role of mitochondrial reactive oxygen species in innate immune signaling$55,094
F32 · FY2014 · AI · contact PI
The role of mitochondrial reactive oxygen species in innate immune signaling$52,190
F32 · FY2013 · AI · contact PI
The role of mitochondrial reactive oxygen species in innate immune signaling$49,214
F32 · FY2012 · AI · contact PI