Awardee OrganizationBOSTON UNIVERSITY MEDICAL CAMPUS
Description
Abstract Text
Human neutrophils are the first line of cellular immunologic defense
responding to a wide variety of stimuli, in many cases independently of a
specific immune response. While the mechanisms of neutrophil activation by
certain highly specific stimuli (e.g. bacterial peptides) have been
extensively studied, a diversity of activation pathways can be predicted.
We propose to use influenza A virus (IAV) as a tool to 1) understand how
neutrophils may play a role in contaminant of virus, 2) elucidate an
activation pathway which differs in important respects from that excited by
other well studied stimuli and 3) understand how these interactions of IAV
with the neutrophil result in the clinically important outcome of
neutrophil deactivation and bacterial superinfection. Using intact IAV
preparations we want to a) establish the biochemical basis of the atypical
respiratory burst response elicited by IAV using cell free NADPH oxidase
preparations, b) fully characterize the pertussis-toxin insensitive
phospholipase C (PLC) stimulation caused by IAV in terms of time course,
sensitivity to inhibitors and possible dependence on G proteins other than
that related to chemoattractant receptors, c) explain the lack of Ca2+
influx accompanying this PLC activation by examining diacylglycerol,
phosphatidic acid and inositol tetra phosphate production. We want also to
establish whether purified IAV hemagglutinin (HA) preparations will elicit
activation and/or deactivation of human neutrophils. We hope through this
means to establish a) if certain activation responses can be linked (or
separated) from subsequent deactivation and b) whether crosslinking of cell
surface components by multimeric HA preparations elicit activation (and/or
deactivation) while monomeric HA does not. These studies in aggregate will
lay the groundwork for a more focused study of IAV-induced neutrophil
deactivation than is currently possible.
Public Health Relevance Statement
Data not available.
NIH Spending Category
No NIH Spending Category available.
Project Terms
G proteinNAD(P)H dehydrogenasecalcium fluxcrosslinkdiacylglycerolshost organism interactionhuman tissueinositol phosphatesleukocyte activation /transformationleukocyte oxidative burstmembrane activitymicroorganism hemagglutininneutrophilphosphatidatephospholipase C
National Institute of Allergy and Infectious Diseases
CFDA Code
DUNS Number
604483045
UEI
FBYMGMHW4X95
Project Start Date
01-March-1990
Project End Date
31-August-1995
Budget Start Date
01-March-1994
Budget End Date
31-August-1995
Project Funding Information for 1994
Total Funding
$55,966
Direct Costs
$34,125
Indirect Costs
$21,841
Year
Funding IC
FY Total Cost by IC
1994
National Institute of Allergy and Infectious Diseases
$55,966
Year
Funding IC
FY Total Cost by IC
Sub Projects
No Sub Projects information available for 5R29AI029550-05
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