The mechanism(s) by which cells can sense exogenous oxidants that may contribute to intracellular oxidative/nitrosative stress is not clear. The objective of this study was to determine how cells might respond to exogenous oxidants to potentially initiate, propagate and/or maintain inflammation associated with many human diseases through NF-κB activation. First, we used HEK-Blue cells that are stably transfected with mouse toll-like receptor 4 (mTLR4) or mouse TLR2. These cells also express optimized secreted embryonic alkaline phosphatase (SEAP) reporter gene under the control of a promoter inducible by NF-κB transcription factor. These cells were challenged with their respective receptor-specific ligands, different pro-oxidants and/or inh...
The development of inflammatory immune response is related to an activation of nuclear factor kappa-...
The activation of nuclear factor of activated T cells 5(NFAT5), a well-known osmoprotective factor, ...
Toll-like receptor (TLR)-4 signalling has been shown to accelerate atherosclerosis. As oxidised phos...
Rationale The mechanisms by which oxidants are sensed by cells and cause inflammation are not well u...
An immune response can be activated by pathogenic stimuli, as well as endogenous danger signals, tri...
An immune response can be activated by pathogenic stimuli, as well as endogenous danger signals, tri...
Abstract The production of various reactive oxidant species in excess of endogenous antioxidant defe...
The production of various reactive oxidant species in excess of endogenous antioxidant defense mecha...
Title from PDF of title page, viewed June 7, 2017Dissertation advisor: Orisa J. IgweVitaIncludes bib...
Redox-based mechanisms play critical roles in the regulation of multiple cellular functions. NF-kapp...
: Inflammation is associated with production of reactive oxygen species (ROS) and results in the ind...
Tissue injury induced by infections or xenobiotics is associated with oxidative stress and inflammat...
Mitochondria, known to share many common features with prokaryotic cells, accumulate several endogen...
Background/Aims: Toll-like receptor 4 (TLR4) interacts with endogenous substances as well as lipopol...
Background/Aims: Oxidized low-density lipoprotein (ox-LDL) is a powerful atherogen. Toll-like recept...
The development of inflammatory immune response is related to an activation of nuclear factor kappa-...
The activation of nuclear factor of activated T cells 5(NFAT5), a well-known osmoprotective factor, ...
Toll-like receptor (TLR)-4 signalling has been shown to accelerate atherosclerosis. As oxidised phos...
Rationale The mechanisms by which oxidants are sensed by cells and cause inflammation are not well u...
An immune response can be activated by pathogenic stimuli, as well as endogenous danger signals, tri...
An immune response can be activated by pathogenic stimuli, as well as endogenous danger signals, tri...
Abstract The production of various reactive oxidant species in excess of endogenous antioxidant defe...
The production of various reactive oxidant species in excess of endogenous antioxidant defense mecha...
Title from PDF of title page, viewed June 7, 2017Dissertation advisor: Orisa J. IgweVitaIncludes bib...
Redox-based mechanisms play critical roles in the regulation of multiple cellular functions. NF-kapp...
: Inflammation is associated with production of reactive oxygen species (ROS) and results in the ind...
Tissue injury induced by infections or xenobiotics is associated with oxidative stress and inflammat...
Mitochondria, known to share many common features with prokaryotic cells, accumulate several endogen...
Background/Aims: Toll-like receptor 4 (TLR4) interacts with endogenous substances as well as lipopol...
Background/Aims: Oxidized low-density lipoprotein (ox-LDL) is a powerful atherogen. Toll-like recept...
The development of inflammatory immune response is related to an activation of nuclear factor kappa-...
The activation of nuclear factor of activated T cells 5(NFAT5), a well-known osmoprotective factor, ...
Toll-like receptor (TLR)-4 signalling has been shown to accelerate atherosclerosis. As oxidised phos...