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Attenuation of LPS-induced neutrophil thromboxane b2 release and chemiluminescence
H Zheng1, J J Crowley, J C Chan
1Department of Medicine, Stanford University Medical Center, California 94305-5236.
Abstract:
Polymorphonuclear leukocytes (PMN) may play a key role in acute lung injury and ARDS. The mechanisms of PMN-mediated lung injury include the release of inflammatory mediators, such as oxygen free radicals which cause direct tissue injury, and arachidonic acid metabolites which cause pulmonary vasoconstriction and increased vascular permeability. The goals of this in vitro study were 1) to assess the effects of PMN-activating agents (lipopolysaccharide, LPS; phorbol myristate acetate, PMA; tumor necrosis factor, TNF) on PMN thromboxane B2 (TXB2) release and oxygen free radical production and 2) to determine the effects of agents purported to suppress PMN activity (pentoxifylline, PTX; adenosine; dibutyryl cyclic AMP, DBcAMP; and terbutaline, TBN) on activator-induced PMN TXB2 release and oxygen free radical production. PMN TXB2 release was determined by radioimmunoassay and oxygen free radical production was monitored by chemiluminescence. Our results show that 1) LPS and PMA significantly increase PMN TXB2 release, whereas tumor necrosis factor (TNF) has no effect; 2) LPS and PMA significantly increase PMN chemiluminescence; 3) DBcAMP and TBN significantly reduce LPS-induced PMN TXB2 release whereas PTX and adenosine do not; 4) TBN significantly reduces PMA-induced PMN TXB2 release whereas other agents do not; 5) All agents (PTX, adenosine, DBcAMP, and TBN) significantly reduce LPS-induced PMN chemiluminescence but none attenuate PMA-induced PMN chemiluminescence. We conclude that: LPS and PMA activate PMN manifested by TXB2 release and chemiluminescence. Additionally, all the PMN suppressing agents do attenuate some PMN functions. Of interest, PTX, adenosine, DBcAMP, and TBN have different effects depending upon functional assay and activating agent. It will be important to investigate the mechanisms by which PMN suppressing agents alter signal transduction resulting in differential effects on PMN function.
Insights
Lipopolysaccharide (LPS) and phorbol myristate acetate (PMA) activate polymorphonuclear leukocytes (PMN), increasing thromboxane B2 release and oxygen free radical production. PMN-suppressing agents show varied effects on these functions.
Area of Science:
- Immunology
- Cell Biology
- Pulmonary Medicine
Background:
- Polymorphonuclear leukocytes (PMN) are implicated in acute lung injury and ARDS.
- PMN-mediated lung injury involves inflammatory mediators like oxygen free radicals and arachidonic acid metabolites.
- Understanding PMN activation and suppression is crucial for developing therapeutic strategies.
Purpose of the Study:
- To assess the impact of PMN-activating agents (LPS, PMA, TNF) on PMN thromboxane B2 (TXB2) release and oxygen free radical production.
- To determine the effects of PMN-suppressing agents (PTX, adenosine, DBcAMP, TBN) on activator-induced PMN functions.
Main Methods:
- In vitro study utilizing polymorphonuclear leukocytes (PMN).
- Measurement of PMN thromboxane B2 (TXB2) release via radioimmunoassay.
- Monitoring of oxygen free radical production using chemiluminescence.
Main Results:
- LPS and PMA significantly increased PMN TXB2 release and chemiluminescence; TNF had no effect.
- DBcAMP and TBN reduced LPS-induced TXB2 release; PTX and adenosine did not.
- TBN reduced PMA-induced TXB2 release; other agents did not.
- All tested agents reduced LPS-induced PMN chemiluminescence, but none affected PMA-induced chemiluminescence.
Conclusions:
- LPS and PMA activate PMN, leading to TXB2 release and chemiluminescence.
- PMN-suppressing agents differentially affect PMN functions depending on the activating agent and assay.
- Further investigation into the mechanisms of PMN suppression is warranted.