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Acute lung injury and cell death: how many ways can cells die?
Peter S Tang1, Marco Mura, Rashmi Seth
1Latner Thoracic Surgery Research Laboratories, University Health Network Toronto General Research Institute, Toronto, Ontario, Canada.
Abstract:
Apoptosis has been considered as an underlying mechanism in acute lung injury/acute respiratory distress syndrome and multiorgan dysfunction syndrome. Recently, several alternative pathways for cell death (such as caspase-independent cell death, oncosis, and autophagy) have been discovered. Evidence of these pathways in the pathogenesis of acute lung injury has also come into light. In this article, we briefly introduce cell death pathways and then focus on studies related to lung injury. The different types of cell death that occur and the underlying mechanisms utilized depend on both experimental and clinical conditions. Lipopolysaccharide-induced acute lung injury is associated with apoptosis via Fas/Fas ligand mechanisms. Hyperoxia and ischemia-reperfusion injury generate reactive oxidative species, which induce complex cell death patterns composed of apoptosis, oncosis, and necrosis. Prolonged overexpression of inflammatory mediators results in increased production and activation of proteases, especially cathepsins. Activation and resistance to death of neutrophils also plays an important role in promoting parenchymal cell death. Knowledge of the coexisting multiple cell death pathways and awareness of the pharmacological inhibitors targeting different proteases critical to cell death may lead to the development of novel therapies for acute lung injury.
Insights
Cell death pathways beyond apoptosis are involved in acute lung injury. Understanding these diverse mechanisms, including oncosis and autophagy, may reveal new therapeutic targets for lung injury.
Area of Science:
- Pathology
- Molecular Biology
- Pulmonology
Background:
- Apoptosis was initially considered the primary cell death mechanism in acute lung injury and multiorgan dysfunction syndrome.
- Recent discoveries highlight alternative cell death pathways, including caspase-independent cell death, oncosis, and autophagy, implicated in acute lung injury pathogenesis.
Purpose of the Study:
- To review cell death pathways relevant to acute lung injury.
- To discuss the mechanisms underlying different cell death types in various acute lung injury models.
Main Methods:
- Review of existing literature on cell death pathways and acute lung injury.
- Analysis of experimental and clinical data linking specific cell death mechanisms to injury models.
Main Results:
- Lipopolysaccharide-induced acute lung injury involves apoptosis via Fas/Fas ligand.
- Hyperoxia and ischemia-reperfusion injury induce complex cell death patterns (apoptosis, oncosis, necrosis) mediated by reactive oxidative species.
- Inflammatory mediators and neutrophil activation contribute to parenchymal cell death through protease activity, notably cathepsins.
Conclusions:
- Acute lung injury involves multiple, coexisting cell death pathways.
- Targeting specific proteases involved in these cell death mechanisms offers potential for novel acute lung injury therapies.
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