Cysteinyl Leukotriene Receptor-1 Antagonists as Modulators of Innate Immune Cell Function

Антагонисты рецептора-1 цистеиниловых лейкотриенов как модуляторы функции клеток врождённого иммунитета
Annette J. Theron, Helen C. Steel, Gregory R. Tintinger, C. M. Gravett, Ronald Anderson, Charles Feldman
2014-01-01

cysteinyl leukotriene receptor-1 antagonistsinnate immune cell functionmontelukastnuclear factor kappa Bsecondary anti-inflammatory mechanisms
Cysteinyl leukotrienes (cysLTs) are produced predominantly by cells of the innate immune system, especially basophils, eosinophils, mast cells, and monocytes/macrophages. Notwithstanding potent bronchoconstrictor activity, cysLTs are also proinflammatory consequent to their autocrine and paracrine interactions with G-protein-coupled receptors expressed not only on the aforementioned cell types, but also on Th2 lymphocytes, as well as structural cells, and to a lesser extent neutrophils and CD8(+) cells. Recognition of the involvement of cysLTs in the immunopathogenesis of various types of acute and chronic inflammatory disorders, especially bronchial asthma, prompted the development of selective cysLT receptor-1 (cysLTR1) antagonists, specifically montelukast, pranlukast, and zafirlukast. More recently these agents have also been reported to possess secondary anti-inflammatory activities, distinct from cysLTR1 antagonism, which appear to be particularly effective in targeting neutrophils and monocytes/macrophages. Underlying mechanisms include interference with cyclic nucleotide phosphodiesterases, 5'-lipoxygenase, and the proinflammatory transcription factor, nuclear factor kappa B. These and other secondary anti-inflammatory mechanisms of the commonly used cysLTR1 antagonists are the major focus of the current review, which also includes a comparison of the anti-inflammatory effects of montelukast, pranlukast, and zafirlukast on human neutrophils in vitro, as well as an overview of both the current clinical applications of these agents and potential future applications based on preclinical and early clinical studies.
1
Cysteinyl leukotrienes are produced mainly by innate immune cells and promote inflammation through autocrine and paracrine receptor signaling across immune and structural cells.
2
Proposed cysLTR1-independent mechanisms include modulation of cyclic nucleotide phosphodiesterases, 5′-lipoxygenase, and the proinflammatory transcription factor NF-κB.
3
Selective cysteinyl leukotriene receptor-1 antagonists—montelukast, pranlukast, and zafirlukast—were developed in response to cysLT involvement in inflammatory diseases, particularly bronchial asthma.
4
The review compares the agents’ anti-inflammatory effects on human neutrophils and summarizes their established clinical uses and potential future applications.
5
These antagonists exhibit secondary anti-inflammatory activities beyond cysLTR1 blockade, with especially notable effects on neutrophils and monocytes/macrophages.

Cysteinyl leukotriene receptor-1 antagonists (montelukast, pranlukast, and zafirlukast) acting on innate immune cells

Primary and secondary anti-inflammatory modulation of innate immune cell function, including effects on neutrophils and monocytes/macrophages and mechanisms involving phosphodiesterases, 5'-lipoxygenase, and nuclear factor kappa B

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2014-01-01
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Annette J. Theron
Helen C. Steel
Gregory R. Tintinger
C. M. Gravett
Ronald Anderson
Charles Feldman
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