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Targeting the Airway Smooth Muscle for Asthma Treatment

Overview
Journal Transl Res
Publisher Elsevier
Specialty Pathology
Date 2009 Sep 22
PMID 19766960
Citations 24
Authors
Affiliations
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Abstract

Asthma is a complex respiratory disease whose incidence has increased worldwide in the last decade. Currently there is no cure for asthma. Although bronchodilator and anti-inflammatory medications are effective medicines in some asthmatic patients, it is clear that an unmet therapeutic need persists for a subpopulation of individuals with severe asthma. This chronic lung disease is characterized by airflow limitation, lung inflammation, and remodeling that includes increased airway smooth muscle (ASM) mass. In addition to its contractile properties, the ASM also contributes to the inflammatory process by producing active mediators, which modify the extracellular matrix composition and interact with inflammatory cells. These undesirable functions make interventions aimed at reducing ASM abundance an attractive strategy for novel asthma therapies. The following three mechanisms could limit the accumulation of smooth muscle: decreased cell proliferation, augmented cell apoptosis, and reduced cell migration into the smooth muscle layer. Inhibitors of the mevalonate pathway or statins hold promise for asthma treatment, because they exhibit anti-inflammatory, antimigratory, and antiproliferative effects in preclinical and clinical studies, and they can target the smooth muscle. This review will discuss current knowledge of ASM biology and identify gaps in the field to stimulate future investigations of the cellular mechanisms that control ASM overabundance in asthma. Targeting ASM has the potential to be an innovative venue of treatment for patients with asthma.

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References
1.
Turner N, Midgley L, ORegan D, Porter K . Comparison of the efficacies of five different statins on inhibition of human saphenous vein smooth muscle cell proliferation and invasion. J Cardiovasc Pharmacol. 2007; 50(4):458-61. DOI: 10.1097/FJC.0b013e318123767f. View

2.
Almog Y, Shefer A, Novack V, Maimon N, Barski L, Eizinger M . Prior statin therapy is associated with a decreased rate of severe sepsis. Circulation. 2004; 110(7):880-5. DOI: 10.1161/01.CIR.0000138932.17956.F1. View

3.
Neese R, Misell L, Turner S, Chu A, Kim J, Cesar D . Measurement in vivo of proliferation rates of slow turnover cells by 2H2O labeling of the deoxyribose moiety of DNA. Proc Natl Acad Sci U S A. 2002; 99(24):15345-50. PMC: 137719. DOI: 10.1073/pnas.232551499. View

4.
Knapp A, Huang J, Starling G, Kiener P . Inhibitors of HMG-CoA reductase sensitize human smooth muscle cells to Fas-ligand and cytokine-induced cell death. Atherosclerosis. 2000; 152(1):217-27. DOI: 10.1016/s0021-9150(99)00462-1. View

5.
Yang Y, Beqaj S, Kemp P, Ariel I, Schuger L . Stretch-induced alternative splicing of serum response factor promotes bronchial myogenesis and is defective in lung hypoplasia. J Clin Invest. 2000; 106(11):1321-30. PMC: 387248. DOI: 10.1172/JCI8893. View