Camostat Attenuates Airway Epithelial Sodium Channel Function in Vivo through the Inhibition of a Channel-Activating Protease

被引:68
作者
Coote, K. [1 ]
Atherton-Watson, H. C. [1 ]
Sugar, R. [1 ]
Young, A. [1 ]
MacKenzie-Beevor, A. [1 ]
Gosling, M. [1 ]
Bhalay, G. [1 ]
Bloomfield, G. [1 ]
Dunstan, A. [1 ]
Bridges, R. J. [2 ]
Sabater, J. R. [3 ]
Abraham, W. M. [3 ]
Tully, D. [4 ]
Pacoma, R. [4 ]
Schumacher, A. [4 ]
Harris, J. [4 ]
Danahay, H. [1 ]
机构
[1] Novartis Inst Biomed Res, Horsham RH12 5AB, W Sussex, England
[2] Rosalind Franklin Inst, N Chicago, IL USA
[3] Mt Sinai Med Ctr, Dept Res, Miami Beach, FL 33140 USA
[4] Novartis Fdn, Genom Inst, La Jolla, CA USA
关键词
FIBROSIS LUNG-DISEASE; CYSTIC-FIBROSIS; POTENTIAL DIFFERENCE; AEROSOLIZED AMILORIDE; NEBULIZED AMILORIDE; HYPERTONIC SALINE; CONTROLLED-TRIAL; MUCUS CLEARANCE; ION-TRANSPORT; NA+ TRANSPORT;
D O I
10.1124/jpet.108.148155
中图分类号
R9 [药学];
学科分类号
1007 ;
摘要
Inhibition of airway epithelial sodium channel ( ENaC) function enhances mucociliary clearance (MCC). ENaC is positively regulated by channel-activating proteases (CAPs), and CAP inhibitors are therefore predicted to be beneficial in diseases associated with impaired MCC. The aims of the present study were to 1) identify low-molecular-weight inhibitors of airway CAPs and 2) to establish whether such CAP inhibitors would translate into a negative regulation of ENaC function in vivo, with a consequent enhancement of MCC. To this end, camostat, a trypsin-like protease inhibitor, provided a potent (IC50 similar to 50 nM) and prolonged attenuation of ENaC function in human airway epithelial cell models that was reversible upon the addition of excess trypsin. In primary human bronchial epithelial cells, a potency order of placental bikunin > camostat > 4-guanidinobenzoic acid 4-carboxymethyl- phenyl ester > aprotinin >> soybean trypsin inhibitor = alpha 1-antitrypsin, was largely consistent with that observed for inhibition of prostasin, a molecular candidate for the airway CAP. In vivo, topical airway administration of camostat induced a potent and prolonged attenuation of ENaC activity in the guinea pig trachea (ED50 = 3 mu g/kg). When administered by aerosol inhalation in conscious sheep, camostat enhanced MCC out to at least 5 h after inhaled dosing. In summary, camostat attenuates ENaC function and enhances MCC, providing an opportunity for this approach toward the negative regulation of ENaC function to be tested therapeutically.
引用
收藏
页码:764 / 774
页数:11
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