Lung fluid transport in aquaporin-5 knockout mice

被引:235
作者
Ma, TH
Fukuda, N
Song, YL
Matthay, MA
Verkman, AS
机构
[1] Univ Calif San Francisco, Cardiovasc Res Inst, Dept Med, San Francisco, CA 94143 USA
[2] Univ Calif San Francisco, Cardiovasc Res Inst, Dept Physiol, San Francisco, CA 94143 USA
关键词
D O I
10.1172/JCI8258
中图分类号
R-3 [医学研究方法]; R3 [基础医学];
学科分类号
1001 ;
摘要
The mammalian lung expresses water channel aquaporin-1 (AQP1) in microvascular endothelia, AQP4 in airway epithelia, and AQP5 at the apical plasma membrane in type I cells of alveolar epithelia Wie previously studied the role of AQP1 and AQP4 in lung fluid transport: using knockout mice. Here, we examined the role of AQP5 using AQP5 knockout mice, which were recently shown to manifest defective saliva secretion. AQP5 deletion did not affect lung morphology at the light microscopic level, nor did it affect the distribution or expression of aquaporins 1, 3, or 4. Airspace-capillary osmotic water permeability (P-f) was measured in isolated perfused lungs by pleural surface fluorescence and gravimetric methods. P-f was reduced 10-fold by AQP5 deletion and was further reduced by 2- to 3-fold in AQP1/AQP5 double-knockout mice. Hydrostatic lung edema in response to acute increases in pulmonary artery pressure was not affected by AQP5 deletion. Active alveolar fluid absorption was measured in an in situ lung model from the increase in concentration of a volume marker in an isosmolar alveolar instillate. Interestingly, fluid absorption did not differ in Litter-matched AQP5 knockout mice, nor was there an effect of AQP5 deletion when fluid absorption was maximally stimulated by pretreatment of mice with keratinocyte growth factor. These results indicate that AQP5 is responsible for the majority of water transport across the apical membrane of type I alveolar epithelial cells. The unimpaired alveolar fluid clearance in AQP5-null mice indicates that high alveolar water permeability is not required for active, near-isosmolar fluid transport.
引用
收藏
页码:93 / 100
页数:8
相关论文
共 42 条
[1]   Lung fluid transport in aquaporin-1 and aquaporin-4 knockout mice [J].
Bai, CX ;
Fukuda, N ;
Song, YL ;
Ma, TH ;
Matthay, MA ;
Verkman, AS .
JOURNAL OF CLINICAL INVESTIGATION, 1999, 103 (04) :555-561
[2]   Keratinocyte growth factor modulates alveolar epithelial cell phenotype in vitro:: Expression of aquaporin 5 [J].
Borok, Z ;
Lubman, RL ;
Danto, SI ;
Zhang, XL ;
Zabski, SM ;
King, LS ;
Lee, DM ;
Agre, P ;
Crandall, ED .
AMERICAN JOURNAL OF RESPIRATORY CELL AND MOLECULAR BIOLOGY, 1998, 18 (04) :554-561
[3]   High microvascular endothelial water permeability in mouse lung measured by a pleural surface fluorescence method [J].
Carter, EP ;
Ölveczky, BP ;
Matthay, MA ;
Verkman, AS .
BIOPHYSICAL JOURNAL, 1998, 74 (04) :2121-2128
[4]   Developmental changes in water permeability across the alveolar barrier in perinatal rabbit lung [J].
Carter, EP ;
Umenishi, F ;
Matthay, MA ;
Verkman, AS .
JOURNAL OF CLINICAL INVESTIGATION, 1997, 100 (05) :1071-1078
[5]   Transalveolar osmotic and diffusional water permeability in intact mouse lung measured by a novel surface fluorescence method [J].
Carter, EP ;
Matthay, MA ;
Farinas, J ;
Verkman, AS .
JOURNAL OF GENERAL PHYSIOLOGY, 1996, 108 (03) :133-142
[6]   Fourfold reduction of water permeability in inner medullary collecting duct of aquaporin-4 knockout mice [J].
Chou, CL ;
Ma, TH ;
Yang, BX ;
Knepper, MA ;
Verkman, S .
AMERICAN JOURNAL OF PHYSIOLOGY-CELL PHYSIOLOGY, 1998, 274 (02) :C549-C554
[7]   Reduced water permeability and altered ultrastructure in thin descending limb of Henle in aquaporin-1 null mice [J].
Chou, CL ;
Knepper, MA ;
van Hoek, AN ;
Brown, D ;
Yang, BX ;
Ma, TH ;
Verkman, AS .
JOURNAL OF CLINICAL INVESTIGATION, 1999, 103 (04) :491-496
[8]   Highly water-permeable type I alveolar epithelial cells confer high water permeability between the airspace and vasculature in rat lung [J].
Dobbs, LG ;
Gonzalez, R ;
Matthay, MA ;
Carter, EP ;
Allen, L ;
Verkman, AS .
PROCEEDINGS OF THE NATIONAL ACADEMY OF SCIENCES OF THE UNITED STATES OF AMERICA, 1998, 95 (06) :2991-2996
[9]   Water transport and the distribution of aquaporin-1 in pulmonary air spaces [J].
Effros, RM ;
Darin, C ;
Jacobs, ER ;
Rogers, RA ;
Krenz, G ;
Schneeberger, EE .
JOURNAL OF APPLIED PHYSIOLOGY, 1997, 83 (03) :1002-1016
[10]   Augmentation of lung liquid clearance via adenovirus-mediated transfer of a Na,K-ATPase β1 subunit gene [J].
Factor, P ;
Saldias, F ;
Ridge, K ;
Dumasius, V ;
Zabner, J ;
Jaffe, HA ;
Blanco, G ;
Barnard, M ;
Mercer, R ;
Perrin, R ;
Sznajder, JI .
JOURNAL OF CLINICAL INVESTIGATION, 1998, 102 (07) :1421-1430