Aquaporin-1 and endothelial nitric oxide synthase expression in capillary endothelia of human peritoneum

Author:

Devuyst Olivier1,Nielsen Soren2,Cosyns Jean-Pierre3,Smith Barbara L.4,Agre Peter4,Squifflet Jean-Paul5,Pouthier Dominique6,Goffin Eric1

Affiliation:

1. Departments of Nephrology,

2. Department of Cell Biology, University of Aarhus, DK-8000 Aarhus, Denmark;

3. Pathology, and

4. Departments of Medicine and Biological Chemistry, Johns Hopkins University Medical School, Baltimore, Maryland 21287; and

5. Surgery, University of Louvain Medical School, B-1200 Brussels, Belgium;

6. Centre Hospitalier de Luxembourg, L-1210 Luxembourg

Abstract

Water transport during peritoneal dialysis (PD) requires ultrasmall pores in the capillary endothelium of the peritoneum and is impaired in the case of peritoneal inflammation. The water channel aquaporin (AQP)-1 has been proposed to be the ultrasmall pore in animal models. To substantiate the role of AQP-1 in the human peritoneum, we investigated the expression of AQP-1, AQP-2, and endothelial nitric oxide synthase (eNOS) in 19 peritoneal samples from normal subjects ( n = 5), uremic patients treated by hemodialysis ( n = 7) or PD ( n = 4), and nonuremic patients ( n = 3), using Western blotting and immunostaining. AQP-1 is very specifically located in capillary and venule endothelium but not in small-size arteries. In contrast, eNOS is located in all types of endothelia. Immunoblot for AQP-1 in human peritoneum reveals a 28-kDa band (unglycosylated AQP-1) and diffuse bands of 35–50 kDa (glycosylated AQP-1). Although AQP-1 expression is remarkably stable in all samples whatever their origin, eNOS (135 kDa) is upregulated in the three patients with ascites and/or peritonitis (1 PD and 2 nonuremic patients). AQP-2, regulated by vasopressin, is not expressed at the protein level in human peritoneum. This study 1) supports AQP-1 as the molecular counterpart of the ultrasmall pore in the human peritoneum and 2) demonstrates that AQP-1 and eNOS are regulated independently of each other in clinical conditions characterized by peritoneal inflammation.

Publisher

American Physiological Society

Subject

Physiology (medical),Cardiology and Cardiovascular Medicine,Physiology

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1. The Peritoneal Membrane and Its Role in Peritoneal Dialysis;Clinical Journal of the American Society of Nephrology;2023-08-24

2. Effect of Glucose on Water Transport in Rat Peritoneal Mesothelial Cells;Journal of Evolutionary Biochemistry and Physiology;2023-03

3. Effect of Glucose on Water Transport in Rat Peritoneal Mesothelium Cells;Российский физиологический журнал им  И  М  Сеченова;2023-03-01

4. Aquaporins in Cancer Biology;Frontiers in Oncology;2022-06-29

5. Fibrosis of Peritoneal Membrane as Target of New Therapies in Peritoneal Dialysis;International Journal of Molecular Sciences;2022-04-27

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