ChurchillD.N., ThorpeK.E., NolphK.D., KeshaviahP.R., OreopoulosD.G., PagéD.Increased peritoneal membrane transport is associated with decreased patient and technique survival for continuous peritoneal dialysis patients.J Am Soc Nephrol1998; 9: 1285–92.
2.
YangC.W., HwangT.L., WuC.H., LaiP.C., HuangJ.Y., YuC.C.Peritoneal nitric oxide is a marker of peritonitis in patients on continuous ambulatory peritoneal dialysis.Nephrol Dial Transplant1996; 11: 2466–71.
3.
DoumaC.E., de WaartD.R., StruijkD.G., KredietR.T.The nitric oxide donor nitroprusside intraperitoneally affects peritoneal permeability in CAPD.Kidney Int1997; 51: 1885–92.
4.
CombetS., MiyataT., MoulinP., PouthierD., GoffinE., DevuystO.Vascular proliferation and enhanced expression of endothelial nitric oxide synthase in human peritoneum exposed to long-term peritoneal dialysis.J Am Soc Nephrol2000; 11: 717–28.
5.
NiJ., CnopsY., McLoughlinR.M., TopleyN., DevuystO.Inhibition of nitric oxide synthase reverses permeability changes in a mouse model of acute peritonitis.Perit Dial Int2005; 25(Suppl 3): S11–14.
6.
MochizukiS., HimiN., MiyasakaT., NakamotoH., TakemotoM., HiranoK.Evaluation of basic performance and applicability of a newly developed in vivo nitric oxide sensor.Physiol Meas2002; 23: 261–8.
7.
MochizukiS., MiyasakaT., GotoM., OgasawaraY., YadaT., AkiyamaM.Measurement of acetylcholine-induced endothelium-derived nitric oxide in aorta using a newly developed catheter-type nitric oxide sensor.Biochem Biophys Res Commun2003; 306: 505–8.
8.
ImanishiT., KobayshiK., KuroiA., MochizukiS., GotoM., YoshidaK.Effects of angiotensin II on NO bioavailability evaluated using a catheter-type NO sensor.Hypertension2006; 48: 1058–65.
9.
ImanishiT., KuroiA., IkejimaH., MochizukiS., GotoM., AkasakaT.Evaluation of pharmacological modulation of nitroglycerin-induced impairment of nitric oxide bioavailability by a catheter-type nitric oxide sensor.Circ J2007; 71: 1473–9.
10.
NeishiY., MochizukiS., MiyasakaT., KawamotoT., KumeT., SukmawanR.Evaluation of bioavailability of nitric oxide in coronary circulation by direct measurement of plasma nitric oxide concentration.Proc Natl Acad Sci U S A2005; 102: 11456–61.
11.
PlumJ., TabatabaeiM.M., LordnejadM.R., PipinikaO., RazeghiP., HuangC.Nitric oxide production in peritoneal macrophages from peritoneal dialysis patients with bacterial peritonitis.Perit Dial Int1999; 19(Suppl 2): S378–83.
12.
DavenportA., FernandoR.L., VargheseZ.Intraperitoneal nitric oxide production in patients treated by continuous ambulatory peritoneal dialysis.Blood Purif2004; 22: 216–23.
13.
OzekiM., SasakiT., FujimotoS., SatohM., KobayashiS., HarunaY.The implication of NO and ROS their interaction in the pathogenesis of peritoneal injury [Abstract].J Am Soc Nephrol2003; 14: 475A.