Peritoneal dialysis fluid activates calcium signaling and apoptosis in mesothelial cells

被引:0
作者
Mariarosaria Boccellino
Raffaele La Porta
Mario Coppola
Pasquale Petronella
Fulvio Freda
Vincenzo Calderaro
Lucio Quagliuolo
机构
[1] Second University of Naples,Department of Biochemistry and Biophysics
[2] Second University of Naples,Department of Gerontology, Geriatrics and Metabolic Disease
[3] Second University of Naples,Dipartimento Medico
来源
Apoptosis | 2013年 / 18卷
关键词
Apoptosis; Calcium signaling; Peritoneal dialysis fluid;
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学科分类号
摘要
A larger diffusion of peritoneal dialysis (PD) is limited by the progressive deterioration of the dialysis membrane structure and function, characterized in vitro and in vivo by mesothelial cell loss and closely related to the use of bioincompatible dialysis solutions. The apoptosis rate of rat and human mesothelial cells incubated in commercial PD fluid (PDF, 4.25 g/dL dextrose) became significant as early as 1 h after PDF addition and reached a plateau at 4–5 h. This pattern was unchanged after exposure to 1.5 g/dL dextrose PDF or freshly prepared PDF, indicating that effects were independent on the dextrose strength and manufacturing procedures but strictly dependent on PDF composition. Molecular studies revealed that PDF exposure inactivated the physiological volume recovery from hypertonic shrinkage, accompanied by an abnormal Ca2+ signaling: a progressive intracellular Ca2+ ([Ca2+]i) rise resulting from an increased Ca2+ entry. PDF also affected cytoskeleton integrity: early dissolution of actin filaments occurred well before the appearance of typical apoptosis features. Lastly, the PDF dependent apoptosis was almost completely prevented by the contemporary Ca2+ concentration decrease and K+ addition. This study suggests that the PDF dependent apoptosis arises from the extreme volume perturbations in mesothelial cells, turned out unable to regulate their volume back once exposed to a hyperosmolal medium containing high Ca2+ levels in the absence of K+, such PDF.
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页码:43 / 56
页数:13
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[1]  
Asari A(2007)Pharmacokinetics of lamivudine in subjects receiving peritoneal dialysis in end-stage renal failure Br J Clin Pharmacol 64 738-744
[2]  
Iles-Smith H(2006)Peritoneal injury by methylglyoxal in peritoneal dialysis Perit Dial Int 26 380-392
[3]  
Chen YC(2009)Peritoneal dialysis: a biological membrane with a non biological fluid Contrib Nephrol 163 27-34
[4]  
Naderer OJ(2005)Impact of glucose in peritoneal dialysis: saint or sinner? Perit Dial Int 25 415-425
[5]  
Johnson MA(2011)Long-term follow-up of patients randomized to biocompatible or conventional peritoneal dialysis solutions show no difference in peritonitis or technique survival Kidney Int 80 986-991
[6]  
Yuen GJ(2003)Peritoneal dialysis and epithelial-to-mesenchymal transition of mesothelial cells N Engl J Med 348 403-413
[7]  
Otto V(2011)Epithelial-to-mesenchymal transdifferentiation of peritoneal mesothelial cells mediated by oxidative stress in peritoneal fibrosis rats Zhong Nan Da Xue Xue Bao Yi Xue Ban 36 34-43
[8]  
Dunn JA(1999)High glucose induces a hypertrophic, senescent mesothelial cell phenotype after long in vivo exposure Nephron 82 164-173
[9]  
Gokal R(2003)Regulation of apoptosis by lethal cytokines in human mesothelial cells Kidney Int 64 321-330
[10]  
Hirahara I(1985)A new generation of Ca J Biol Chem 260 3440-3450