Literature DB >> 17149374

Mesothelial RAGE activation by AGEs enhances VEGF release and potentiates capillary tube formation.

E Boulanger1, N Grossin, M-P Wautier, R Taamma, J-L Wautier.   

Abstract

Advanced glycation end-products (AGEs) inhibit ischemia-induced angiogenesis but are potential triggers of neoangiogenesis that occurs in peritoneal dialysis (PD) patients. We investigated whether the effect of glucose and AGEs on human peritoneal mesothelial cells (HPMCs) might alter the release of vascular endothelial growth factor (VEGF) and subsequently the formation of capillary tubes by human umbilical vein endothelial cells (HUVECs). HPMCs were exposed to glucose and the glycated protein Nvarepsilon-(carboxymethyl)lysine-human serum albumin (CML-HSA) and VEGF production was measured by reverse transcription-polymerase chain reaction and enzyme-linked immunosorbent assay. Capillary tube formation by HUVECs in presence of HPMC supernatant or co-cultured with HPMC was investigated. AGE and VEGF levels in PD effluents from 11 patients were measured. CML-HSA stimulated VEGF production by HPMCs, P<0.001. Glucose and AGE inhibited capillary tube formation by HUVECs, P<0.001. HPMC supernatant potentiated capillary tube formation, P<0.001. In co-culture with HPMC capillary tube formation was increased, especially by HPMCs stimulated by CML-HSA, P<0.001. Anti-VEGF antibody limited this effect, P<0.001. Preincubation of HPMCs with anti-receptor for AGEs (RAGE) antibody reduced capillary tube formation, P<0.001. AGE and VEGF levels in PD effluents were increased during long dwell time, P<0.05 and P<0.001, respectively. In a co-culture system, we showed that VEGF production by HPMC favors capillary tube formation through mesothelial RAGE activation and could explain neoangiogenesis in PD patient.

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Year:  2006        PMID: 17149374     DOI: 10.1038/sj.ki.5002016

Source DB:  PubMed          Journal:  Kidney Int        ISSN: 0085-2538            Impact factor:   10.612


  20 in total

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Review 2.  Implication of advanced glycation end products (Ages) and their receptor (Rage) on myocardial contractile and mitochondrial functions.

Authors:  Remi Neviere; Yichi Yu; Lei Wang; Frederic Tessier; Eric Boulanger
Journal:  Glycoconj J       Date:  2016-06-08       Impact factor: 2.916

Review 3.  Effect of Neutral-pH, Low-Glucose Degradation Product Peritoneal Dialysis Solutions on Residual Renal Function, Urine Volume, and Ultrafiltration: A Systematic Review and Meta-Analysis.

Authors:  Seychelle Yohanna; Ali M A Alkatheeri; Scott K Brimble; Brendan McCormick; Arthur Iansavitchous; Peter G Blake; Arsh K Jain
Journal:  Clin J Am Soc Nephrol       Date:  2015-06-05       Impact factor: 8.237

Review 4.  Fibrosis of Peritoneal Membrane as Target of New Therapies in Peritoneal Dialysis.

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Review 5.  Hibiscus, Rooibos, and Yerba Mate for Healthy Aging: A Review on the Attenuation of In Vitro and In Vivo Markers Related to Oxidative Stress, Glycoxidation, and Neurodegeneration.

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6.  Interference of peritoneal dialysis fluids with cell cycle mechanisms.

Authors:  Janine Büchel; Maria Bartosova; Gwendolyn Eich; Timo Wittenberger; Ludger Klein-Hitpass; Sonja Steppan; Thilo Hackert; Franz Schaefer; Jutta Passlick-Deetjen; Claus P Schmitt
Journal:  Perit Dial Int       Date:  2014-07-31       Impact factor: 1.756

Review 7.  Strategies for the preservation of residual renal function in pediatric dialysis patients.

Authors:  Melissa A Cadnapaphornchai; Isaac Teitelbaum
Journal:  Pediatr Nephrol       Date:  2013-07-19       Impact factor: 3.714

8.  Functional relevance of the switch of VEGF receptors/co-receptors during peritoneal dialysis-induced mesothelial to mesenchymal transition.

Authors:  María Luisa Pérez-Lozano; Pilar Sandoval; Angela Rynne-Vidal; Abelardo Aguilera; José Antonio Jiménez-Heffernan; Patricia Albar-Vizcaíno; Pedro L Majano; José Antonio Sánchez-Tomero; Rafael Selgas; Manuel López-Cabrera
Journal:  PLoS One       Date:  2013-04-09       Impact factor: 3.240

Review 9.  Pathophysiological changes to the peritoneal membrane during PD-related peritonitis: the role of mesothelial cells.

Authors:  Susan Yung; Tak Mao Chan
Journal:  Mediators Inflamm       Date:  2012-04-10       Impact factor: 4.711

10.  Açaí (Euterpe oleracea Mart.) modulates oxidative stress resistance in Caenorhabditis elegans by direct and indirect mechanisms.

Authors:  Larissa de Freitas Bonomo; David Nunes Silva; Patrícia Ferreira Boasquivis; Franciny Aparecida Paiva; Joyce Ferreira da Costa Guerra; Talita Alves Faria Martins; Álvaro Gustavo de Jesus Torres; Igor Thadeu Borges Raposo de Paula; Washington Luiz Caneschi; Philippe Jacolot; Nicolas Grossin; Frederic J Tessier; Eric Boulanger; Marcelo Eustáquio Silva; Maria Lúcia Pedrosa; Riva de Paula Oliveira
Journal:  PLoS One       Date:  2014-03-03       Impact factor: 3.240

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