Literature DB >> 10364709

High glucose induces a hypertrophic, senescent mesothelial cell phenotype after long in vivo exposure.

L Gotloib1, A Shostak, V Wajsbrot, R Kushnier.   

Abstract

Previous studies, done using our mouse model for population analysis of the mesothelium, showed evidence indicating that in vivo, long-term exposure (up to 30 days) of the peritoneum to high-glucose (4.25% D-glucose) concentration dialysis solutions resulted in a hypertrophic mesothelial phenotype characterized by increased cell surface area, multinucleation, low proliferative capabilities, reduced cell viability, and enhanced enzymatic activity. These elements that define a senescent population of cells were not related to the pH of the fluid and its osmolality, or to the presence of buffer lactate. The present study was designed to explore the adverse effects of a lactate-free, filter-sterilized, high-D-glucose concentration solution (4.25%) at normal pH and prepared in Hanks' buffered salt solution after 2 h, 15 and 30 days of once a day intraperitoneal injection. Analysis of our observations indicate that in vivo exposure of the mesothelium to a high-glucose concentration induced a decreased density of the cell population, made up by larger and multinucleated cells, the viability of which was significantly lower than that observed in intact unexposed mice. The prevalence of mitosis showed an early and short-lived acceleration (up to 3 days), followed by values near zero during the rest of the follow-up period. So far, the main effect of the high-glucose concentration appears to result not from a mechanism of cytotoxicity, but from a substantial change in the life cycle of the exposed cell population, leading to their premature senescence and death in apoptosis. We hypothesize that this outcome may well be mediated by sustained oxidative stress derived from both a reduced production of scavengers, as well as the increased generation of oxygen-reactive species.

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Year:  1999        PMID: 10364709     DOI: 10.1159/000045393

Source DB:  PubMed          Journal:  Nephron        ISSN: 1660-8151            Impact factor:   2.847


  11 in total

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2.  Characterization of peritoneal dialysis effluent-derived cells: diagnosis of peritoneal integrity.

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3.  Replicative senescence of biliary epithelial cells precedes bile duct loss in chronic liver allograft rejection: increased expression of p21(WAF1/Cip1) as a disease marker and the influence of immunosuppressive drugs.

Authors:  J G Lunz; S Contrucci; K Ruppert; N Murase; J J Fung; T E Starzl; A J Demetris
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4.  Evaluation of enhanced peritoneum permeability in methylglyoxal-treated rats as a diagnostic method for peritoneal damage.

Authors:  Shintaro Fumoto; Yukiko Nakashima; Koyo Nishida; Yukinobu Kodama; Junya Nishi; Mikiro Nakashima; Hitoshi Sasaki; Noboru Otsuka; Junzo Nakamura
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5.  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

6.  Increased storage and secretion of phosphatidylcholines by senescent human peritoneal mesothelial cells.

Authors:  Maria Bartosova; Andras Rudolf; Sebastian Pichl; Kathrin Schmidt; Jürgen G Okun; Beate K Straub; Rafael Rutkowski; Janusz Witowski; Claus P Schmitt
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7.  Astragalus extract inhibits destruction of gastric cancer cells to mesothelial cells by anti-apoptosis.

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Review 8.  Targeting cannabinoid signaling for peritoneal dialysis-induced oxidative stress and fibrosis.

Authors:  Chih-Yu Yang; Yat-Pang Chau; Ann Chen; Oscar Kuang-Sheng Lee; Der-Cherng Tarng; An-Hang Yang
Journal:  World J Nephrol       Date:  2017-05-06

Review 9.  Animal Models of Peritoneal Dialysis: Thirty Years of Our Own Experience.

Authors:  Krzysztof Pawlaczyk; Ewa Baum; Krzysztof Schwermer; Krzysztof Hoppe; Bengt Lindholm; Andrzej Breborowicz
Journal:  Biomed Res Int       Date:  2015-07-06       Impact factor: 3.411

10.  Cross-omics comparison of stress responses in mesothelial cells exposed to heat- versus filter-sterilized peritoneal dialysis fluids.

Authors:  Klaus Kratochwill; Thorsten O Bender; Anton M Lichtenauer; Rebecca Herzog; Silvia Tarantino; Katarzyna Bialas; Achim Jörres; Christoph Aufricht
Journal:  Biomed Res Int       Date:  2015-10-01       Impact factor: 3.411

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