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1.
Ther Apher Dial ; 26 Suppl 1: 29-34, 2022 Dec.
Article in English | MEDLINE | ID: mdl-36468302

ABSTRACT

Low-density lipoprotein (LDL) apheresis is effective and safe for patients with diabetes, proteinuria, and dyslipidemia. Diabetes mellitus is accompanied by ocular microvascular complications like retinal neovascularization or diabetic macular edema. These are leading causes of blindness and can be mediated by abnormal vessel growth and increased vascular permeability due to elevated levels of vascular endothelial growth factor (VEGF) in diabetic patients. In this study, we established methods to study the expression of different VEGF isoforms in human retinal and endothelial cells. The VEGF-A165a isoform is much higher expressed in retinal cells, compared to endothelial cells. Stimulation with glyoxal as a model of oxidative stress under diabetic conditions lead to a pronounced induction of VEGF-A165a in human retinal and endothelial cells. These data suggest that diabetes and oxidative stress induce VEGF-A isoforms which could be relevant in regulating the ingrowths of novel blood vessels into the retina in diabetic patients.


Subject(s)
Diabetic Retinopathy , Macular Edema , Humans , Vascular Endothelial Growth Factor A/metabolism , Diabetic Retinopathy/therapy , Diabetic Retinopathy/etiology , Diabetic Retinopathy/metabolism , Endothelial Cells/metabolism , Glyoxal/pharmacology , Glyoxal/metabolism , Retina/metabolism , Protein Isoforms/metabolism
2.
PLoS One ; 13(12): e0208774, 2018.
Article in English | MEDLINE | ID: mdl-30532256

ABSTRACT

The development of a substance or inhibitor-based treatment strategy for the prevention of aortic valve stenosis is a challenge and a main focus of medical research in this area. One strategy may be to use the tankyrase inhibitor XAV-939, which leads to Axin stabilisation and subsequent destruction of the ß-catenin complex and dephosphorylation of ß-catenin. The dephosphorylated active form of ß-catenin (non-phospho-ß-catenin) then promotes nuclear transcription that leads to osteogenesis. The aims of the present study were to develop an experimental system for inducing in vitro calcification of human aortic valvular interstitial cells (VICs) to investigate the potential anti-calcific effect of XAV-939 and to analyse expression of the Wnt signalling proteins and Sox9, a chondrogenesis regulator, in this model. Calcification of human VIC cultures was induced by cultivation in an osteogenic medium and the effect of co-incubation with 1µM XAV-939 was monitored. Calcification was quantified when mineral deposits were visible in culture and was histologically verified by von Kossa or Alizarin red staining and by IR-spectroscopy. Protein expression of alkaline phosphatase, Axin, ß-catenin and Sox9 were quantified by western blotting. In 58% of the VIC preparations, calcification was induced in an osteogenic culture medium and was accompanied by upregulation of alkaline phosphatase. The calcification induction was prevented by the XAV-939 co-treatment and the alkaline phosphatase upregulation was suppressed. As expected, Axin was upregulated, but the levels of active non-phospho-ß-catenin were also enhanced. Sox9 was induced during XAV-939 treatment but apparently not as a result of downregulation of ß-catenin signalling. XAV-939 was therefore able to prevent calcification of human VIC cultures, and XAV-939 treatment was accompanied by upregulation of active non-phospho-ß-catenin. Although XAV-939 does not downregulate active ß-catenin, treatment with XAV-939 results in Sox9 upregulation that may prevent the calcification process.


Subject(s)
Aortic Valve Stenosis/prevention & control , Aortic Valve/drug effects , Calcinosis/prevention & control , Cardiovascular Agents/pharmacology , Heterocyclic Compounds, 3-Ring/pharmacology , Protective Agents/pharmacology , Aged , Alkaline Phosphatase/metabolism , Aortic Valve/metabolism , Aortic Valve/pathology , Aortic Valve Stenosis/metabolism , Aortic Valve Stenosis/pathology , Calcinosis/metabolism , Calcinosis/pathology , Cells, Cultured , Female , Humans , Male , SOX9 Transcription Factor/metabolism , Wnt Proteins/metabolism , beta Catenin/metabolism
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