Literature DB >> 20978717

Increased Dkk3 protein expression in platelets and megakaryocytes of patients with myeloproliferative neoplasms.

Michael Medinger1, Alexandar Tzankov, Johann Kern, Andreas Pircher, Martin Hermann, Helmut-Werner Ott, Günther Gastl, Gerold Untergasser, Eberhard Gunsilius.   

Abstract

Dickkopf-3 (Dkk3) has been proposed as tumour suppressor gene and a marker for tumour blood vessels. We analysed the expression and function of Dkk3 in platelets and megakaryocytes from healthy controls and patients with BCR-ABL1-negative myeloproliferative neoplasms (MPN). Dkk3 protein and gene expression in platelets was compared with endothelial and other blood cell populations by ELISA, real-time PCR, and immunofluorescence. Moreover, megakaryocytes were isolated from bone marrow aspirates by CD61 microbeads. Immunohistochemical studies of Dkk3 expression were performed in essential thrombocythemia (ET), polycythemia vera (PV), primary myelofibrosis (PMF) and control reactive bone marrow cases (each n=10). Compared to all other blood cell populations platelets showed the highest concentration of Dkk3 protein (150 ± 19 ng/mg total protein). A strong DKK3 gene and protein expression was also observed in isolated megakaryocytes. Dkk3 co-localised with VEGF in α-granules of platelets and was released similar to VEGF upon stimulation. Addition of recombinant Dkk3 had no influence on blood coagulation (aPTT, INR) and platelet aggregation. Significantly more Dkk3+ megakaryocytes/mm2 could be found in bone marrow biopsies from patients with MPN (ET 40 ± 10, PV 31 ± 4, PMF 22 ± 3) than in controls (15 ± 3). The mean proportion of Dkk3+ megakaryocytes was increased in MPN as well (ET 83% ± 15%; PV 84% ± 12%; PMF 77% ± 8%) compared to controls (53% ± 11%). Dkk3+ megakaryocytes correlated with microvessel density in PV and PMF. We conclude that Dkk3 might be involved in the pathogenesis of MPN.

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Year:  2010        PMID: 20978717     DOI: 10.1160/TH10-03-0172

Source DB:  PubMed          Journal:  Thromb Haemost        ISSN: 0340-6245            Impact factor:   5.249


  5 in total

1.  Numerical impairment of nestin(+) bone marrow niches in acute GvHD after allogeneic hematopoietic stem cell transplantation for AML.

Authors:  M Medinger; W Krenger; A Jakab; J Halter; A Buser; C Bucher; J Passweg; A Tzankov
Journal:  Bone Marrow Transplant       Date:  2015-08-24       Impact factor: 5.483

2.  Small Interfering RNA Targeting Dickkopf-1 Contributes to Neuroprotection After Intracerebral Hemorrhage in Rats.

Authors:  Zhihua Li; Xi Chen; Xiaoyang Zhang; Xiuhua Ren; Xuemei Chen; Jing Cao; Weidong Zang; Xianzhi Liu; Fuyou Guo
Journal:  J Mol Neurosci       Date:  2017-01-17       Impact factor: 3.444

3.  DKK3 (Dikkopf-3) Transdifferentiates Fibroblasts Into Functional Endothelial Cells-Brief Report.

Authors:  Ting Chen; Eirini Karamariti; Xuechong Hong; Jiacheng Deng; Yutao Wu; Wenduo Gu; Russell Simpson; Mei Mei Wong; Baoqi Yu; Yanhua Hu; Aijuan Qu; Qingbo Xu; Li Zhang
Journal:  Arterioscler Thromb Vasc Biol       Date:  2019-04       Impact factor: 8.311

4.  The Aplidin analogs PM01215 and PM02781 inhibit angiogenesis in vitro and in vivo.

Authors:  Bojana Borjan; Normann Steiner; Silvia Karbon; Johann Kern; Andrés Francesch; Martin Hermann; Wolfgang Willenbacher; Eberhard Gunsilius; Gerold Untergasser
Journal:  BMC Cancer       Date:  2015-10-19       Impact factor: 4.430

5.  Binding of Dickkopf-3 to CXCR7 Enhances Vascular Progenitor Cell Migration and Degradable Graft Regeneration.

Authors:  Shirin Issa Bhaloo; Yifan Wu; Alexandra Le Bras; Baoqi Yu; Wenduo Gu; Yao Xie; Jiacheng Deng; Zhihong Wang; Zhongyi Zhang; Deling Kong; Yanhua Hu; Aijuan Qu; Qiang Zhao; Qingbo Xu
Journal:  Circ Res       Date:  2018-08-03       Impact factor: 17.367

  5 in total

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