Literature DB >> 15515342

Platelet-released supernatant increases matrix metalloproteinase-2 production, migration, proliferation, and tube formation of human umbilical vascular endothelial cells.

Barbara Kandler1, Michael B Fischer, Georg Watzek, Reinhard Gruber.   

Abstract

BACKGROUND: Local application of platelets represents a promising tool to enhance bone regeneration. New bone formation strictly requires blood vessel formation, a sequential process involving matrix degradation, migration, proliferation, and tube formation of endothelial cells. Here we investigated the impact of secreted granula products from activated platelets on endothelial cells, and determined the involvement of extracellular signal-regulated kinase (ERK) signaling.
METHODS: The effects of platelet-released supernatant on endothelial cells were investigated using in vitro models. Matrix metalloproteinase-2 (MMP-2) release, migration, proliferation, and tube formation of human umbilical vascular endothelial cells (HUVEC) were determined in response to platelet-released supernatant by gelatine zymography, Boyden chamber assay, 3[H]thymidine incorporation, and basement membrane assay, respectively. All experiments were performed in the presence of the ERK signaling inhibitor PD98059. ERK phosphorylation was detected by Western blot analysis.
RESULTS: Incubation with platelet-released supernatant increased the production of MMP-2, migration, proliferation, and tube formation of HUVEC. Platelet-released supernatant also stimulated ERK phosphorylation in HUVEC. Inhibition of ERK signaling decreased platelet-released supernatant-stimulated endothelial cell proliferation, but not MMP-2 activity, migration, and the formation of capillary tubes.
CONCLUSIONS: Our data suggest that secreted granula products from platelets can enhance different stages of blood vessel formation, and that ERK signaling is required to mediate the mitogenic effects of the supernatant. These findings support the hypothesis of a potential link between platelet activation and blood vessel formation during bone regeneration.

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Year:  2004        PMID: 15515342     DOI: 10.1902/jop.2004.75.9.1255

Source DB:  PubMed          Journal:  J Periodontol        ISSN: 0022-3492            Impact factor:   6.993


  8 in total

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Review 2.  In vitro models for the evaluation of angiogenic potential in bone engineering.

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Authors:  Makoto Osada; Osamu Inoue; Guo Ding; Toshiaki Shirai; Hirotake Ichise; Kazuyoshi Hirayama; Katsuhiro Takano; Yutaka Yatomi; Masanori Hirashima; Hideki Fujii; Katsue Suzuki-Inoue; Yukio Ozaki
Journal:  J Biol Chem       Date:  2012-05-03       Impact factor: 5.157

Review 4.  Bone regeneration and stem cells.

Authors:  K Arvidson; B M Abdallah; L A Applegate; N Baldini; E Cenni; E Gomez-Barrena; D Granchi; M Kassem; Y T Konttinen; K Mustafa; D P Pioletti; T Sillat; A Finne-Wistrand
Journal:  J Cell Mol Med       Date:  2011-04       Impact factor: 5.310

5.  Angiogenesis in newly regenerated bone by secretomes of human mesenchymal stem cells.

Authors:  Wataru Katagiri; Takamasa Kawai; Masashi Osugi; Yukiko Sugimura-Wakayama; Kohei Sakaguchi; Taku Kojima; Tadaharu Kobayashi
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6.  Platelet Lysate Inhibits NF-κB Activation and Induces Proliferation and an Alert State in Quiescent Human Umbilical Vein Endothelial Cells Retaining Their Differentiation Capability.

Authors:  Alessio Romaldini; Valentina Ulivi; Marta Nardini; Maddalena Mastrogiacomo; Ranieri Cancedda; Fiorella Descalzi
Journal:  Cells       Date:  2019-04-09       Impact factor: 6.600

7.  Effect of platelet-rich fibrin on cell proliferation, migration, differentiation, inflammation, and osteoclastogenesis: a systematic review of in vitro studies.

Authors:  Franz-Josef Strauss; Jila Nasirzade; Zahra Kargarpoor; Alexandra Stähli; Reinhard Gruber
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8.  Human Platelet Lysate as an Alternative to Autologous Serum for Human Chondrocyte Clinical Use.

Authors:  Virginie Philippe; Alexis Laurent; Philippe Abdel-Sayed; Nathalie Hirt-Burri; Lee Ann Applegate; Robin Martin
Journal:  Cartilage       Date:  2021-07-30       Impact factor: 4.634

  8 in total

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