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Assessment of Heparanase-Mediated Angiogenesis Using Microvascular Endothelial Cells: Identification of λ-Carrageenan Derivative as a Potent Anti Angiogenic Agent.
Poupard, Nicolas; Badarou, Pamela; Fasani, Fabienne; Groult, Hugo; Bridiau, Nicolas; Sannier, Frédéric; Bordenave-Juchereau, Stéphanie; Kieda, Claudine; Piot, Jean-Marie; Grillon, Catherine; Fruitier-Arnaudin, Ingrid; Maugard, Thierry.
Afiliação
  • Poupard N; Université de la Rochelle, UMR CNRS 7266, LIENSs, Equipe Approches Moléculaires, Environnement-Santé, Avenue Michel Crépeau, 17000 La Rochelle, France. nicolas.poupard@univ-lr.fr.
  • Badarou P; Centre de Biophysique Moléculaire, UPR CNRS 4301, 45071 Orléans, France. ayobadarou@hotmail.fr.
  • Fasani F; Centre de Biophysique Moléculaire, UPR CNRS 4301, 45071 Orléans, France. fabienne.fasani@cnrs-orleans.fr.
  • Groult H; Université de la Rochelle, UMR CNRS 7266, LIENSs, Equipe Approches Moléculaires, Environnement-Santé, Avenue Michel Crépeau, 17000 La Rochelle, France. hugo.groult@univ-lr.fr.
  • Bridiau N; Université de la Rochelle, UMR CNRS 7266, LIENSs, Equipe Approches Moléculaires, Environnement-Santé, Avenue Michel Crépeau, 17000 La Rochelle, France. nicolas.bridiau@univ-lr.fr.
  • Sannier F; Université de la Rochelle, UMR CNRS 7266, LIENSs, Equipe Approches Moléculaires, Environnement-Santé, Avenue Michel Crépeau, 17000 La Rochelle, France. frederic.sannier@univ-lr.fr.
  • Bordenave-Juchereau S; Université de la Rochelle, UMR CNRS 7266, LIENSs, Equipe Approches Moléculaires, Environnement-Santé, Avenue Michel Crépeau, 17000 La Rochelle, France. stephanie.bordenave@univ-lr.fr.
  • Kieda C; Centre de Biophysique Moléculaire, UPR CNRS 4301, 45071 Orléans, France. claudine.kieda@cnrs-orleans.fr.
  • Piot JM; Université de la Rochelle, UMR CNRS 7266, LIENSs, Equipe Approches Moléculaires, Environnement-Santé, Avenue Michel Crépeau, 17000 La Rochelle, France. jean-marie.piot@univ-lr.fr.
  • Grillon C; Centre de Biophysique Moléculaire, UPR CNRS 4301, 45071 Orléans, France. catherine.grillon@cnrs-orleans.fr.
  • Fruitier-Arnaudin I; Université de la Rochelle, UMR CNRS 7266, LIENSs, Equipe Approches Moléculaires, Environnement-Santé, Avenue Michel Crépeau, 17000 La Rochelle, France. ingrid.fruitier@univ-lr.fr.
  • Maugard T; Université de la Rochelle, UMR CNRS 7266, LIENSs, Equipe Approches Moléculaires, Environnement-Santé, Avenue Michel Crépeau, 17000 La Rochelle, France. thierry.maugard@univ-lr.fr.
Mar Drugs ; 15(5)2017 May 09.
Article em En | MEDLINE | ID: mdl-28486399
Heparanase is overexpressed by tumor cells and degrades the extracellular matrix proteoglycans through cleavage of heparan sulfates (HS), allowing pro-angiogenic factor release and thus playing a key role in tumor angiogenesis and metastasis. Here we propose new HS analogs as potent heparanase inhibitors: Heparin as a positive control, Dextran Sulfate, λ-Carrageenan, and modified forms of them obtained by depolymerization associated to glycol splitting (RD-GS). After heparanase activity assessment, 11 kDa RD-GS-λ-Carrageenan emerged as the most effective heparanase inhibitor with an IC50 of 7.32 ng/mL compared to 10.7 ng/mL for the 16 kDa unfractionated heparin. The fractionated polysaccharides were then tested in a heparanase-rich medium-based in vitro model, mimicking tumor microenvironment, to determine their effect on microvascular endothelial cells (HSkMEC) angiogenesis. As a preliminary study, we identified that under hypoxic and nutrient poor conditions, MCF-7 cancer cells released much more mature heparanase in their supernatant than in normal conditions. Then a MatrigelTM assay using HSkMEC cultured under hypoxic conditions in the presence (or not) of this heparanase-rich supernatant was realized. Adding heparanase-rich media strongly enhanced angiogenic network formation with a production of twice more pseudo-vessels than with the control. When sulfated polysaccharides were tested in this angiogenesis assay, RD-GS-λ-Carrageenan was identified as a promising anti-angiogenic agent.
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Texto completo: 1 Base de dados: MEDLINE Assunto principal: Carragenina / Inibidores da Angiogênese / Células Endoteliais / Glucuronidase / Neovascularização Patológica Idioma: En Ano de publicação: 2017 Tipo de documento: Article

Texto completo: 1 Base de dados: MEDLINE Assunto principal: Carragenina / Inibidores da Angiogênese / Células Endoteliais / Glucuronidase / Neovascularização Patológica Idioma: En Ano de publicação: 2017 Tipo de documento: Article