Literature DB >> 20530546

Pulsatile shear and Gja5 modulate arterial identity and remodeling events during flow-driven arteriogenesis.

Ivo Buschmann1, Axel Pries, Beata Styp-Rekowska, Philipp Hillmeister, Laurent Loufrani, Daniel Henrion, Yu Shi, Andre Duelsner, Imo Hoefer, Nora Gatzke, Haitao Wang, Kerstin Lehmann, Lena Ulm, Zully Ritter, Peter Hauff, Ruslan Hlushchuk, Valentin Djonov, Toon van Veen, Ferdinand le Noble.   

Abstract

In the developing chicken embryo yolk sac vasculature, the expression of arterial identity genes requires arterial hemodynamic conditions. We hypothesize that arterial flow must provide a unique signal that is relevant for supporting arterial identity gene expression and is absent in veins. We analyzed factors related to flow, pressure and oxygenation in the chicken embryo vitelline vasculature in vivo. The best discrimination between arteries and veins was obtained by calculating the maximal pulsatile increase in shear rate relative to the time-averaged shear rate in the same vessel: the relative pulse slope index (RPSI). RPSI was significantly higher in arteries than veins. Arterial endothelial cells exposed to pulsatile shear in vitro augmented arterial marker expression as compared with exposure to constant shear. The expression of Gja5 correlated with arterial flow patterns: the redistribution of arterial flow provoked by vitelline artery ligation resulted in flow-driven collateral arterial network formation and was associated with increased expression of Gja5. In situ hybridization in normal and ligation embryos confirmed that Gja5 expression is confined to arteries and regulated by flow. In mice, Gja5 (connexin 40) was also expressed in arteries. In the adult, increased flow drives arteriogenesis and the formation of collateral arterial networks in peripheral occlusive diseases. Genetic ablation of Gja5 function in mice resulted in reduced arteriogenesis in two occlusion models. We conclude that pulsatile shear patterns may be central for supporting arterial identity, and that arterial Gja5 expression plays a functional role in flow-driven arteriogenesis.

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Year:  2010        PMID: 20530546     DOI: 10.1242/dev.045351

Source DB:  PubMed          Journal:  Development        ISSN: 0950-1991            Impact factor:   6.868


  76 in total

1.  Porcine arteriogenesis based on vasa vasorum in a novel semi-acute occlusion model using high-resolution imaging.

Authors:  Jonathan M Harnoss; Florian Krackhardt; Zully Ritter; Susanne Granzow; Dieter Felsenberg; Konrad Neumann; Lilach O Lerman; Fabian Riediger; Philipp Hillmeister; Peter Bramlage; Ivo R Buschmann
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Review 2.  Fluid flows and forces in development: functions, features and biophysical principles.

Authors:  Jonathan B Freund; Jacky G Goetz; Kent L Hill; Julien Vermot
Journal:  Development       Date:  2012-04       Impact factor: 6.868

3.  NOTCH1 regulates matrix gla protein and calcification gene networks in human valve endothelium.

Authors:  Mark P White; Christina V Theodoris; Lei Liu; William J Collins; Kathleen W Blue; Joon Ho Lee; Xianzhong Meng; Robert C Robbins; Kathryn N Ivey; Deepak Srivastava
Journal:  J Mol Cell Cardiol       Date:  2015-04-12       Impact factor: 5.000

Review 4.  Veins and Arteries Build Hierarchical Branching Patterns Differently: Bottom-Up versus Top-Down.

Authors:  Kristy Red-Horse; Arndt F Siekmann
Journal:  Bioessays       Date:  2019-03       Impact factor: 4.345

Review 5.  Making microvascular networks work: angiogenesis, remodeling, and pruning.

Authors:  Axel R Pries; Timothy W Secomb
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6.  Variants of Rab GTPase-Effector Binding Protein-2 Cause Variation in the Collateral Circulation and Severity of Stroke.

Authors:  Jennifer L Lucitti; Robert Sealock; Brian K Buckley; Hua Zhang; Lin Xiao; Andrew C Dudley; James E Faber
Journal:  Stroke       Date:  2016-11-03       Impact factor: 7.914

Review 7.  Vascular heterogeneity and specialization in development and disease.

Authors:  Michael Potente; Taija Mäkinen
Journal:  Nat Rev Mol Cell Biol       Date:  2017-05-24       Impact factor: 94.444

8.  Formation of the collateral circulation is regulated by vascular endothelial growth factor-A and a disintegrin and metalloprotease family members 10 and 17.

Authors:  Jennifer L Lucitti; Jessica K Mackey; Jeffrey C Morrison; Jody J Haigh; Ralf H Adams; James E Faber
Journal:  Circ Res       Date:  2012-09-10       Impact factor: 17.367

Review 9.  Regulation of cardiovascular connexins by mechanical forces and junctions.

Authors:  Merlijn J Meens; Anna Pfenniger; Brenda R Kwak; Mario Delmar
Journal:  Cardiovasc Res       Date:  2013-04-23       Impact factor: 10.787

10.  Dll4-Notch signaling determines the formation of native arterial collateral networks and arterial function in mouse ischemia models.

Authors:  Brunella Cristofaro; Yu Shi; Marcella Faria; Steven Suchting; Aurelie S Leroyer; Alexandre Trindade; Antonio Duarte; Ann C Zovein; M Luisa Iruela-Arispe; Lina R Nih; Nathalie Kubis; Daniel Henrion; Laurent Loufrani; Mihail Todiras; Johanna Schleifenbaum; Maik Gollasch; Zhen W Zhuang; Michael Simons; Anne Eichmann; Ferdinand le Noble
Journal:  Development       Date:  2013-04       Impact factor: 6.868

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