Literature DB >> 16820590

Increased neointimal formation after surgical vein grafting in a murine model of type 2 diabetes.

Sacha P Salzberg1, Farzan Filsoufi, Anelechi Anyanwu, Kai von Harbou, Eva Karlof, Alain Carpentier, Hayes M Dansky, David H Adams.   

Abstract

BACKGROUND: Diabetes is an independent risk factor for the development of neointimal hyperplasia and subsequent vein graft failure after coronary or peripheral artery bypass grafting. We evaluate a new mouse model of surgical vein grafting to investigate the mechanisms of neointimal formation in the setting of type 2 diabetes. METHODS AND
RESULTS: Surgical vein grafts were created by inserting vein segments from age-matched C57BL/KsJ wild-type mice into the infra-renal aorta of lepr(db/db) diabetic and C57BL/KsJ wild-type mice. Mice were euthanized &amp;4 weeks later, and vein grafts were analyzed using morphometric and immunohistochemical techniques. A significant increase in neointimal formation was noted in lepr(db/db) mice (139+/-64 versus 109+/-62 mm2; P=0.008) after 4 weeks. This difference was mainly secondary to an increase in collagen formation within the lesion in the vein grafts from lepr(db/db) mice (0.53+/-0.4 versus 0.44+/-0.05; P<0.001), whereas only slight increases (P=not significant) in alpha actin-stained smooth muscle cells were noted in the lepr(db/db) mice.
CONCLUSIONS: We established a new physiologically relevant model of surgical vein grafting in mice. In this report, type 2 diabetes was associated with significant increase in extracellular matrix deposition in addition to increased smooth muscle cell deposition. This new model may allow mechanistic studies of cellular and molecular pathways of increased neointimal formation in the setting of diabetes.

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Year:  2006        PMID: 16820590     DOI: 10.1161/CIRCULATIONAHA.105.001339

Source DB:  PubMed          Journal:  Circulation        ISSN: 0009-7322            Impact factor:   29.690


  14 in total

Review 1.  Rationale and practical techniques for mouse models of early vein graft adaptations.

Authors:  Peng Yu; Binh T Nguyen; Ming Tao; Christina Campagna; C Keith Ozaki
Journal:  J Vasc Surg       Date:  2010-06-22       Impact factor: 4.268

2.  Mouse vein graft hemodynamic manipulations to enhance experimental utility.

Authors:  Peng Yu; Binh T Nguyen; Ming Tao; Yingnan Bai; C Keith Ozaki
Journal:  Am J Pathol       Date:  2011-06       Impact factor: 4.307

3.  Enhanced proliferation and migration of vascular smooth muscle cells in response to vascular injury under hyperglycemic conditions is controlled by beta3 integrin signaling.

Authors:  Manikandan Panchatcharam; Sumitra Miriyala; Fanmuyi Yang; Michael Leitges; Magdalena Chrzanowska-Wodnicka; Lawrence A Quilliam; Paul Anaya; Andrew J Morris; Susan S Smyth
Journal:  Int J Biochem Cell Biol       Date:  2010-02-23       Impact factor: 5.085

4.  Vein Interposition Model: A Suitable Model to Study Bypass Graft Patency.

Authors:  Dong Wang; Grigol Tediashvili; Simon Pecha; Hermann Reichenspurner; Tobias Deuse; Sonja Schrepfer
Journal:  J Vis Exp       Date:  2017-01-15       Impact factor: 1.355

Review 5.  Vein graft failure: from pathophysiology to clinical outcomes.

Authors:  Margreet R de Vries; Karin H Simons; J Wouter Jukema; Jerry Braun; Paul H A Quax
Journal:  Nat Rev Cardiol       Date:  2016-05-19       Impact factor: 32.419

6.  High glucose oxidizes SERCA cysteine-674 and prevents inhibition by nitric oxide of smooth muscle cell migration.

Authors:  Xiaoyong Tong; Jia Ying; David R Pimentel; Mario Trucillo; Takeshi Adachi; Richard A Cohen
Journal:  J Mol Cell Cardiol       Date:  2007-11-12       Impact factor: 5.000

7.  Diet-induced obesity drives negative mouse vein graft wall remodeling.

Authors:  Peng Yu; Binh T Nguyen; Ming Tao; Tianyu Jiang; C Keith Ozaki
Journal:  J Vasc Surg       Date:  2013-07-19       Impact factor: 4.268

8.  Mineralocorticoid receptor antagonism inhibits vein graft remodeling in mice.

Authors:  Afshin Ehsan; Adam P McGraw; Mark J Aronovitz; Carol Galayda; Michael S Conte; Richard H Karas; Iris Z Jaffe
Journal:  J Thorac Cardiovasc Surg       Date:  2012-09-13       Impact factor: 5.209

9.  Extravascular perivenous fibrin support leads to aneurysmal degeneration and intimal hyperplasia in arterialized vein grafts in the rat.

Authors:  Tomislav Stojanovic; Ali El-Sayed Ahmad; Vasilios Didilis; Osama Ali; Aron F Popov; Bernd C Danner; Ralf Seipelt; Hilmar Dörge; Friedrich A Schöndube
Journal:  Langenbecks Arch Surg       Date:  2008-05-29       Impact factor: 3.445

10.  RAGE mediates accelerated diabetic vein graft atherosclerosis induced by combined mechanical stress and AGEs via synergistic ERK activation.

Authors:  Yuhuang Li; Shuying Liu; Zhengyu Zhang; Qingbo Xu; Fukang Xie; Jingjing Wang; Suning Ping; Chen Li; Zhaojing Wang; Min Zhang; Jintao Huang; Dadi Chen; Liping Hu; Chaohong Li
Journal:  PLoS One       Date:  2012-04-09       Impact factor: 3.240

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