Literature DB >> 23230309

Genetic and pharmacological inhibition of galectin-3 prevents cardiac remodeling by interfering with myocardial fibrogenesis.

Lili Yu1, Willem P T Ruifrok, Maxi Meissner, Eelke M Bos, Harry van Goor, Bahram Sanjabi, Pim van der Harst, Bertram Pitt, Irwin J Goldstein, Jasper A Koerts, Dirk J van Veldhuisen, Ruud A Bank, Wiek H van Gilst, Herman H W Silljé, Rudolf A de Boer.   

Abstract

BACKGROUND: Galectin-3 has been implicated in the development of organ fibrosis. It is unknown whether it is a relevant therapeutic target in cardiac remodeling and heart failure. METHODS AND
RESULTS: Galectin-3 knock-out and wild-type mice were subjected to angiotensin II infusion (2.5 µg/kg for 14 days) or transverse aortic constriction for 28 days to provoke cardiac remodeling. The efficacy of the galectin-3 inhibitor N-acetyllactosamine was evaluated in TGR(mREN2)27 (REN2) rats and in wild-type mice with the aim of reversing established cardiac remodeling after transverse aortic constriction. In wild-type mice, angiotensin II and transverse aortic constriction perturbations caused left-ventricular (LV) hypertrophy, decreased fractional shortening, and increased LV end-diastolic pressure and fibrosis (P<0.05 versus control wild type). Galectin-3 knock-out mice also developed LV hypertrophy but without LV dysfunction and fibrosis (P=NS). In REN2 rats, pharmacological inhibition of galectin-3 attenuated LV dysfunction and fibrosis. To elucidate the beneficial effects of galectin-3 inhibition on myocardial fibrogenesis, cultured fibroblasts were treated with galectin-3 in the absence or presence of galectin-3 inhibitor. Inhibition of galectin-3 was associated with a downregulation in collagen production (collagen I and III), collagen processing, cleavage, cross-linking, and deposition. Similar results were observed in REN2 rats. Inhibition of galectin-3 also attenuated the progression of cardiac remodeling in a long-term transverse aortic constriction mouse model.
CONCLUSIONS: Genetic disruption and pharmacological inhibition of galectin-3 attenuates cardiac fibrosis, LV dysfunction, and subsequent heart failure development. Drugs binding to galectin-3 may be potential therapeutic candidates for the prevention or reversal of heart failure with extensive fibrosis.

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Year:  2012        PMID: 23230309     DOI: 10.1161/CIRCHEARTFAILURE.112.971168

Source DB:  PubMed          Journal:  Circ Heart Fail        ISSN: 1941-3289            Impact factor:   8.790


  149 in total

1.  Identification of galectin-3 as an autoantigen in patients with IgG4-related disease.

Authors:  Cory A Perugino; Sultan B AlSalem; Hamid Mattoo; Emanuel Della-Torre; Vinay Mahajan; Gayathri Ganesh; Hugues Allard-Chamard; Zachary Wallace; Sydney B Montesi; Johannes Kreuzer; Wilhelm Haas; John H Stone; Shiv Pillai
Journal:  J Allergy Clin Immunol       Date:  2018-05-29       Impact factor: 10.793

2.  Longitudinal Change in Galectin-3 and Incident Cardiovascular Outcomes.

Authors:  Anahita Ghorbani; Vijeta Bhambhani; Robert H Christenson; Wouter C Meijers; Rudolf A de Boer; Daniel Levy; Martin G Larson; Jennifer E Ho
Journal:  J Am Coll Cardiol       Date:  2018-12-25       Impact factor: 24.094

3.  Biomarkers of myocardial stress and fibrosis as predictors of mode of death in patients with chronic heart failure.

Authors:  Tariq Ahmad; Mona Fiuzat; Benjamin Neely; Megan L Neely; Michael J Pencina; William E Kraus; Faiez Zannad; David J Whellan; Mark P Donahue; Ileana L Piña; Kirkwood F Adams; Dalane W Kitzman; Christopher M O'Connor; G Michael Felker
Journal:  JACC Heart Fail       Date:  2014-06       Impact factor: 12.035

Review 4.  Biomarkers for risk prediction in acute decompensated heart failure.

Authors:  A Rogier van der Velde; Wouter C Meijers; Rudolf A de Boer
Journal:  Curr Heart Fail Rep       Date:  2014-09

5.  Galectin 3 and incident atrial fibrillation in the community.

Authors:  Jennifer E Ho; Xiaoyan Yin; Daniel Levy; Ramachandran S Vasan; Jared W Magnani; Patrick T Ellinor; David D McManus; Steven A Lubitz; Martin G Larson; Emelia J Benjamin
Journal:  Am Heart J       Date:  2014-03-01       Impact factor: 4.749

Review 6.  Biomarkers in heart failure: the past, current and future.

Authors:  Michael Sarhene; Yili Wang; Jing Wei; Yuting Huang; Min Li; Lan Li; Enoch Acheampong; Zhou Zhengcan; Qin Xiaoyan; Xu Yunsheng; Mao Jingyuan; Gao Xiumei; Fan Guanwei
Journal:  Heart Fail Rev       Date:  2019-11       Impact factor: 4.214

Review 7.  Drug Treatment of Hypertension: Focus on Vascular Health.

Authors:  Alan C Cameron; Ninian N Lang; Rhian M Touyz
Journal:  Drugs       Date:  2016-10       Impact factor: 9.546

8.  Plasma galectin 3 and heart failure risk in the Physicians' Health Study.

Authors:  Luc Djoussé; Chisa Matsumoto; Andrew Petrone; Natalie L Weir; Michael Y Tsai; J Michael Gaziano
Journal:  Eur J Heart Fail       Date:  2013-12-04       Impact factor: 15.534

Review 9.  The Current and Potential Clinical Relevance of Heart Failure Biomarkers.

Authors:  Parul U Gandhi; Jeffrey M Testani; Tariq Ahmad
Journal:  Curr Heart Fail Rep       Date:  2015-10

Review 10.  New Targets in the Drug Treatment of Heart Failure.

Authors:  James A Iwaz; Elizabeth Lee; Hermineh Aramin; Danilo Romero; Navaid Iqbal; Matt Kawahara; Fatima Khusro; Brian Knight; Minal V Patel; Sumita Sharma; Alan S Maisel
Journal:  Drugs       Date:  2016-02       Impact factor: 9.546

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