Literature DB >> 11380095

Myxomatous mitral valve chordae. II: Selective elevation of glycosaminoglycan content.

K J Grande-Allen1, B P Griffin, A Calabro, N B Ratliff, D M Cosgrove, I Vesely.   

Abstract

BACKGROUND AND AIM OF THE STUDY: Chordal rupture in myxomatous mitral valves is the leading cause of leaflet prolapse and regurgitation. Increased glycosaminoglycan (GAG) content has been reported in these valves. Therefore, the biochemical differences between myxomatous and control mitral valve chordae were investigated.
METHODS: The contents of hexuronic acid, DNA, water, and collagen in chordae from 45 myxomatous valves and 10 control valves were measured. Collagen and hexuronic acid quantities were normalized to wet and dry weights, and to DNA content. Different GAG classes were measured using fluorophore-assisted carbohydrate electrophoresis (FACE).
RESULTS: Myxomatous chordae contained significantly more GAGs than controls after quantities were normalized for wet weight, dry weight, and DNA content. The FACE assay showed that the myxomatous chordae contained significantly more chondroitin/dermatan 6-sulfate when normalized to both wet and dry weight, and slightly more hyaluronan. In contrast to leaflets, which contain predominantly hyaluronan, the predominant GAG class in chordae was chondroitin/dermatan sulfate. Keratan sulfate, a GAG class previously unreported in valve tissues, was also discovered in the chordae. Myxomatous chordae contained more water and less collagen than control chordae, but equal quantities of DNA when normalized for wet weight.
CONCLUSION: Cells in the chordae of myxomatous valves may produce more GAGs than cells in the chordae of control valves. The resulting accumulation of GAGs and bound water likely gives myxomatous valves their characteristic thickening and floppy, gelatinous nature, and may account for their reported mechanical weaknesses.

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Year:  2001        PMID: 11380095

Source DB:  PubMed          Journal:  J Heart Valve Dis        ISSN: 0966-8519


  10 in total

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Journal:  Cardiovasc Pathol       Date:  2010-12-24       Impact factor: 2.185

Review 2.  Differentiating the aging of the mitral valve from human and canine myxomatous degeneration.

Authors:  Patrick S Connell; Richard I Han; K Jane Grande-Allen
Journal:  J Vet Cardiol       Date:  2012-02-24       Impact factor: 1.701

Review 3.  Epidemiology and pathophysiology of mitral valve prolapse: new insights into disease progression, genetics, and molecular basis.

Authors:  Francesca N Delling; Ramachandran S Vasan
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4.  Stability and function of glycosaminoglycans in porcine bioprosthetic heart valves.

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Review 5.  Myxomatous mitral valve disease bench to bedside: LDL-density-pressure regulates Lrp5.

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6.  Regurgitation Hemodynamics Alone Cause Mitral Valve Remodeling Characteristic of Clinical Disease States In Vitro.

Authors:  Patrick S Connell; Anam F Azimuddin; Seulgi E Kim; Fernando Ramirez; Matthew S Jackson; Stephen H Little; K Jane Grande-Allen
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7.  Identification and characterization of CPS1 as a hyaluronic acid synthase contributing to the pathogenesis of Cryptococcus neoformans infection.

Authors:  Ambrose Jong; Chun-Hua Wu; Han-Min Chen; Feng Luo; Kyung J Kwon-Chung; Yun C Chang; Craig W Lamunyon; Anna Plaas; Sheng-He Huang
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8.  Effect of cyclic mechanical strain on glycosaminoglycan and proteoglycan synthesis by heart valve cells.

Authors:  Vishal Gupta; Hubert Tseng; Brian D Lawrence; K Jane Grande-Allen
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Review 9.  The mechanisms, diagnosis and management of mitral regurgitation in mitral valve prolapse and hypertrophic cardiomyopathy.

Authors:  Mihaela Octavia Popa; Ana Maria Irimia; Mihai Nicolae Papagheorghe; Elena Miruna Vasile; Simona Andreea Tircol; Raluca Andreea Negulescu; Catalina Toader; Robert Adam; Lucian Dorobantu; Cristina Caldararu; Maria Alexandrescu; Sebastian Onciul
Journal:  Discoveries (Craiova)       Date:  2016-06-30

10.  Contractile properties of the right atrial myofilaments in patients with myxomatous mitral valve degeneration.

Authors:  Constanze Bening; Uwe Mehlhorn; Lars Oliver Conzelmann; Nicole Stumpf; Anjuli Sikand; Christian-Friedrich Vahl
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  10 in total

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