Literature DB >> 12163941

Correlations between the collagen content of the human left ventricular myocardium, measured by biochemical and morphometric methods.

José Duarte de Morais Lopes1, Roseli Aparecida da Silva Gomes, Valdemar Hial, Isabel Cristina Rezende Lopes, Marlene Antônia dos Reis, Vicente de Paula Antunes Teixeira.   

Abstract

OBJECTIVE: To assess, in myocardium specimens obtained from necropsies, the correlation between the concentration of hydroxyproline, measured with the photocolorimetric method, and the intensity of fibrosis, determined with the morphometric method.
METHODS: Left ventricle myocardium samples were obtained from 45 patients who had undergone necropsy, some of them with a variety of cardiopathies and others without any heart disease. The concentrations of hydroxyproline were determined with the photocolorimetric method. In the histologic sections from each heart, the myocardial fibrosis was quantified by using a light microscope with an integrating ocular lens.
RESULTS: A median of, respectively, 4.5 and 4.3 microgram of hydroxyproline/mg of dry weight was found in fixed and nonfixed left ventricle myocardium fragments. A positive correlation occurred between the hydroxyproline concentrations and the intensity of fibrosis, both in the fixed (Sr=+0.25; p=0.099) and in the nonfixed (Sr=+0.32; p=0.03) specimens.
CONCLUSION: The biochemical methodology was proven to be adequate, and manual morphometry was shown to have limitations that may interfere with the statistical significance of correlations for the estimate of fibrosis intensity in the human myocardium.

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Year:  2002        PMID: 12163941     DOI: 10.1590/s0066-782x2002001000002

Source DB:  PubMed          Journal:  Arq Bras Cardiol        ISSN: 0066-782X            Impact factor:   2.000


  1 in total

1.  Generation of an Adequate Perfusion Network within Dense Collagen Hydrogels Using Thermoplastic Polymers as Sacrificial Matrix to Promote Cell Viability.

Authors:  Marie Camman; Pierre Marquaille; Pierre Joanne; Onnik Agbulut; Christophe Hélary
Journal:  Bioengineering (Basel)       Date:  2022-07-14
  1 in total

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