Changes in myocardial collagen content before and after left ventricular assist device application in dilated cardiomyopathy |
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Authors: | Liang Hong Müller Johannes Weng Yu-guo Wallukat Gerd Fu Ping Lin Han-sheng Bartel Sabina Knosalla Christoph Pregla Reinhard Hetzer Roland |
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Affiliation: | 1. Department of Cardiovascular and Thoracic Surgery,Medical College of Jinan University,Guangzhou 510630,China 2. Deutsches Herzzentrum Berlin,Berlin 13353 Germany 3. Max-Delbrück Centre for Molecular Medicine,Berlin 13125 Germany 4. Department of Cardiovascular Surgery,Institute of Cardiovascular Diseases,Tongji Medical University,Wuhan 430022,China 5. Department of Medical Statistics,Medical College of Jinan University,Guangzhou 510632,China |
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Abstract: | BACKGROUND: The purposes of this study were to confirm the changes in myocardial collagen level after left ventricular assist device (LVAD) support in dilated cardiomyopathy (DCM), find the relation between these changes and prognosis, and test a practical method to assess the level of myocardial collagen. METHODS: Left ventricular samples were collected from DCM patients with different prognosis (transplanted group n = 8, weaning group n = 10) at the time when the LVADs were implanted and again during cardiac transplantation (n = 8). The level of neutral salt soluble collagen (NSC) and acid soluble collagen (ASC) was measured by Sircol collagen assay, and that of total collagen and insoluble collagen (ISC) by quantification of hydroxyproline (Hyp). Serum samples were collected from a portion of these patients (transplanted group, n = 6; weaning group n = 7) at the time the LVADs were implanted, 1 month after implantation and on explantation. Circulating concentration of carboxy-terminal propeptide of type I procollagen (P I CP), amino-terminal propeptide of type I procollagen (P I NP), amino-terminal propeptide of type III procollagen (P III NP) and type I collagen telopeptide (I CTP) were measured by the equilibrium type radioimmunoassay. RESULTS: Before LVAD implantation the level of NSC and ISC in the weaning group was higher but ASC in the transplanted group was lower than in the controls (P < 0.05). After LVAD support, the level of total collagen was higher, but ASC was also lower in the transplanted group than in the controls (P < 0.05). In comparison of the pre- and post-LVAD subgroups of the transplanted and weaning groups, all collagen fraction levels before LVAD implantation were lower in the transplanted group than in the weaning group (P < 0.05); but this difference disappeared after LVAD support. Comparison of the pre- and post-LVAD subgroups of the transplanted group showed increased level of NSC and total collagen after LVAD support. The changes of serum peptide concentration showed that P III NP increased constantly in the transplanted group, but P I CP and P I NP increased in the weaning group after LVAD implantation. CONCLUSIONS: The changes in myocardial collagen level as a sign of myocardial interstitial remodeling in DCM are not involved with total collagen but involved with collagen fractions, and they are related to prognosis. The changes of myocardial collagen content and serum procollagen peptide after LVAD support can be regarded as an expression of the reverse of maladaptive myocardial interstitial remodeling. |
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Keywords: | dilated cardiomyopathy ventricular remodeling heart-assist devices collagen myocardial recovery |
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