Temporal regulation of extracellular matrix components in transition from compensatory hypertrophy to decompensatory heart failure

被引:90
|
作者
Mujumdar, VS
Tyagi, SC
机构
[1] Univ Mississippi, Med Ctr, Dept Physiol & Biophys, Jackson, MS 39216 USA
[2] Univ Mississippi, Med Ctr, Ctr Excellence Cardiovasc Renal Res, Jackson, MS 39216 USA
关键词
fibrosis; elastin; collagen; hypertension; hypertrophy; transforming growth factor-beta(1); decorin; matrix metalloproteinase-2; gelatinase A; tissue inhibitor of metalloproteinase-4; Wistar-Kyoto rats; spontaneously hypertensive rats; elastase;
D O I
10.1097/00004872-199917020-00011
中图分类号
R6 [外科学];
学科分类号
1002 ; 100210 ;
摘要
Objective Extracellular matrix, particularly type I fibrillar collagen, provides tensile strength that allows cardiac muscle to perform systolic and diastolic functions. Collagen is induced during the transition from compensatory hypertrophy to heart failure. We hypothesized that cardiac stiffness during decompensatory hypertrophy is partly due to a decreased elastin:collagen ratio. Materials and methods We prepared left ventricular tissue homogenates from spontaneously hypertensive rats (SHR) aged 30-36 weeks, which had compensatory hypertrophy with no heart failure, and from SHR aged 70-92 weeks, which had decompensatory hypertrophy with heart failure. Age- and sex-matched Wistar-Kyoto (WKY) rats were used as normotensive controls. In both SHR groups, increased levels of collagen were detected by immune-blot analysis using type I collagen antibody. Elastin and collagen were quantitated by measuring desmosine/isodesmosine and hydroxyproline spectrophometrically, respectively. To determine whether the decrease in elastin content was due to increased elastinolytic activity of matrix metalloproteinase-2, we performed gelatin and elastin zymography on left ventricular tissue homogenates from control rats, SHR with compensatory hypertrophy and SHR with heart failure. Results The elastin : collagen ratio was 0.242 +/- 0.008 in hearts from WKY rats. In SHR without heart failure, the ratio was decreased to 0.073 +/- 0.003 and in decompensatory hypertrophy with heart failure, the ratio decreased to 0.012 +/- 0.005. Matrix metalloproteinase-2 activity was increased significantly in SHR with heart failure compared with controls (P < 0.001). The level of tissue inhibitor of metalloproteinase-4 was increased in compensatory hypertrophy and markedly reduced in heart failure. Decorin was strongly reduced in decompensatory heart failure compared with control hearts. Conclusions Since collagen was induced in SHR with heart failure, decorin and elastin were decreased and the ratios of gelatinase A and elastase to tissue inhibitor of metalloproteinase-4 were increased, we conclude that heart failure is associated with adverse extracellular matrix remodeling. (C) Lippincott Williams & Wilkins.
引用
收藏
页码:261 / 270
页数:10
相关论文
共 50 条
  • [1] Distinct upregulation of extracellular matrix genes in transition from hypertrophy to hypertensive heart failure
    Rysä, J
    Leskinen, H
    Ilves, M
    Ruskoaho, H
    HYPERTENSION, 2005, 45 (05) : 927 - 933
  • [2] Hydrogen sulfide mitigates transition from compensatory hypertrophy to heart failure
    Givvimani, Srikanth
    Munjal, Charu
    Gargoum, Riyad
    Sen, Utpal
    Tyagi, Neetu
    Vacek, Jonathan C.
    Tyagi, Suresh C.
    JOURNAL OF APPLIED PHYSIOLOGY, 2011, 110 (04) : 1093 - 1100
  • [3] Remodeling of extracellular matrix in the progression from hypertrophy to heart failure
    Polyakova, V
    Hein, S
    Ziegelhoffer, T
    Kostin, S
    Schaper, J
    CIRCULATION, 2003, 108 (17) : 216 - 216
  • [4] The extracellular matrix and the cytoskeleton in heart hypertrophy and failure
    Jane-Lise S.
    Corda S.
    Chassagne C.
    Rappaport L.
    Heart Failure Reviews, 2000, 5 (3) : 239 - 250
  • [5] ALTERATIONS IN CARDIAC GENE-EXPRESSION DURING THE TRANSITION FROM STABLE HYPERTROPHY TO HEART-FAILURE - MARKED UP-REGULATION OF GENES ENCODING EXTRACELLULAR-MATRIX COMPONENTS
    BOLUYT, MO
    ONEILL, L
    MEREDITH, AL
    BING, OHL
    BROOKS, WW
    CONRAD, CH
    CROW, MT
    LAKATTA, EG
    CIRCULATION RESEARCH, 1994, 75 (01) : 23 - 32
  • [6] Canopy 2 attenuates the transition from compensatory hypertrophy to dilated heart failure in hypertrophic cardiomyopathy
    Guo, Jian
    Mihic, Anton
    Wu, Jun
    Zhang, Yuemei
    Singh, Kaustabh
    Dhingra, Sanjiv
    Weisel, Richard D.
    Li, Ren-Ke
    EUROPEAN HEART JOURNAL, 2015, 36 (37) : 2530 - 2540
  • [7] Transition from hypertrophy to failure - β-Adrenergic desensitization of the heart
    Böhm M.
    Kouchi I.
    Schnabel P.
    Zolk O.
    Heart Failure Reviews, 1999, 4 (4) : 329 - 351
  • [8] Hydrogen Sulfide Mitigates Transition from Compensatory Hypertrophy to Heart Failure through Mmp-2 Activation and Angiogenesis
    Givvimani, Srikanth
    Munjal, Charu
    Riyad, Gargoum
    Tyagi, Neetu
    Sen, Utpal
    Tyagi, Suresh
    HYPERTENSION, 2010, 56 (05) : E76 - E76
  • [9] Temporal regulation of venous extracellular matrix components during arteriovenous fistula maturation
    Hall, Michael R.
    Yamamoto, Kota
    Protack, Clinton D.
    Tsuneki, Masayuki
    Kuwahara, Go
    Assi, Roland
    Brownson, Kirstyn E.
    Bai, Hualong
    Madri, Joseph A.
    Dardik, Alan
    JOURNAL OF VASCULAR ACCESS, 2015, 16 (02): : 93 - 106
  • [10] Alterations in expression of sarcoplasmic reticulum gene in Dahl rats during the transition from compensatory myocardial hypertrophy to heart failure
    Okayama, H
    Hamada, M
    Kawakami, H
    Ikeda, S
    Hashida, H
    Shigematsu, Y
    Hiwada, K
    JOURNAL OF HYPERTENSION, 1997, 15 (12) : 1767 - 1774