Cardiac Fibroblast-Derived Extracellular Matrix Produced <I>In Vitro</I> Stimulates Growth and Metabolism of Cultured Ventricular Cells
スポンサーリンク
概要
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Cardiac fibroblasts (CFs) produce extracellular matrix (ECM) which is a potent regulator of heart cell function and growth, and provides a supportive microenvironment for heart cells. Therefore, CF-derived ECM produced <I>in vitro</I> is very suitable for heart-cell culturing and cardiac tissue engineering. The aim of this study was to investigate the effect of CF-derived ECM produced <I>in vitro</I> on the growth and metabolism of cultured ventricular cells. CF-derived ECM-coated cell culture dishes were prepared by culturing rat CFs and then decellularizing the cultures. Isolated neonatal rat ventricular cells were seeded on ECM-coated, collagen I-coated or uncoated dishes, and the growth of cells after 1-5 days of culture was assayed with MTT reagent. In addition, cellular metabolic activity was analyzed by spectrophotometric methods and protein levels of sarco(endo)plasmic reticulum Ca<Sup>2+</Sup>-ATPase type 2a (SERCA2a) by Western blotting. The relative growth of ventricular cells was better on ECM-coated than on uncoated or collagen I-coated dishes. Furthermore, the glucose consumption ratio, lactic acid production ratio, Na<Sup>+</Sup>/K<Sup>+</Sup>-ATPase activity, SERCA activity and protein levels of SERCA2a were all higher in cells on the ECM-coated dishes. In conclusion, cardiac fi broblast-derived ECM produced <I>in vitro</I> stimulates the growth and metabolism of cultured ventricular cells. This study indicates that the bioactivity of the ECM supports heart cell growth <I>in vitro</I>, and this might be useful for cardiac tissue engineering.
著者
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Shi Cai-hong
Tianjin Institute of Medical Equipment, Academy of Military Medical Science
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Li Rui-xin
Tianjin Institute of Medical Equipment, Academy of Military Medical Science
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Wu Ji-min
Tianjin Institute of Medical Equipment, Academy of Military Medical Science
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Zhang Xi-zheng
Tianjin Institute of Medical Equipment, Academy of Military Medical Science
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Zeng Qiang-cheng
Shandong Provincial Key Laboratory of Biophysics, Dezhou University
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Guo Yong
Tianjin Institute of Medical Equipment, Academy of Military Medical Science
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Liu Lu
Tianjin Institute of Medical Equipment, Academy of Military Medical Science
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Zhang Chun-qiu
School of Mechanical Engineering, Tianjin University of Technology
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Hao Qin-xin
Tianjin Institute of Medical Equipment, Academy of Military Medical Science
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Guan Jing
Tianjin Institute of Medical Equipment, Academy of Military Medical Science