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用于心脏组织工程的由苯胺五聚体改性聚氨酯/聚己内酯共混物制备多孔导电支架

Preparation of a porous conductive scaffold from aniline pentamer-modified polyurethane/PCL blend for cardiac tissue engineering.

作者信息

Baheiraei Nafiseh, Yeganeh Hamid, Ai Jafar, Gharibi Reza, Ebrahimi-Barough Somayeh, Azami Mahmoud, Vahdat Sadaf, Baharvand Hossein

机构信息

Department of Tissue Engineering and Applied Cell Sciences, School of Advanced Medical Technologies, Tehran University of Medical Sciences, Tehran, 1417755469, Iran.

Department of Tissue Engineering, Reproductive Biotechnology Research Center, Avicenna Research Institute, ACECR, Tehran, Iran.

出版信息

J Biomed Mater Res A. 2015 Oct;103(10):3179-87. doi: 10.1002/jbm.a.35447. Epub 2015 Mar 30.

Abstract

A novel biodegradable electroactive polyurethane containing aniline pentamer (AP) was blended with polycaprolactone (PCL). The prepared blend (PB) and PCL were further fabricated in to scaffolds using a mixture of poly(ethylene glycol) and salt particles in a double porogen particulate leaching and compression molding methodology. Scaffolds held open and interconnected pores having pore size ranging from several μm to 150 µm. PB scaffolds had compression modulus and strength of 4.1 and 1.3 MPa, respectively. The conductivity of the scaffold was measured as 10(-5) ± 0.09 S .cm(-1) and preserved for at least 100 h post fabrication. Scaffolds supported neonatal cardiomyocytes adhesion and growth with PB showing more extensive effect on the expression of the cardiac genes involved in muscle contraction and relaxation (troponin-T) and cytoskeleton alignment (actinin-4). Our results highlight the potential of incorporation of AP as an electroactive moiety for induction of cardiomyocyte proliferation and repair of damaged heart tissue.

摘要

一种含有苯胺五聚体(AP)的新型可生物降解电活性聚氨酯与聚己内酯(PCL)共混。使用聚乙二醇和盐颗粒的混合物,通过双致孔剂颗粒沥滤和压缩成型方法,将制备的共混物(PB)和PCL进一步制成支架。支架具有开放且相互连通的孔隙,孔径范围从几微米到150微米。PB支架的压缩模量和强度分别为4.1和1.3兆帕。支架的电导率测量为10(-5)±0.09 S.cm(-1),并且在制造后至少保持100小时。支架支持新生心肌细胞的粘附和生长,PB对参与肌肉收缩和舒张(肌钙蛋白-T)和细胞骨架排列(辅肌动蛋白-4)的心脏基因的表达显示出更广泛的影响。我们的结果突出了掺入AP作为电活性部分以诱导心肌细胞增殖和修复受损心脏组织的潜力。

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