Rapid fabrication of highly porous and biocompatible composite textile tubular scaffold for vascular tissue engineering

被引:19
作者
Abdal-Hay, Abdalla [1 ,2 ]
Memic, Adnan [3 ]
Hussein, Kamal H. [4 ,5 ]
Oh, Yi Seul [6 ]
Fouad, Mohamed [7 ]
Al-Jassir, Fawzi F. [7 ]
Woo, Heung-Myong [4 ,5 ,8 ]
Morsi, Yosry [9 ]
Mo, Xiumei [10 ]
Ivanovski, Saso [1 ]
机构
[1] Griffith Univ, Griffith Hlth Ctr, Gold Coast Campus,G40 7-81,Parklands Dr, Southport, Qld 4222, Australia
[2] South Valley Univ, Fac Engn, Dept Engn Mat & Mech Design, Qena, Egypt
[3] King Abdulaziz Univ, Ctr Nanotechnol, Jeddah 21589, Saudi Arabia
[4] Kangwon Natl Univ, Stem Cell Inst, Chunchon 200701, Gangwon, South Korea
[5] Kangwon Natl Univ, Coll Vet Med, Chunchon 200701, Gangwon, South Korea
[6] Chonbuk Natl Univ, Dept Mech Design Engn, Adv Wind Power Syst Res Inst, Jeonju 561756, South Korea
[7] King Saud Univ, Orthoped Surg Res Chair, Riyadh 11461, Saudi Arabia
[8] Harvard Med Sch, Brigham & Womens Hosp, Renal Div, Harvard Stem Cell Inst, Boston, MA 02115 USA
[9] Swinburne Univ Technol, Fac Engn & Ind Sci, Hawthorn, Vic 3122, Australia
[10] Donghua Univ, Coll Chem Chem Engn & Biotechnol, Shanghai 201620, Peoples R China
关键词
Pore structure; Tissue scaffold; Endothelial cells; Electrospinning; Air jet spinning; ELECTROSPUN SCAFFOLDS; MECHANICAL-PROPERTIES; ENDOTHELIAL-CELLS; SURFACE; NANOFIBERS; MEMBRANES; IMMOBILIZATION; TEMPERATURE; DEPOSITION; BEHAVIOR;
D O I
10.1016/j.eurpolymj.2017.08.054
中图分类号
O63 [高分子化学(高聚物)];
学科分类号
070305 ; 080501 ; 081704 ;
摘要
Three dimensional (3D) constructs for vascular tissue engineering applications require scaffolds with highly porous architectures, high biocompatibility and mechanical stability. In this paper, composite fibrous tubular scaffolds composed of different ratios of poly(epsilon-caprolactone) (PCL) and polyamide-6 (PA-6) were simultaneously deposited layer by layer by employing the air jet spinning (AJS) textile technique. Specifically, we report on the optimal parameters for the fabrication of composite porous scaffolds that allow for precise control over the general scaffold architecture, as well as the physical and mechanical properties of the scaffolds. In vitro cell culture study was performed to investigate the influence of polymer composition and scaffold architecture on the adhesion of EA.hy926 human endothelial cells onto the fabricated scaffolds. The cell culture results indicated that a composite scaffold with low PA-6 fibrous content is the most promising substrate for EA.hy926 adhesion and proliferation. Based on the present findings, these highly porous composite tubular constructs support endothelial cell migration and cellular infiltration, and hence represent promising nano-fibrous scaffolds for vascular tissue engineering.
引用
收藏
页码:27 / 43
页数:17
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