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Adhesion, proliferation and differentiation of human mesenchymal stem cell on chitosan/collagen composite scaffold

机译:人间充质干细胞对壳聚糖/胶原复合支架的粘附,增殖和分化

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摘要

In vitro tissue engineering requires a progenitor cell source and a porous scaffold providing three dimensional (3D) supports for growth and differentiation to attain tissue architectures. This research focused on fabrication and characterization of 3D porous scaffolds using chitosan (CS), collagen (CG) and chitosan-collagen (CS-CG) composite to investigate their influence on human mesenchymal stem cell (hMSC) adhesion, proliferation and differentiation. Material dependent variations in porous morphology and mechanical behavior of the fabricated CS, CG and CS-CG scaffold showed significant impact on hMSC adhesion, proliferation and differentiation. The maximum hMSC adhesion and proliferation was reported on CS-CG scaffold among all fabricated scaffold groups. Interconnectivity of pores structure in CS-CG scaffold was considered as preferable attribute for such enhanced growth and distribution throughout the scaffold. Besides, CS scaffold with well interconnected pores showed poor adhesion and proliferation because of inadequate adhesion motifs. In case of CG scaffold, optimum growth and distribution of hMSC occurs only at the surface because of the absence of interconnectivity in their pore structures. Likewise, osteogenic differentiation of hMSC occurs most preferably in CS-CG composite scaffold among all scaffold groups. Such enhanced hMSC proliferation and differentiation in CS-CG scaffold significantly influenced on mechanical behavior of scaffold which is essential for in vivo application of a bone tissue implant. Thus CS-CG composite scaffold holds promise to be a suitable platform for in vitro engineering of bone tissue implant.[GRAPHICS].
机译:体外组织工程需要祖细胞源和多孔支架,提供三维(3D)支撑载体的生长和分化以获得组织架构。本研究专注于使用壳聚糖(Cs),胶原蛋白(Cg)和壳聚糖 - 胶原(CS-CG)复合材料进行3D多孔支架的制造和表征,以研究它们对人间充质干细胞(HMSC)粘附,增殖和分化的影响。材料依赖性变化的制造Cs,Cg和Cs-CG支架的多孔形态和力学行为对HMSC粘附,增殖和分化的显着影响。在所有制造的支架基团中,在CS-CG支架上报道了最大HMSC粘合性和增殖。 CS-CG支架中的孔结构的互连被认为是在整个支架中进行这种增强的生长和分布的优选属性。此外,由于粘合基序不足,CS支架具有良好的互连孔隙显示出差的粘附性和增殖。在CG支架的情况下,由于在其孔结构中没有互连,因此仅在表面处发生最佳生长和分布。同样,HMSC的骨质发生分化最优选在所有支架基团中的CS-CG复合支架中发生。 CS-CG支架中这种增强的HMSC增殖和分化显着影响了支架的力学行为,这对于体内施加骨组织植入物是必不可少的。因此,CS-CG复合支架支撑承诺是骨组织植入物体外工程的合适平台。[图形]。

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  • 来源
    《Journal of materials science》 |2019年第12期|131.1-131.12|共12页
  • 作者单位

    Bangladesh Agr Univ Dept Microbiol & Hyg Mymensigh 2202 Bangladesh|Kyushu Univ Appl Mech Res Inst Kasuga Fukuoka Japan;

    Bangladesh Agr Univ Dept Microbiol & Hyg Mymensigh 2202 Bangladesh|Kyushu Univ Grad Sch Med Sci Dept Dermatol Fukuoka Fukuoka Japan;

    Kyushu Univ Interdisciplinary Grad Sch Engn Sci Kasuga Fukuoka Japan;

    Kyushu Univ Appl Mech Res Inst Kasuga Fukuoka Japan|Kyushu Univ Interdisciplinary Grad Sch Engn Sci Kasuga Fukuoka Japan;

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