Sánchez-Palencia Diana, Rathan Swetha, Ankeny Casey J, Fogg Ruth, Briceño Juan C, Yoganathan Ajit P
Department of Biomedical Engineering, Universidad de los Andes, Bogota, Colombia.
CEIBA Complex Systems Research Centre, School of Engineering, Bogota, Colombia.
J Tissue Eng Regen Med. 2017 May;11(5):1427-1434. doi: 10.1002/term.2040. Epub 2015 Jul 29.
In small intestinal submucosa (SIS) scaffolds for functional tissue engineering, the impact of scaffold fabrication parameters on cellular response and tissue regeneration may relate to the mechanotransductory properties of the final arrangement of collagen fibres. We previously proved that two fabrication parameters, (a) preservation (P) or removal (R) of a dense collagen layer present in SIS, and (b) SIS in a final dehydrated (D) or hydrated (H) state, have an effect on the micromechanical environment of SIS. In a continuation of our studies, we herein hypothesized that these fabrication parameters also modulate early mechanotransduction in cells populating the scaffold. Mechanotransduction was investigated by seeding human umbilical vein endothelial cells (HUVECs) on scaffolds, exposing them to pulsatile shear stress (12 ± 4 dyne/cm ) for 1 h (n = 5) in a cone-and-plate shear system, and evaluating the expression of the mechanosensitive genes Pecam1 and Enos by immunofluorescence and qPCR. Expression of mechanosensitive genes was highest in PD grafts, followed by PH and RH grafts. The RD group had similar expression to that of unsheared control cells, suggesting that the RD combination potentially reduced mechanotransduction of shear to cells. We concluded that the two fabrication parameters studied, which modify SIS micromechanics, also potentially modulated the early shear-induced expression of mechanosensitive genes in seeded HUVECs. Our findings suggest that fabrication parameters influence the outcome of SIS as a therapeutic scaffold. Copyright © 2015 John Wiley & Sons, Ltd.
在用于功能性组织工程的小肠黏膜下层(SIS)支架中,支架制造参数对细胞反应和组织再生的影响可能与胶原纤维最终排列的机械转导特性有关。我们之前证明,两个制造参数,(a)SIS中存在的致密胶原层的保留(P)或去除(R),以及(b)SIS处于最终脱水(D)或水合(H)状态,会对SIS的微观力学环境产生影响。在我们研究的延续中,我们在此假设这些制造参数也会调节填充支架的细胞中的早期机械转导。通过将人脐静脉内皮细胞(HUVECs)接种在支架上,在锥板剪切系统中使其暴露于脉动剪切应力(12±4达因/平方厘米)1小时(n = 5),并通过免疫荧光和qPCR评估机械敏感基因Pecam1和Enos的表达来研究机械转导。机械敏感基因的表达在PD移植物中最高,其次是PH和RH移植物。RD组的表达与未剪切的对照细胞相似,表明RD组合可能降低了剪切对细胞的机械转导。我们得出结论,所研究的两个制造参数改变了SIS的微观力学,也可能调节了接种的HUVECs中早期剪切诱导的机械敏感基因的表达。我们的研究结果表明,制造参数会影响SIS作为治疗性支架的效果。版权所有©2015约翰威立父子有限公司。