Rennie Monique Y, Stovall Stephanie, Carson James P, Danilchik Michael, Thornburg Kent L, Rugonyi Sandra
Knight Cardiovascular Institute, Center for Developmental Health, Oregon Health & Science University, Portland, OR 97239, USA.
Biomedical Engineering, Oregon Health & Science University, Portland, OR 97239, USA.
J Cardiovasc Dev Dis. 2017 Dec 20;4(4):24. doi: 10.3390/jcdd4040024.
Blood flow is critical for normal cardiac development. Hemodynamic stimuli outside of normal ranges can lead to overt cardiac defects, but how early heart tissue remodels in response to altered hemodynamics is poorly understood. This study investigated changes in tissue collagen in response to hemodynamic overload in the chicken embryonic heart outflow tract (OFT) during tubular heart stages (HH18 to HH24, ~24 h). A suture tied around the OFT at HH18 was tightened to constrict the lumen for ~24 h (constriction range at HH24: 15-60%). Expression of fibril collagens I and III and fibril organizing collagens VI and XIV were quantified at the gene and protein levels via qPCR and quantitative immunofluorescence. Collagen I was slightly elevated upstream of the band and in the cushions in banded versus control OFTs. Changes in collagen III were not observed. Collagen VI deposition was elevated downstream of the band, but not overall. Collagen XIV deposition increased throughout the OFT, and strongly correlated to lumen constriction. Interestingly, organization of collagen I fibrils was observed for the tighter banded embryos in regions that also showed increase in collagen XIV deposition, suggesting a potentially key role for collagens I and XIV in the structural adaptation of embryonic heart tissue to hemodynamic overload.
血流对心脏的正常发育至关重要。超出正常范围的血流动力学刺激可导致明显的心脏缺陷,但心脏组织如何早期响应血流动力学改变而重塑却知之甚少。本研究调查了鸡胚心脏流出道(OFT)在管状心脏阶段(HH18至HH24,约24小时)对血流动力学过载反应时组织胶原蛋白的变化。在HH18时,将一根缝线系在OFT周围并收紧以收缩管腔约24小时(HH24时的收缩范围:15 - 60%)。通过qPCR和定量免疫荧光在基因和蛋白质水平上对原纤维胶原蛋白I和III以及原纤维组织胶原蛋白VI和XIV的表达进行定量。与对照OFT相比,在带环OFT的带环上游和垫中胶原蛋白I略有升高。未观察到胶原蛋白III的变化。胶原蛋白VI的沉积在带环下游升高,但总体未升高。胶原蛋白XIV的沉积在整个OFT中增加,并且与管腔收缩密切相关。有趣的是,在胶原蛋白XIV沉积也增加的区域,观察到较紧带环胚胎中胶原蛋白I原纤维的组织化,表明胶原蛋白I和XIV在胚胎心脏组织对血流动力学过载的结构适应中可能起关键作用。