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Metabolic regulation of collagen gel contraction by porcine aortic valvular interstitial cells

机译:猪主动脉瓣间质细胞对胶原蛋白凝胶收缩的代谢调控

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摘要

Despite a high incidence of calcific aortic valve disease in metabolic syndrome, there is little information about the fundamental metabolism of heart valves. Cell metabolism is a first responder to chemical and mechanical stimuli, but it is unknown how such signals employed in valve tissue engineering impact valvular interstitial cell (VIC) biology and valvular disease pathogenesis. In this study porcine aortic VICs were seeded into three-dimensional collagen gels and analysed for gel contraction, lactate production and glucose consumption in response to manipulation of metabolic substrates, including glucose, galactose, pyruvate and glutamine. Cell viability was also assessed in two-dimensional culture. We found that gel contraction was sensitive to metabolic manipulation, particularly in nutrient-depleted medium. Contraction was optimal at an intermediate glucose concentration (2 g l−1) with less contraction with excess (4.5 g l−1) or reduced glucose (1 g l−1). Substitution with galactose delayed contraction and decreased lactate production. In low sugar concentrations, pyruvate depletion reduced contraction. Glutamine depletion reduced cell metabolism and viability. Our results suggest that nutrient depletion and manipulation of metabolic substrates impacts the viability, metabolism and contractile behaviour of VICs. Particularly, hyperglycaemic conditions can reduce VIC interaction with and remodelling of the extracellular matrix. These results begin to link VIC metabolism and macroscopic behaviour such as cell–matrix interaction.
机译:尽管在代谢综合征中钙化主动脉瓣膜疾病的发生率很高,但是关于心脏瓣膜基本代谢的信息很少。细胞代谢是化学和机械刺激的第一个响应者,但未知在瓣膜组织工程中使用的此类信号如何影响瓣膜间质细胞(VIC)生物学和瓣膜疾病的发病机理。在这项研究中,将猪主动脉VIC植入三维胶原蛋白凝胶中,并分析其对葡萄糖,半乳糖,丙酮酸和谷氨酰胺等代谢底物的操纵,从而实现凝胶收缩,乳酸生成和葡萄糖消耗。还在二维培养中评估了细胞活力。我们发现凝胶收缩对代谢操作敏感,特别是在营养缺乏的培养基中。在中等葡萄糖浓度(2 gl -1 )收缩较少,过量(4.5 gl -1 )或降低葡萄糖(1 gl −1)时最佳收缩)。用半乳糖替代可延迟收缩并降低乳酸产生。在低糖浓度下,丙酮酸消耗减少了收缩。谷氨酰胺耗竭会降低细胞代谢和活力。我们的结果表明,营养物质的消耗和代谢底物的操作会影响VIC的活力,代谢和收缩行为。特别地,高血糖状况可减少与细胞外基质的VIC相互作用并重塑细胞外基质。这些结果开始将VIC代谢与宏观行为(例如细胞-基质相互作用)联系起来。

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