首页> 外文期刊>Acta biomaterialia >Influence of strain on proteoglycan synthesis by valvular interstitial cells in three-dimensional culture.
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Influence of strain on proteoglycan synthesis by valvular interstitial cells in three-dimensional culture.

机译:应变对三维培养中瓣膜间质细胞蛋白聚糖合成的影响。

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摘要

Differently loaded regions of the mitral valve contain distinct amounts and types of proteoglycans (PGs); these PG profiles are altered in abnormal loading and disease conditions. We developed an in vitro three-dimensional model to analyze PGs secreted by valvular interstitial cells (VICs) isolated from distinct regions of porcine mitral valves (leaflet or chordae) and subjected to either biaxial or uniaxial mechanical constraints. In addition, the PGs, DNA and collagen content of the collagen gels was monitored over time. All three PGs previously found in heart valves (decorin, biglycan and versican) were present in the collagen gels and the conditioned medium. Compared to unconstrained gels, the constrained collagen gels (whether biaxially or uniaxially loaded) retained more decorin and biglycan but less versican. However, the conditioned medium from constrained collagen gels contained higher amounts of all three PGs than did medium from unconstrained gels. Constrained collagen gels containing leaflet cells retained more decorin and biglycan than did those containing chordal cells. DNA content was maintained early in the culture period but was reduced by 55-80% after 7 days, whereas PG synthesis increased over time. At the end of the culture period, the cell density was highest in the biaxial region of gels seeded with leaflet cells. In contrast, collagen content in both constrained and unconstrained gels remained consistent over culture duration. This study provides valuable information about the role of applied loading on proteoglycan segregation, which should aid in tissue engineering applications and for understanding valve biology and pathology.
机译:二尖瓣的不同负载区域包含不同数量和类型的蛋白聚糖(PGs)。在异常负荷和疾病条件下,这些PG曲线会发生变化。我们开发了一个体外三维模型来分析由猪二尖瓣(叶或腱索)的不同区域分离并受到双轴或单轴机械约束的瓣膜间质细胞(VIC)分泌的PG。另外,随时间监测胶原凝胶的PG,DNA和胶原含量。先前在心脏瓣膜中发现的所有三种PG(decorin,biglycan和versican)都存在于胶原蛋白凝胶和条件培养基中。与无约束力的凝胶相比,受约束的胶原蛋白凝胶(无论是双轴还是单轴加载)保留了更多的香精蛋白和双糖链蛋白聚糖,而versican较少。但是,来自约束胶原蛋白凝胶的条件培养基所含的所有三种PG的含量均高于来自不受约束蛋白凝胶的条件培养基。受约束的含有小叶细胞的胶原蛋白凝胶比含有软骨细胞的胶原蛋白保留了更多的decorin和biglycan。 DNA含量在培养初期得以保持,但7天后降低了55-80%,而PG合成则随时间增加。在培养期结束时,在接种有小叶细胞的凝胶的双轴区域中,细胞密度最高。相反,受约束和不受约束的凝胶中的胶原含量在培养持续时间内保持一致。这项研究提供了有关加载负荷对蛋白聚糖分离的作用的有价值的信息,这应该有助于组织工程应用以及理解瓣膜生物学和病理学。

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