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Expression of Versican Isoform V3 in the Absence of Ascorbate Improves Elastogenesis in Engineered Vascular Constructs

机译:在没有抗坏血酸的情况下,在没有抗坏血酸的情况下的表达改善了工程化血管构建体中的弹性发生

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摘要

A promising method to fabricate tissue-engineered blood vessels is to have cells synthesize the supportive extracellular matrix scaffold of the tissue-engineered blood vessel; however, a shortcoming of this method has been limited elastogenesis. Previously, we found that arterial smooth muscle cells (ASMCs) produced significant quantities of elastin when transduced with splice variant 3 of the proteoglycan versican (V3). In this study, we assessed whether elastogenesis and the structural properties of entirely cell-derived engineered vascular constructs could be improved by the incorporation of V3-transduced rat ASMCs. After 18 weeks of culture, V3 constructs had more tropoelastin, more elastin crosslinks, higher burst strengths, greater elasticity, and thicker collagen fiber bundles compared with empty-vector controls. The expression of elastin and elastin-associated proteins was increased in V3 and control ASMC monolayer cultures when ascorbic acid, which promotes collagen synthesis and inhibits elastogenesis, was removed from the medium. Engineered vascular constructs with ascorbate withdrawn for 14 weeks, after an initial 4-week exposure to ascorbate, exhibited increased elastin, desmosine content, elasticity, and burst strength compared with constructs exposed continuously to ascorbate. Our results show that V3 coupled with limited exposure to ascorbate promotes elastogenesis and improves the structural and functional properties of engineered vascular constructs.
机译:有希望的制造组织工程血管的方法是细胞合成组织工程血管的支撑细胞外基质支架;然而,这种方法的缺点是弹性发生的限制。以前,我们发现动脉平滑肌细胞(Asmcs)在用蛋白多糖丙烷(V3)的剪接变体3转导时产生显着的弹性蛋白。在该研究中,我们评估了是否通过掺入V3转导的大鼠ASMC来改善弹性发生和完全细胞衍生的血管构建体的结构性能。在培养18周后,V3构建体具有更高的流胚,更高的弹性蛋白交联,更高的突发强度,更高的弹性,更大的弹性和较厚的胶原纤维束与空载体对照相比。从培养基中除去促进胶原蛋白合成并抑制弹性发生时,Elastin和Elastin相关蛋白的表达在V3中升高并控制Asmc单层培养物。在初始4周暴露于抗坏血酸的初始4周暴露后,抗坏血酸的工程化血管构建体在抗坏血酸的初始暴露后,与连续暴露于抗坏血酸的构建体表现出增加的弹性蛋白,脱染液含量,弹性和突发强度。我们的研究结果表明,V3与抗坏血酸的有限接触促进弹性发生并提高了工程化血管构建体的结构和功能性。

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