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首页> 外文期刊>Physiological Research >The Role of Smooth Muscle Cells in Vessel Wall Pathophysiology and Reconstruction Using Bioactive Synthetic Polymers
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The Role of Smooth Muscle Cells in Vessel Wall Pathophysiology and Reconstruction Using Bioactive Synthetic Polymers

机译:平滑肌细胞在血管壁病理生理和使用生物活性合成聚合物的重建中的作用

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摘要

This review summarizes recent trends in the construction of bioartificial vascular replacements, i.e. hybrid grafts containing synthetic polymeric scaffolds and cells. In these advanced replacements, vascular smooth muscle cells (VSMC) should be considered as a physiological component, although it is known that activation of the migration and proliferation of VSMC plays an important role in the onset and development of vascular diseases, and also in restenosis of currently used vascular grafts. Therefore, in novel bioartificial vascular grafts, VSMCs should be kept in quiescent mature contractile phenotype. This can be achieved by (1) appropriate physical and chemical properties of the material, such as its chemical composition, polarity, wettability, surface roughness and topography, electrical charge and conductivity, functionalization with biomolecules and mechanical properties, (2) appropriate cell culture conditions, such as composition of cell culture media and dynamic load, namely cyclic strain, and (3) the presence of a confluent, mature, semipermeable, non-thrombogenic and non-immunogenic endothelial cell (EC) barrier, covering the luminal surface of the graft and separating the VSMCs from the blood. Both VSMCs and ECs can also be differentiated from stem and progenitor cells of various sources. In the case of degradable scaffolds, the material will gradually be removed by the cells and will be replaced by their own new extracellular matrix. Thus, the material component in advanced blood vessel substitutes acts as a temporary scaffold that promotes regeneration of the damaged vascular tissue.
机译:这篇综述总结了生物人工血管替代物(即包含合成聚合物支架和细胞的杂种移植物)构建的最新趋势。在这些先进的替代品中,应将血管平滑肌细胞(VSMC)视为一种生理成分,尽管众所周知,激活VSMC的迁移和增殖在血管疾病的发作和发展以及再狭窄中起着重要作用。当前使用的血管移植物。因此,在新颖的生物人工血管移植物中,VSMC应保持在静止的成熟收缩表型中。这可以通过(1)材料的适当物理和化学特性来实现,例如其化学组成,极性,润湿性,表面粗糙度和形貌,电荷和电导率,具有生物分子的功能化和机械特性,(2)适当的细胞培养条件,例如细胞培养基的组成和动态负荷(即循环应变),以及(3)存在覆盖,覆盖,但未成熟的内皮细胞(EC)融合,成熟,半透性,无血栓形成和非免疫原性的内皮细胞(EC)屏障。移植并从血液中分离VSMC。 VSMC和EC也可以与各种来源的干细胞和祖细胞区分开。在可降解支架的情况下,该物质将逐渐被细胞去除,并被其自身新的细胞外基质所替代。因此,高级血管替代物中的物质成分充当促进受损血管组织再生的临时支架。

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