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Human airway smooth muscle maintain in situ cell orientation and phenotype when cultured on aligned electrospun scaffolds

机译:当在对齐的电纺支架上培养时人气道平滑肌保持原位细胞方向和表型

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摘要

Human airway smooth muscle (HASM) contraction plays a central role in regulating airway resistance in both healthy and asthmatic bronchioles. In vitro studies that investigate the intricate mechanisms that regulate this contractile process are predominantly conducted on tissue culture plastic, a rigid, 2D geometry, unlike the 3D microenvironment smooth muscle cells are exposed to in situ. It is increasingly apparent that cellular characteristics and responses are altered between cells cultured on 2D substrates compared with 3D topographies. Electrospinning is an attractive method to produce 3D topographies for cell culturing as the fibers produced have dimensions within the nanometer range, similar to cells' natural environment. We have developed an electrospun scaffold using the nondegradable, nontoxic, polymer polyethylene terephthalate (PET) composed of uniaxially orientated nanofibers and have evaluated this topography's effect on HASM cell adhesion, alignment, and morphology. The fibers orientation provided contact guidance enabling the formation of fully aligned sheets of smooth muscle. Moreover, smooth muscle cells cultured on the scaffold present an elongated cell phenotype with altered contractile protein levels and distribution. HASM cells cultured on this scaffold responded to the bronchoconstrictor bradykinin. The platform presented provides a novel in vitro model that promotes airway smooth muscle cell development toward a more in vivo-like phenotype while providing topological cues to ensure full cell alignment.
机译:人的气道平滑肌(HASM)收缩在调节健康和哮喘性细支气管中的气道阻力中起着核心作用。体外研究可调控这种收缩过程的复杂机制,主要是在组织培养塑料(一种刚性的2D几何形状)上进行的,这与3D微环境的平滑肌细胞原位接触不同。越来越明显的是,与3D地形图相比,在2D基板上培养的细胞之间的细胞特性和响应发生了变化。电纺丝是生产用于细胞培养的3D形貌的一种有吸引力的方法,因为所产生的纤维的尺寸在纳米范围内,类似于细胞的自然环境。我们已经开发了一种使用不可降解,无毒的聚对苯二甲酸乙二醇酯(PET)制成的电纺支架,该聚对苯二甲酸乙二醇酯由单轴取向的纳米纤维组成,并且已经评估了这种形貌对HASM细胞粘附,排列和形态的影响。纤维的取向提供了接触引导,从而能够形成完全对齐的平滑肌片。而且,在支架上培养的平滑肌细胞呈现出伸长的细胞表型,其收缩蛋白水平和分布改变。在该支架上培养的HASM细胞对支气管收缩缓激肽有反应。提出的平台提供了一种新型的体外模型,该模型可促进气道平滑肌细胞向更像体内的表型发展,同时提供拓扑线索以确保细胞完全对齐。

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