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Glass wool as a model scaffold for 3D culture of uterine smooth muscle cells

机译:玻璃棉作为子宫平滑肌细胞3D培养的模型支架

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Like most cells, uterine smooth muscle cells display different differentiation and proliferation characteristics under 2-D and 3-D culture conditions. To further understand the culture behavior of uterine smooth muscle cells, we sought ways to control media flow, scaffold density, and local environmental conditions known to influence cell development. We selected hTERT immortalized myometrial smooth muscle cells (hTERT) as a cell line model for uterine smooth muscle due to the stability and consistent proliferation properties. To control for the structural factors of the scaffold, we investigated growth on glass wool as a model. Glass wool may enhance nuclear pleomorphism of mesothelial cells , however we propose that glass wool offers three key advantages: 1. The known adhesion characteristics of glass; 2. Order-of-magnitude (although not precise) control over mesh dimensions; 3. Absolute structural and chemical stability over time. We found hTERT cells adhered and proliferated on glass wool fibers. Removal of the cells in high yield from the glass wool remains a challenge. However, on a per-cell basis, assessments of protein density, proliferation markers, and contraction-associated proteins are feasible under 3-D culture conditions designed to systematically modulate cellular proliferation/differentiation. While glass wool will not be the ideal scaffold choice for creation of an implantable engineered tissue, it allows the study of cellular responses without the confounding effects of time-dependent variations of cell-scaffold interactions, and hence allows separation of these key experimental variables. This information will provide the basis for understanding the confounding effects of non-glass substrates in long-term 3-D culture.
机译:像大多数细胞一样,子宫平滑肌细胞在2-D和3-D培养条件下表现出不同的分化和增殖特性。为了进一步了解子宫平滑肌细胞的培养行为,我们寻求了控制培养基流动,支架密度和已知影响细胞发育的局部环境条件的方法。由于稳定性和一致的增殖特性,我们选择了hTERT永生化的子宫肌层平滑肌细胞(hTERT)作为子宫平滑肌的细胞系模型。为了控制支架的结构因素,我们研究了玻璃棉作为模型的生长。玻璃棉可以增强间皮细胞的核多态性,但是我们建议玻璃棉具有三个主要优势:1.玻璃的已知粘附特性; 2.对网格尺寸的数量级(尽管不是精确的)控制; 3.随时间推移的绝对结构和化学稳定性。我们发现hTERT细胞在玻璃棉纤维上粘附并增殖。从玻璃棉中以高产率去除细胞仍然是一个挑战。但是,在每个细胞的基础上,在旨在系统地调节细胞增殖/分化的3-D培养条件下,评估蛋白密度,增殖标记和与收缩相关的蛋白质是可行的。尽管玻璃棉将不是创建可植入工程组织的理想支架选择,但它可以研究细胞反应,而不会引起细胞支架相互作用的时间依赖性变化的混杂影响,因此可以分离这些关键的实验变量。这些信息将为理解非玻璃基质在长期3-D培养中的混杂效应提供基础。

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