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2D- and 3D-cultures of human trabecular meshwork cells: A preliminary assessment of an in vitro model for glaucoma study

机译:小梁网状细胞的2D和3D培养:对青光眼研究的体外模型的初步评估

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摘要

A physiologically relevant in vitro human-based model could be the ‘gold standard’ to clarify the pathological steps involved in glaucoma onset. In this regard, human 3D cultures may represent an excellent starting point to achieve this goal. Indeed, the 3D matrix allows to re-create the in vivo-like tissue architecture, maintaining its functionality and cellular behaviour, compared to the 2D model. Thus, we propose a comparison between the 2D and 3D in vitro models of human trabecular meshwork cells in terms of cellular responses after chronic stress exposure. Our results showed that 3D-cells are more sensitive to intracellular reactive oxidative specie production induced by hydrogen peroxide treatment, compared to 2D cultures. Additionally, in 3D cultures a more accurate regulation of the apoptosis trigger and cell adaptation mechanisms was detected than in 2D models. In line with these findings, the 3D-HTMC model shows the ability to better mimic the in vivo cell behaviour in adaptive responses to chronic oxidative stress than 2D.
机译:生理相关的体外人本模型可能是“金标准”,以阐明与青光眼发作有关的病理步骤。在这方面,人类3D文化可能是实现此目标的绝佳起点。实际上,与2D模型相比,3D矩阵允许重新创建类似体内的组织架构,并保持其功能和细胞行为。因此,我们提出了在慢性应激暴露后人小梁网状细胞的2D和3D体外模型之间的细胞反应方面的比较。我们的结果表明,与2D培养相比,3D细胞对由过氧化氢处理诱导的细胞内反应性氧化物质产生更为敏感。此外,与2D模型相比,在3D培养物中检测到更准确的凋亡触发和细胞适应机制调节。与这些发现一致,3D-HTMC模型显示了在对慢性氧化应激的适应性反应中比2D更好地模仿体内细胞行为的能力。

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