首页> 美国卫生研究院文献>Journal of Tissue Engineering >Making microenvironments: A look into incorporating macromolecular crowding into in vitro experiments to generate biomimetic microenvironments which are capable of directing cell function for tissue engineering applications
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Making microenvironments: A look into incorporating macromolecular crowding into in vitro experiments to generate biomimetic microenvironments which are capable of directing cell function for tissue engineering applications

机译:制作微环境:将大分子拥挤纳入体外实验中以生成仿生微环境的研究该环境能够指导组织工程应用中的细胞功能

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摘要

Biomimetic microenvironments are key components to successful cell culture and tissue engineering in vitro. One of the most accurate biomimetic microenvironments is that made by the cells themselves. Cell-made microenvironments are most similar to the in vivo state as they are cell-specific and produced by the actual cells which reside in that specific microenvironment. However, cell-made microenvironments have been challenging to re-create in vitro due to the lack of extracellular matrix composition, volume and complexity which are required. By applying macromolecular crowding to current cell culture protocols, cell-made microenvironments, or cell-derived matrices, can be generated at significant rates in vitro. In this review, we will examine the causes and effects of macromolecular crowding and how it has been applied in several in vitro systems including tissue engineering.
机译:仿生微环境是体外成功进行细胞培养和组织工程的关键组成部分。最精确的仿生微环境之一是由细胞自身制造的。细胞制造的微环境与体内状态最相似,因为它们是细胞特异性的,并由驻留在该特定微环境中的实际细胞产生。然而,由于缺少所需的细胞外基质组成,体积和复杂性,细胞制成的微环境在体外重现挑战。通过将大分子拥挤应用于当前的细胞培养方案,可以在体外以显着的速率生成细胞制成的微环境或细胞衍生的基质。在这篇综述中,我们将研究大分子拥挤的原因和影响,以及如何将其应用于包括组织工程在内的多个体外系统。

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