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用于三维细胞培养的可调谐动态软材料。

Tunable and dynamic soft materials for three-dimensional cell culture.

作者信息

Rehmann Matthew S, Kloxin April M

机构信息

Department of Chemical & Biomolecular Engineering, University of Delaware, Newark, DE 19716.

出版信息

Soft Matter. 2013 Aug 7;9(29):6737-6746. doi: 10.1039/C3SM50217A.

Abstract

The human body is complex and hierarchically structured, composed of cells residing within the extracellular matrix (ECM) of tissues that are assembled into organs, all working together to complete a given function. One goal of current biomaterials research is to capture some of this complexity outside of the body for understanding the underlying biology of development, repair, and disease and to devise new strategies for regenerative medicine or disease treatment. Polymeric materials have arisen as powerful tools to mimic the native ECM, giving experimenters a way to capture key aspects of the native cellular environment outside of the body. In particular, dynamic materials allow changes in the properties of these ECM mimics during an experiment, affording an additional degree of control for the experimenter. In this , the basic cellular processes of cell migration, proliferation, and differentiation will be overviewed to motivate design considerations for polymeric ECM mimics, and examples will be given of how classes of dynamic materials are being used to study each cellular process.

摘要

人体结构复杂且具有层次结构,由位于组织细胞外基质(ECM)中的细胞组成,这些组织组装成器官,所有器官协同工作以完成特定功能。当前生物材料研究的一个目标是在体外捕捉这种复杂性的一部分,以了解发育、修复和疾病的潜在生物学机制,并设计再生医学或疾病治疗的新策略。聚合物材料已成为模拟天然细胞外基质的有力工具,为实验人员提供了一种在体外捕捉天然细胞环境关键方面的方法。特别是,动态材料允许在实验过程中改变这些细胞外基质模拟物的性质,为实验人员提供了额外的控制程度。在此,将概述细胞迁移、增殖和分化的基本细胞过程,以激发对聚合物细胞外基质模拟物的设计考虑,并举例说明如何使用各类动态材料来研究每个细胞过程。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3b45/4288790/362d13244df0/c3sm50217a-f1.jpg

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