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Consideration of the Mechanical Properties of Hydrogels for Brain Tissue Engineering and Brain-on-a-chip
被引:0
|作者:
Hong Nam Kim
Nakwon Choi
机构:
[1] Brain Science Institute,Center for BioMicrosystems
[2] Korea Institute of Science and Technology (KIST),Division of Bio
[3] KIST School,Medical Science & Technology
[4] Korea University of Science and Technology,undefined
来源:
BioChip Journal
|
2019年
/
13卷
关键词:
Hydrogel;
Stiffness;
Viscoelasticity;
Degradability;
Cell preference;
D O I:
暂无
中图分类号:
学科分类号:
摘要:
To present a more physiologically relevant microenvironment for cells, hydrogel-based threedimensional culture platforms have been widely adopted. As noted by multiple pioneering reports, the neural cells are sensitive with the change of mechanical properties of the microenvironment. Therefore, in the context of brain tissue engineering and brain-on-a-chip, there is a need to consider the brain-tissue-specific mechanical properties of hydrogels. In this review, we overview the influence the mechanical properties of hydrogel on the behavior of brain tissue cells. For this purpose, in addition to the stiffness, the viscoelasticity and degradability of hydrogels are considered to be mechanical cues, and we summarize how those mechanical properties can affect cell behavior, such as viability, proliferation, differentiation, and spreading. Consideration of the brain tissue-specific mechanical microenvironment may guide the design of 3D cell culture platforms for brain tissue engineering and brain- on-a-chip.
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页码:8 / 19
页数:11
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