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Engineering Biomaterials for Enhanced Tissue Regeneration
被引:34
|
作者
:
Abbott R.D.
论文数:
0
引用数:
0
h-index:
0
机构:
Tufts University, 4 Colby St., Medford, 02155, MA
Tufts University, 4 Colby St., Medford, 02155, MA
Abbott R.D.
[
1
]
Kaplan D.L.
论文数:
0
引用数:
0
h-index:
0
机构:
Tufts University, 4 Colby St., Medford, 02155, MA
Tufts University, 4 Colby St., Medford, 02155, MA
Kaplan D.L.
[
1
]
机构
:
[1]
Tufts University, 4 Colby St., Medford, 02155, MA
来源
:
Current Stem Cell Reports
|
2016年
/ 2卷
/ 2期
基金
:
美国国家卫生研究院;
关键词
:
Biodegradable;
Biomaterial;
Scaffold;
Tissue engineering;
Tissue regeneration;
D O I
:
10.1007/s40778-016-0039-3
中图分类号
:
学科分类号
:
摘要
:
The formation of artificial organs with tissue engineering techniques is necessary to address the growing disparity between the supply and need for donor organs. For use in tissue engineering regenerative applications, biomaterials should be biocompatible, porous (to allow cellular infiltration, nutrient transport and waste removal), mechanically tunable (to match and maintain the intrinsic mechanical properties of the tissue through the healing process), biodegradable (to allow the tissue to develop as the material degrades), reproducible, easily prepared, and cell/tissue compatible. This review will focus on various biomaterial design considerations and their effect on regenerative outcomes. By adjusting material designs, including pore size and degradation kinetics, in combination with functionalization with cell- and tissue-specific factors, intrinsic properties of tissue constructs can be controlled to enhance remodeling and functional outcomes. © 2016, Springer International Publishing AG.
引用
收藏
页码:140 / 146
页数:6
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