作者
Sharon Fleischer, Assaf Shapira, Ron Feiner, Tal Dvir
发表日期
2017/2/21
期刊
Proceedings of the National Academy of Sciences
卷号
114
期号
8
页码范围
1898-1903
出版商
National Academy of Sciences
简介
In cardiac tissue engineering cells are seeded within porous biomaterial scaffolds to create functional cardiac patches. Here, we report on a bottom-up approach to assemble a modular tissue consisting of multiple layers with distinct structures and functions. Albumin electrospun fiber scaffolds were laser-patterned to create microgrooves for engineering aligned cardiac tissues exhibiting anisotropic electrical signal propagation. Microchannels were patterned within the scaffolds and seeded with endothelial cells to form closed lumens. Moreover, cage-like structures were patterned within the scaffolds and accommodated poly(lactic-co-glycolic acid) (PLGA) microparticulate systems that controlled the release of VEGF, which promotes vascularization, or dexamethasone, an anti-inflammatory agent. The structure, morphology, and function of each layer were characterized, and the tissue layers were grown separately in …
引用总数
2017201820192020202120222023202441826182628179
学术搜索中的文章
S Fleischer, A Shapira, R Feiner, T Dvir - Proceedings of the National Academy of Sciences, 2017