Biologically Inspired Smart Release System Based on 3D Bioprinted Perfused Scaffold for Vascularized Tissue Regeneration.

Biologically Inspired Smart Release System Based on 3D Bioprinted Perfused Scaffold for Vascularized Tissue Regeneration.
复制标题

DOI:
10.1002/advs.201600058
复制
发表时间:
2016-08
期刊:
影响因子:
15.1
通讯作者:
Zhang, Lijie Grace
Zhang, Lijie Grace
中科院分区:
材料科学1区
文献类型:
--
作者:
Cui, Haitao;Zhu, Wei;Holmes, Benjamin;Zhang, Lijie Grace

文献摘要

参考文献

被引文献

相似文献

A critical challenge to the development of large‐scale artificial tissue grafts for defect reconstruction is vascularization of the tissue construct. As an emerging tissue/organ manufacturing technique, 3D bioprinting offers great precision in controlling the internal architecture of a scaffold with preferable mechanical strength and printing complicated microstructures comparable to native tissue. However, current bioprinting techniques still exhibit difficulty in achieving biomimetic nano resolution and cooperating with bioactive spatiotemporal signals. In this study, a comprehensive design of engineered vascularized bone construct is presented for the first time by integrating biomimetic 3D bioprinted fluid perfused microstructure with biologically inspired smart release nanocoating, which is regarded as an aspiring concept combining engineering, biological, and material science. In this biologically inspired design, angiogenesis and osteogenesis are successively induced through a matrix metalloprotease 2 regulative mechanism by delivering dual growth factors with sequential release in spatiotemporal coordination. Availability of this system is evaluated in dynamic culture condition, which is similar to fluid surrounding in vivo, as an alternative animal model study. Results, particularly from co‐cultured dynamically samples demonstrate excellent bioactivity and vascularized bone forming potential of nanocoating modified 3D bioprinted scaffolds for human bone marrow mesenchymal stem cells and human umbilical vein endothelial cells.
DOI: 10.1111/jcmm.12569
发表时间: 2015-05
影响因子: 5.3
作者:
Roux BM;Cheng MH;Brey EM
通讯作者: Brey EM
DOI: 10.1088/0957-4484/27/6/064001
发表时间: 2016-02-12
期刊: Nanotechnology
影响因子: 3.5
作者:
Holmes B;Bulusu K;Plesniak M;Zhang LG
通讯作者: Zhang LG
DOI: 10.1016/j.actbio.2015.11.007
发表时间: 2016-01
期刊: Acta biomaterialia
影响因子: 9.7
作者:
Mitchell AC;Briquez PS;Hubbell JA;Cochran JR
通讯作者: Cochran JR
DOI: 10.1021/bm5007695
发表时间: 2014-08-01
期刊: BIOMACROMOLECULES
影响因子: 6.2
作者:
Cui, Haitao;Wang, Yu;Chen, Xuesi
通讯作者: Chen, Xuesi
DOI: 10.1089/3dp.2015.0001
发表时间: 2015-06-01
影响因子: 3.1
作者:
Jariwala, Shailly H.;Lewis, Gregory S.;Donahue, Henry J.
通讯作者: Donahue, Henry J.