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An integrated global regulatory network of hematopoietic precursor cell self-renewal and differentiation


Yanan You, Raquel Cuevas-Diaz Duran, Lihua Jiang, Xiaomin Dong, Shan Zong, Michael Snyder and Jia Qian Wu
Integr. Biol., 2018,10, 390-405

Abstract

We integrated datasets from transcriptomic, proteomic, epigenomic, and protein–protein interaction levels to build a global regulatory network to better characterize the mechanisms underlying HSPCs self-renewal.


Different angiogenesis modes and endothelial responses in implanted porous biomaterials


Kuihua Zhan, Lun Bai, Guangqian Wang, Baoqi Zuo, Liang Xie and Xinhong Wang
Integr. Biol., 2018,10, 406-418

Abstract

Sprouting makes avascular tissues vascularized, and splitting can readily increase the vascular density in the vascularized tissues.


Micropatterned biofunctional lubricant-infused surfaces promote selective localized cell adhesion and patterning


Sara M. Imani, Maryam Badv, Amid Shakeri, Hanie Yousefi, Darren Yip, Claire Fine and Tohid F. Didar
Lab Chip, 2019,19, 3228-3237

Abstract

Micropatterned lubricant-infused biofunctional surfaces exhibit biofunctionality and omniphobicity simultaneously which leads to targeted cell attachment and alignment, both in surfaces and in microfluidic devices.


Characterization of a novel decellularized bone marrow scaffold as an inductive environment for hematopoietic stem cells


Juares E. Romero Bianco, Renata Giardini Rosa, Ada Congrains-Castillo, Paulo P. Joazeiro, Stephen D. Waldman, Joanna F. Weber and Sara Teresinha Olalla Saad
Biomater. Sci., 2019,7, 1516-1528

Abstract

Due to the increasing demand for a bone marrow study model, we developed a natural scaffold from decellularized bovine bone marrow (DeBM).


Plasma-induced covalent immobilization and patterning of bioactive species in microfluidic devices


Amid Shakeri, Sara M. Imani, Eric Chen, Hanie Yousefi, Raed Shabbir and Tohid F. Didar
Lab Chip, 2019,19, 3104-3115

Abstract

Here, we present a straightforward technique to create bio-functional microfluidic channels using CO2 plasma to induce both carboxylic and hydroxyl groups onto the channel surface.


Chapter 6
Clinical Trials of Stem Cell Therapies Using Biomaterials


Biomaterial Control of Therapeutic Stem Cells, 2019, 328-373

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