首页 | 本学科首页   官方微博 | 高级检索  
     检索      


Hydrogels Containing Gradients in Vascular Density Reveal Dose-Dependent Role of Angiocrine Cues on Stem Cell Behavior
Authors:Mai T Ngo  Victoria R Barnhouse  Aidan E Gilchrist  Bhushan P Mahadik  Christine J Hunter  Joy N Hensold  Nathan Petrikas  Brendan A C Harley
Institution:1. Dept. Chemical and Biomolecular Engineering, University of Illinois at Urbana-Champaign, Urbana, IL, 61801 USA;2. Dept. Bioengineering, University of Illinois at Urbana-Champaign, Urbana, IL, 61801 USA;3. Dept. Materials Science and Engineering, University of Illinois at Urbana-Champaign, Urbana, IL, 61801 USA
Abstract:Biomaterials that replicate patterns of microenvironmental signals from the stem cell niche offer the potential to refine platforms to regulate stem cell behavior. While significant emphasis has been placed on understanding the effects of biophysical and biochemical cues on stem cell fate, vascular-derived or angiocrine cues offer an important alternative signaling axis for biomaterial-based stem cell platforms. Elucidating dose-dependent relationships between angiocrine cues and stem cell fate are largely intractable in animal models and 2D cell cultures. In this study, microfluidic mixing devices are leveraged to generate 3D hydrogels containing lateral gradients in vascular density alongside murine hematopoietic stem cells (HSCs). Regional differences in vascular density can be generated via embossed gradients in cell, matrix, or growth factor density. HSCs co-cultured alongside vascular gradients reveal spatial patterns of HSC phenotype in response to angiocrine signals. Notably, decreased Akt signaling in high vessel density regions led to increased expansion of lineage-positive hematopoietic cells. This approach offers a combinatorial tool to rapidly screen a continuum of microenvironments with varying vascular, biophysical, and biochemical cues to reveal the influence of local angiocrine signals on HSC fate.
Keywords:gradients  hydrogels  microfluidics  patterning  stem cells  vascularization
设为首页 | 免责声明 | 关于勤云 | 加入收藏

Copyright©北京勤云科技发展有限公司  京ICP备09084417号