Tobin E. Brown, Benjamin J. Carberry, Brady T. Worrel, Oksana Y. Dudaryeva, Matthew K. McBride, Christopher N. Bowman, Kristi S. Anseth
Index: 10.1016/j.biomaterials.2018.03.060
Full Text: HTML
The extracellular matrix (ECM) constitutes a viscoelastic environment for cells. A growing body of evidence suggests that the behavior of cells cultured in naturally-derived or synthetic ECM mimics is influenced by the viscoelastic properties of these substrates. Adaptable crosslinking strategies provide a means to capture the viscoelasticity found in native soft tissues. In this work, we present a covalent adaptable hydrogel based on thioester exchange as a biomaterial for the in vitro culture of human mesenchymal stem cells. Through control of pH, gel stoichiometry, and crosslinker structure, viscoelastic properties in these crosslinked networks can be modulated across several orders of magnitude. We also propose a strategy to alter these properties in existing networks by the photo-uncaging of the catalyst 4-mercaptophenylacetic acid. Mesenchymal stem cells encapsulated in thioester hydrogels are able to elongate in 3D and display increased proliferation relative to those in static networks.
pH protective Y1 receptor ligand functionalized antiphagocyt...
2018-04-04 [10.1016/j.biomaterials.2018.04.002] |
PLGA/β-TCP composite scaffold incorporating salvianolic acid...
2018-04-04 [10.1016/j.biomaterials.2018.04.004] |
3D printing of a lithium-calcium-silicate crystal bioscaffol...
2018-04-04 [10.1016/j.biomaterials.2018.04.005] |
Second near-infrared emissive lanthanide complex for fast re...
2018-04-03 [10.1016/j.biomaterials.2018.03.041] |
Combination cancer treatment through photothermally controll...
2018-04-03 [10.1016/j.biomaterials.2018.03.058] |
Home | MSDS/SDS Database Search | Journals | Product Classification | Biologically Active Compounds | Selling Leads | About Us | Disclaimer
Copyright © 2024 ChemSrc All Rights Reserved