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Enhanced In Vivo Delivery of Stem Cells using Microporous Annealed Particle Scaffolds.

Small. 2019; 
Koh Jaekyung,Griffin Donald R,Archang Maani M,Feng An-Chieh,Horn Thomas,Margolis Michael,Zalazar David,Segura Tatiana,Scumpia Philip O,Di Carlo
Products/Services Used Details Operation
Catalog Peptides Q-peptide (Ac-NQEQVSPLGGERCG-NH2) at a final concentration of 250 × 10−6 m and with RGD peptide (Ac-RGDSPGERCG-NH2) at a final concentration of 500 × 10−6 m or 2.5 × 10−3 m and ii) an 8 × 10−3 m di-cysteine modified Matrix Metalloprotease (MMP) (Ac-GCRDGPQGIWGQDRCG-NH2) (Genscript) Get A Quote

摘要

Delivery to the proper tissue compartment is a major obstacle hampering the potential of cellular therapeutics for medical conditions. Delivery of cells within biomaterials may improve localization, but traditional and newer void-forming hydrogels must be made in advance with cells being added into the scaffold during the manufacturing process. Injectable, in situ cross-linking microporous scaffolds are recently developed that demonstrate a remarkable ability to provide a matrix for cellular proliferation and growth in vitro in three dimensions. The ability of these scaffolds to deliver cells in vivo is currently unknown. Herein, it is shown that mesenchymal stem cells (MSCs) can be co-injected locally wi... More

关键词

hydrogel microparticles,injectable microporous scaffolds,microfluidics,stem cell delivery,tissue enginee