Manipulation of miRNA activity accelerates osteogenic differentiation of hMSCs in engineered 3D scaffolds Journal Article
Overview
publication date
- April 1, 2012
has subject area
- Acids, Acyclic - Ascorbic Acid
- Alkaline Phosphatase
- Bioengineering - Tissue Engineering
- Biological Factors - Calcium
- Biomarkers
- Carbohydrates - Ascorbic Acid
- Cell Differentiation
- Cells, Cultured
- Culture Techniques - Tissue Engineering
- Elements - Calcium
- Equipment and Supplies - Culture Media
- Equipment and Supplies - Tissue Scaffolds
- Extracellular Matrix Proteins - Collagen
- Gene Transfer Techniques - Transfection
- Humans
- Hydroxy Acids - Ascorbic Acid
- Laboratory Chemicals - Culture Media
- Macromolecular Substances - Collagen
- Metals - Calcium
- Morphogenesis - Osteogenesis
- Multipotent Stem Cells - Mesenchymal Stem Cells
- Musculoskeletal Physiological Phenomena - Osteogenesis
- Nucleic Acids, Nucleotides, and Nucleosides - MicroRNAs
- Pregnadienetriols - Dexamethasone
- Prostheses and Implants - Tissue Scaffolds
- RNA - MicroRNAs
- RNA, Small Untranslated - MicroRNAs
- Recombination, Genetic - Transfection
- Steroids, Fluorinated - Dexamethasone
- Stromal Cells - Mesenchymal Stem Cells
has restriction
- gold
Date in CU Experts
- September 6, 2013 11:56 AM
Full Author List
- Mariner PD; Johannesen E; Anseth KS
author count
- 3
citation count
- 43
published in
Other Profiles
International Standard Serial Number (ISSN)
- 1932-6254
Digital Object Identifier (DOI)
Additional Document Info
start page
- 314
end page
- 324
volume
- 6
issue
- 4