Matrix elasticity of void-forming hydrogels controls transplanted-stem-cell-mediated bone formation

N Huebsch, E Lippens, K Lee, M Mehta, ST Koshy… - Nature materials, 2015 - nature.com
The effectiveness of stem cell therapies has been hampered by cell death and limited
control over fate. These problems can be partially circumvented by using macroporous …

Matrix elasticity of void-forming hydrogels controls transplanted-stem-cell-mediated bone formation

N Huebsch, E Lippens, K Lee, M Mehta… - NATURE …, 2015 - scholarworks.bwise.kr
The effectiveness of stem cell therapies has been hampered by cell death and limited
control over fate. These problems can be partially circumvented by using macroporous …

[PDF][PDF] Matrix Elasticity of Void-Forming Hydrogels Controls Transplanted-Stem-Cell-Mediated Bone Formation

N Huebsch, E Lippens, K Lee, M Mehta… - Nature … - backoffice.biblio.ugent.be
Matrix Elasticity of Void-Forming Hydrogels Controls Transplanted Stem Cell-Mediated
Bone Formation Page 1 Matrix elasticity of void-forming hydrogels controls transplanted-stem-cell-mediated …

Matrix elasticity of void-forming hydrogels controls transplanted-stem-cell-mediated bone formation.

N Huebsch, E Lippens, K Lee, M Mehta… - Nature …, 2015 - search.ebscohost.com
The effectiveness of stem cell therapies has been hampered by cell death and limited
control over fate. These problems can be partially circumvented by using macroporous …

[引用][C] Matrix elasticity of void-forming hydrogels controls transplanted-stem-cell-mediated bone formation

N Huebsch, E Lippens, K Lee, M Mehta, ST Koshy… - Nature Materials, 2015 - cir.nii.ac.jp
Matrix elasticity of void-forming hydrogels controls transplanted-stem-cell-mediated bone
formation | CiNii Research CiNii 国立情報学研究所 学術情報ナビゲータ[サイニィ] 詳細へ移動 検索 …

Matrix Elasticity of Void-Forming Hydrogels Controls Transplanted Stem Cell-Mediated Bone Formation

N Huebsch, E Lippens, K Lee, M Mehta… - Nature …, 2015 - dash.harvard.edu
The effectiveness of stem-cell therapies has been hampered by cell death and limited
control over fate1. These problems can be partially circumvented by using macroporous …

[PDF][PDF] Matrix Elasticity of Void-Forming Hydrogels Controls Transplanted Stem Cell-Mediated Bone Formation

DE Mammoto, GN Duda, DJ Mooney - Nat Mater, 2015 - core.ac.uk
Matrix Elasticity of Void-Forming Hydrogels Controls Transplanted Stem Cell-Mediated Bone
Formation Page 1 Matrix Elasticity of Void-Forming Hydrogels Controls Transplanted Stem …

Matrix elasticity of void-forming hydrogels controls transplanted-stem-cell-mediated bone formation.

N Huebsch, E Lippens, K Lee, M Mehta, ST Koshy… - Nature …, 2015 - europepmc.org
The effectiveness of stem-cell therapies has been hampered by cell death and limited
control over fate 1. These problems can be partially circumvented by using macroporous …

Matrix elasticity of void-forming hydrogels controls transplanted-stem-cell-mediated bone formation

N Huebsch, E Lippens, K Lee, M Mehta… - Nature …, 2015 - ui.adsabs.harvard.edu
The effectiveness of stem cell therapies has been hampered by cell death and limited
control over fate. These problems can be partially circumvented by using macroporous …

[PDF][PDF] Matrix elasticity of void-forming hydrogels controls transplanted-stem-cell-mediated bone formation

DE Ingber, GN Duda, DJ Mooney - 2015 - researchgate.net
The e ectiveness of stem cell therapies has been hampered by cell death and limited control
over fate. These problems can be partially circumvented by using macroporous biomaterials …