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David Browe
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Nano-particle mediated M2 macrophage polarization enhances bone formation and MSC osteogenesis in an IL-10 dependent manner
OR Mahon, DC Browe, T Gonzalez-Fernandez, P Pitacco, IT Whelan, ...
Biomaterials 239, 119833, 2020
2532020
3D bioprinting spatiotemporally defined patterns of growth factors to tightly control tissue regeneration
FE Freeman, P Pitacco, LHA van Dommelen, J Nulty, DC Browe, JY Shin, ...
Science advances 6 (33), eabb5093, 2020
1512020
Growth differentiation factor-5 enhances in vitro mesenchymal stromal cell chondrogenesis and hypertrophy
CM Coleman, EE Vaughan, DC Browe, E Mooney, L Howard, F Barry
Stem cells and development 22 (13), 1968-1976, 2013
1092013
3D bioprinting of prevascularised implants for the repair of critically-sized bone defects
J Nulty, FE Freeman, DC Browe, R Burdis, DP Ahern, P Pitacco, YB Lee, ...
Acta biomaterialia 126, 154-169, 2021
892021
Affinity-bound growth factor within sulfated interpenetrating network bioinks for bioprinting cartilaginous tissues
B Wang, PJ Diaz-Payno, DC Browe, FE Freeman, J Nulty, R Burdis, ...
Acta Biomaterialia 128, 130-142, 2021
712021
Biofabrication of multiscale bone extracellular matrix scaffolds for bone tissue engineering
FE Freeman, DC Browe, J Nulty, S Von Euw, WL Grayson, DJ Kelly
Eur. Cells Mater 38, 168-187, 2019
592019
Glyoxal cross‐linking of solubilized extracellular matrix to produce highly porous, elastic, and chondro‐permissive scaffolds for orthopedic tissue engineering
DC Browe, OR Mahon, PJ Díaz‐Payno, N Cassidy, I Dudurych, A Dunne, ...
Journal of Biomedical Materials Research Part A 107 (10), 2222-2234, 2019
352019
Bilayered extracellular matrix derived scaffolds with anisotropic pore architecture guide tissue organization during osteochondral defect repair
DC Browe, PJ Díaz-Payno, FE Freeman, R Schipani, R Burdis, DP Ahern, ...
Acta Biomaterialia 143, 266-281, 2022
282022
A developmental engineering-based approach to bone repair: endochondral priming enhances vascularization and new bone formation in a critical size defect
FE Freeman, MÁ Brennan, DC Browe, A Renaud, J De Lima, DJ Kelly, ...
Frontiers in bioengineering and biotechnology 8, 230, 2020
272020
Hypoxia activates the PTHrP–MEF2C pathway to attenuate hypertrophy in mesenchymal stem cell derived cartilage
DC Browe, CM Coleman, FP Barry, SJ Elliman
Scientific Reports 9 (1), 13274, 2019
272019
Spatial patterning of phenotypically distinct microtissues to engineer osteochondral grafts for biological joint resurfacing
R Burdis, F Chariyev-Prinz, DC Browe, FE Freeman, J Nulty, ...
Biomaterials 289, 121750, 2022
262022
Scaffold microarchitecture regulates angiogenesis and the regeneration of large bone defects
KF Eichholz, FE Freeman, P Pitacco, J Nulty, D Ahern, R Burdis, ...
Biofabrication 14 (4), 045013, 2022
242022
The N-glycoform of sRAGE is the key determinant for its therapeutic efficacy to attenuate injury-elicited arterial inflammation and neointimal growth
HJ Tae, JM Kim, S Park, N Tomiya, G Li, W Wei, N Petrashevskaya, ...
Journal of Molecular Medicine 91, 1369-1381, 2013
242013
Promoting endogenous articular cartilage regeneration using extracellular matrix scaffolds
DC Browe, R Burdis, PJ Díaz-Payno, FE Freeman, JM Nulty, CT Buckley, ...
Materials Today Bio 16, 100343, 2022
192022
Extracellular matrix scaffolds derived from different musculoskeletal tissues drive distinct macrophage phenotypes and direct tissue-specific cellular differentiation
OR Mahon, DC Browe, PJ Diaz-Payno, P Pitacco, KT Cunningham, ...
Journal of Immunology and Regenerative Medicine 12, 100041, 2021
112021
The identification of articular cartilage and growth plate extracellular matrix-specific proteins supportive of either osteogenesis or stable chondrogenesis of stem cells
PJ Díaz-Payno, DC Browe, GM Cunniffe, DJ Kelly
Biochemical and Biophysical Research Communications 528 (2), 285-291, 2020
92020
Gremlin-1 Suppresses Hypertrophy of Engineered Cartilage In Vitro but Not Bone Formation In Vivo
PJ Díaz-Payno, DC Browe, FE Freeman, J Nulty, R Burdis, DJ Kelly
Tissue Engineering Part A 28 (15-16), 724-736, 2022
82022
A method for making a porous scaffold suitable for use in repair of osseous, chondral, or osteochondral defects in a mammal
DJ Kelly, G Cunniffe, H Almeida, R Eswaramoorthy, C Buckley, ...
US Patent App. 15/502,633, 2017
62017
Development of a 3D bioprinted scaffold with spatio-temporally defined patterns of BMP-2 and VEGF for the regeneration of large bone defects
FE Freeman, P Pitacco, LHA Van Dommelen, J Nulty, DC Browe, JY Shin, ...
Bio-protocol 11 (21), e4219-e4219, 2021
52021
Method for making a porous scaffold suitable for use in repair of osseous, chondral, or osteochondral defects in a mammal
DJ Kelly, G Cunniffe, H Almeida, R Eswaramoorthy, C Buckley, ...
US Patent App. 16/795,770, 2020
22020
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