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Andres Martinez
Andres Martinez
Verified email at u.northwestern.edu
Title
Cited by
Cited by
Year
A uniform‐shear rate microfluidic bioreactor for real‐time study of proplatelet formation and rapidly‐released platelets
AF Martinez, RD McMahon, M Horner, WM Miller
Biotechnology progress 33 (6), 1614-1629, 2017
142017
Enabling Large‐Scale Ex Vivo Production of Megakaryocytes from CD34+ Cells Using Gas‐Permeable Surfaces
AF Martinez, WM Miller
Stem cells translational medicine 8 (7), 658-670, 2019
112019
Characterization of the Hydrodynamics in the USP Basket Apparatus Using Computational Fluid Dynamics
AF Martinez, K Sinha, N Nere, R Slade, S Castleberry
Journal of Pharmaceutical Sciences 109 (3), 1231-1241, 2020
102020
Using Computational Fluid Dynamics (CFD) to Enhance Ex Vivo Platelet Production Via Shear Forces within Microfluidic Bioreactors
A Martinez, R McMahon, K Jenkins, WM Miller
Blood 128 (22), 1352-1352, 2016
12016
MICROFLUIDIC PLATELET BIOREACTOR DEVICE AND SYSTEMS
WM Miller, R Mcmahon, A Martinez
US Patent App. 16/624,681, 2020
2020
Enabling large-scale ex vivo production of megakaryocytes and platelets from CD34+ cells using gas-permeable surfaces
A Martinez, W Miller
ABSTRACTS OF PAPERS OF THE AMERICAN CHEMICAL SOCIETY 257, 2019
2019
Engineering Scalable Microenvironments to Enhance Ex Vivo Megakaryocyte Production and Platelet Release
A Martinez
Northwestern University, 2019
2019
Enabling large-scale ex vivo production of megakaryocytes and platelets from CD34+ cells using gas-permeable surfaces and microfluidic bioreactors
AF Martinez, WM Miller
2019
Engineering uniform-shear rate bioreactors to mimic bone marrow and lung vasculature niches for the production of platelets ex vivo
A Martinez, R McMahon, M Horner, D Doser, W Miller
ABSTRACTS OF PAPERS OF THE AMERICAN CHEMICAL SOCIETY 255, 2018
2018
Evaluating a gas-permeable culture surface for the generation of megakaryocytes for in-vitro platelet production
A Martinez, WM Miller
2018
Using computational fluid dynamics (CFD) to design and characterize a microfluidic bioreactor for rapid release of culture-derived platelets
W Miller, AF Martinez, RD McMahon
2017
Towards Developing a Process for Efficient Ex Vivo Platelet Production: Megakaryocyte Synchronization and Shear-Stress-Enhanced Platelet Release
MT Duncan, TA DeLuca, AC Schlinker, A Martinez, J Magura, R McMahon, ...
TISSUE ENGINEERING PART A 21, S15-S15, 2015
2015
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