Jason W. Nichol, PhD
Jason W. Nichol, PhD
Professor of Bioengineering. Endicott College, Beverly MA
Verified email at
Cited by
Cited by
Cell-laden microengineered gelatin methacrylate hydrogels
JW Nichol, ST Koshy, H Bae, CM Hwang, S Yamanlar, A Khademhosseini
Biomaterials 31 (21), 5536-5544, 2010
Controlling the porosity and microarchitecture of hydrogels for tissue engineering
N Annabi, JW Nichol, X Zhong, C Ji, S Koshy, A Khademhosseini, ...
Tissue Engineering Part B: Reviews 16 (4), 371-383, 2010
Microfabrication of complex porous tissue engineering scaffolds using 3D projection stereolithography
R Gauvin, YC Chen, JW Lee, P Soman, P Zorlutuna, JW Nichol, H Bae, ...
Biomaterials 33 (15), 3824-3834, 2012
Modular tissue engineering: engineering biological tissues from the bottom up
JW Nichol, A Khademhosseini
Soft matter 5 (7), 1312-1319, 2009
A biodegradable and biocompatible gecko-inspired tissue adhesive
A Mahdavi, L Ferreira, C Sundback, JW Nichol, EP Chan, DJD Carter, ...
Proceedings of the National Academy of Sciences 105 (7), 2307-2312, 2008
Directed 3D cell alignment and elongation in microengineered hydrogels
H Aubin, JW Nichol, CB Hutson, H Bae, AL Sieminski, DM Cropek, ...
Biomaterials 31 (27), 6941-6951, 2010
Microfabricated biomaterials for engineering 3D tissues
P Zorlutuna, N Annabi, G Camci‐Unal, M Nikkhah, JM Cha, JW Nichol, ...
Advanced materials 24 (14), 1782-1804, 2012
Synthesis and characterization of tunable poly (ethylene glycol): gelatin methacrylate composite hydrogels
CB Hutson, JW Nichol, H Aubin, H Bae, S Yamanlar, S Al-Haque, ...
Tissue Engineering Part A 17 (13-14), 1713-1723, 2011
Controlling the porosity of fibrous scaffolds by modulating the fiber diameter and packing density
S Soliman, S Sant, JW Nichol, M Khabiry, E Traversa, A Khademhosseini
Journal of Biomedical Materials Research Part A 96 (3), 566-574, 2011
Synthesis and characterization of photocrosslinkable gelatin and silk fibroin interpenetrating polymer network hydrogels
W Xiao, J He, JW Nichol, L Wang, CB Hutson, B Wang, Y Du, H Fan, ...
Acta biomaterialia 7 (6), 2384-2393, 2011
A porous photocurable elastomer for cell encapsulation and culture
S Gerecht, SA Townsend, H Pressler, H Zhu, CLE Nijst, JP Bruggeman, ...
Biomaterials 28 (32), 4826-4835, 2007
Cell-laden microengineered pullulan methacrylate hydrogels promote cell proliferation and 3D cluster formation
H Bae, AF Ahari, H Shin, JW Nichol, CB Hutson, M Masaeli, SH Kim, ...
Soft matter 7 (5), 1903-1911, 2011
Interface‐directed self‐assembly of cell‐laden microgels
B Zamanian, M Masaeli, JW Nichol, M Khabiry, MJ Hancock, H Bae, ...
Small 6 (8), 937-944, 2010
Micro-and nanoscale control of the cardiac stem cell niche for tissue fabrication
B Murtuza, JW Nichol, A Khademhosseini
Tissue Engineering Part B: Reviews 15 (4), 443-454, 2009
Development of functional biomaterials with micro‐and nanoscale technologies for tissue engineering and drug delivery applications
H Bae, H Chu, F Edalat, JM Cha, S Sant, A Kashyap, AF Ahari, CH Kwon, ...
Journal of tissue engineering and regenerative medicine 8 (1), 1-14, 2014
Hydrogel surfaces to promote attachment and spreading of endothelial progenitor cells
G Camci‐Unal, JW Nichol, H Bae, H Tekin, J Bischoff, A Khademhosseini
Journal of tissue engineering and regenerative medicine 7 (5), 337-347, 2013
Surface-modified hyaluronic acid hydrogels to capture endothelial progenitor cells
G Camci-Unal, H Aubin, AF Ahari, H Bae, JW Nichol, A Khademhosseini
Soft matter 6 (20), 5120-5126, 2010
Responsive micromolds for sequential patterning of hydrogel microstructures
H Tekin, T Tsinman, JG Sanchez, BJ Jones, G Camci-Unal, JW Nichol, ...
Journal of the American Chemical Society 133 (33), 12944-12947, 2011
Co-culture induces alignment in engineered cardiac constructs via MMP-2 expression
JW Nichol, GC Engelmayr Jr, M Cheng, LE Freed
Biochemical and biophysical research communications 373 (3), 360-365, 2008
Tissue engineering of arteries by directed remodeling of intact arterial segments
V Clerin, JW Nichol, M Petko, RJ Myung, JW Gaynor, KJ Gooch
Tissue Engineering 9 (3), 461-472, 2003
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