[HTML][HTML] Conductive fibers for biomedical applications

L Wei, S Wang, M Shan, Y Li, Y Wang, F Wang… - Bioactive Materials, 2023 - Elsevier
Bioelectricity has been stated as a key factor in regulating cell activity and tissue function in
electroactive tissues. Thus, various biomedical electronic constructs have been developed …

High-throughput micropatterning platform reveals Nodal-dependent bisection of peri-gastrulation–associated versus preneurulation-associated fate patterning

M Tewary, D Dziedzicka, J Ostblom, L Prochazka… - PLoS …, 2019 - journals.plos.org
In vitro models of postimplantation human development are valuable to the fields of
regenerative medicine and developmental biology. Here, we report characterization of a …

[图书][B] Thermo-responsive reversible dynamic microenvironments to regulate cellular behavior

J Zhang - 2019 - search.proquest.com
Control of biochemical (eg, integrin bioligands, growth factors, and drugs) and biophysical
(eg, stiffness, porosity, and geometry) properties of scaffolds to modulate dynamic signals …

Micropatterned Neuroectoderm Tissue Model to Study Early Neural Development and Pathogenesis

G Sahni - 2018 - search.proquest.com
Current human neural differentiation model-systems can dictate neuroectoderm (NE) cell
fate specification but not their morphogenesis. We report a first instance of directing the …

[图书][B] Engineered In vitro models of post-implantation human development to elucidate mechanisms of self-organized fate specification during embryogenesis

M Tewary - 2018 - search.proquest.com
During embryogenesis, cells in different positions of the embryo acquire different fates in a
seemingly autonomous process called 'fate-patterning'. Fundamental studies have identified …