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Nanoscale Topographies for Corneal Endothelial Regeneration
Nello Formisano
, Gozde Sahin
, Pere Catala
,
Roman Truckenmuller
,
Rudy M. M. A. Nuijts
,
Mor M. Dickman
,
Vanessa L. S. LaPointe
,
Stefan Giselbrecht
*
*
Corresponding author for this work
Instructive Biomaterials Engineering
Cell Biology - Inspired Tissue Regeneration
MERLN - Instructive Biomaterials Engineering (IBE)
MHeNs - Neuroscience
MA UECM Oogartsen MUMC
Oogheelkunde
MERLN - Cell Biology - Inspired Tissue Engineering (CBITE)
Research output
:
Contribution to journal
›
(Systematic) Review article
›
peer-review
Overview
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INIS
humans
100%
topography
100%
regeneration
100%
nanostructures
100%
solutions
40%
reviews
40%
cornea
40%
expansion
40%
substrates
40%
diseases
20%
levels
20%
patients
20%
therapy
20%
ions
20%
tissues
20%
losses
20%
metabolites
20%
cell cultures
20%
mimic
20%
endothelium
20%
vision
20%
trauma
20%
layers
20%
in vitro
20%
environment
20%
dimensions
20%
shape
20%
transparency
20%
pumps
20%
hydration
20%
activity transport
20%
Keyphrases
Human Corneal Epithelial Cells
100%
Nanotopography
100%
Corneal Endothelial Regeneration
100%
Cornea
40%
Primary Culture
20%
Trauma
20%
Cell Substrate
20%
Late Development
20%
Cell Expansion
20%
Biophysical Cues
20%
Nanometer Scale
20%
Deceased Donor
20%
Therapy Approaches
20%
Topographic Factors
20%
Corneal Endothelium
20%
Conventional Culture
20%
Vision Loss
20%
Cell Therapy
20%
Transport Activity
20%
Native Ecosystems
20%
Substrate Topography
20%
Substrate Effect
20%
Nanofabrication
20%
Tissue Transplantation
20%
Hydration Level
20%
Cell Culture Protocols
20%
Medicine and Dentistry
Endothelial Cell
100%
Regeneration
100%
Metabolite
20%
In Vitro
20%
Cell Culture
20%
Deterioration
20%
Corneal Endothelium
20%
Cell Therapy
20%
Primary Culture
20%
Cell Expansion
20%
Tissue Transplantation
20%
Ion Transport
20%
Diseases
20%