Sing Yian Chew
www.ntu.edu.sg
0000-0002-6084-5967
63 papers found
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Modulating Macrophage Phenotype by Sustained MicroRNA Delivery Improves Host‐Implant Integration
Modulation of cell-cell interactions for neural tissue engineering: Potential therapeutic applications of cell adhesion molecules in nerve regeneration
Biomimicking Fiber Scaffold as an Effective In Vitro and In Vivo MicroRNA Screening Platform for Directing Tissue Regeneration
Scaffold-Mediated Sustained, Non-viral Delivery of miR-219/miR-338 Promotes CNS Remyelination
Localised non-viral delivery of nucleic acids for nerve regeneration in injured nervous systems
Author Correction: Three-dimensional aligned nanofibers-hydrogel scaffold for controlled non-viral drug/gene delivery to direct axon regeneration in spinal cord injury treatment
Sustained delivery of siRNA/mesoporous silica nanoparticle complexes from nanofiber scaffolds for long-term gene silencing
Microfiber drug/gene delivery platform for study of myelination
Exploring new treatment for spinalized rats by synergising robotic rehabilitation system and regenerative medicine
Mechanical Strain Alters Cellular and Nuclear Dynamics at Early Stages of Oligodendrocyte Differentiation
3D neural tissue models: From spheroids to bioprinting
Scaffold mediated gene knockdown for neuronal differentiation of human neural progenitor cells
Raman spectroscopy for discrimination of neural progenitor cells and their lineages (Conference Presentation)
Three-dimensional aligned nanofibers-hydrogel scaffold for controlled non-viral drug/gene delivery to direct axon regeneration in spinal cord injury treatment
Stimuli-responsive multifunctional glyconanoparticle platforms for targeted drug delivery and cancer cell imaging
Three-Dimensional Nanofiber Hybrid Scaffold Directs and Enhances Axonal Regeneration after Spinal Cord Injury
Highly Fluorescent and Photostable Polymeric Nanofibers as Scaffolds for Cell Interfacing and Long-Term Tracking
Protrusive waves guide 3D cell migration along nanofibers
Topographical effects on fiber-mediated microRNA delivery to control oligodendroglial precursor cells development
MicroRNAs and their potential therapeutic applications in neural tissue engineering
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