Nanotopography-mediated reverse uptake for siRNA delivery into neural stem cells to enhance neuronal differentiation.
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Guiding stem cell differentiation into oligodendrocytes using graphene-nanofiber hybrid scaffoldsNanotopographical Surfaces for Stem Cell Fate Control: Engineering Mechanobiology from the BottomSurface-mediated delivery of siRNA from fibrin hydrogels for knockdown of the BMP-2 binding antagonist noggin.The nanomaterial toolkit for neuroengineering.Design, synthesis, and characterization of graphene-nanoparticle hybrid materials for bioapplications.Probing stem cell behavior using nanoparticle-based approaches.Neuroregeneration versus neurodegeneration: toward a paradigm shift in Alzheimer's disease drug discovery.Surface functionalization of nanobiomaterials for application in stem cell culture, tissue engineering, and regenerative medicine.Single vehicular delivery of siRNA and small molecules to control stem cell differentiationCombination of RNA Interference and Stem Cells for Treatment of Central Nervous System Diseases.Nanotopography applications in drug deliverySynthesis of irregular graphene oxide tubes using green chemistry and their potential use as reinforcement materials for biomedical applications.Axonal alignment and enhanced neuronal differentiation of neural stem cells on graphene-nanoparticle hybrid structures.Multimodal magnetic core-shell nanoparticles for effective stem-cell differentiation and imaging.Functionalization of microparticles with mineral coatings enhances non-viral transfection of primary human cells.Nanotopography-based strategy for the precise manipulation of osteoimmunomodulation in bone regeneration.Modelling APOE ɛ3/4 allele-associated sporadic Alzheimer's disease in an induced neuron.Screening the expression characteristics of several miRNAs in G93A-SOD1 transgenic mouse: altered expression of miRNA-124 is associated with astrocyte differentiation by targeting Sox2 and Sox9.Nanotechnology-Based Approaches for Guiding Neural Regeneration.Controlling differentiation of adipose-derived stem cells using combinatorial graphene hybrid-pattern arraysMussel Adhesion-Inspired Reverse Transfection Platform Enhances Osteogenic Differentiation and Bone Formation of Human Adipose-Derived Stem Cells.
P2860
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P2860
Nanotopography-mediated reverse uptake for siRNA delivery into neural stem cells to enhance neuronal differentiation.
description
2013 nî lūn-bûn
@nan
2013年の論文
@ja
2013年論文
@yue
2013年論文
@zh-hant
2013年論文
@zh-hk
2013年論文
@zh-mo
2013年論文
@zh-tw
2013年论文
@wuu
2013年论文
@zh
2013年论文
@zh-cn
name
Nanotopography-mediated revers ...... ance neuronal differentiation.
@en
Nanotopography-mediated revers ...... ance neuronal differentiation.
@nl
type
label
Nanotopography-mediated revers ...... ance neuronal differentiation.
@en
Nanotopography-mediated revers ...... ance neuronal differentiation.
@nl
prefLabel
Nanotopography-mediated revers ...... ance neuronal differentiation.
@en
Nanotopography-mediated revers ...... ance neuronal differentiation.
@nl
P2860
P356
P1433
P1476
Nanotopography-mediated revers ...... hance neuronal differentiation
@en
P2093
Aniruddh Solanki
Shreyas Shah
P2860
P2888
P356
10.1038/SREP01553
P407
P577
2013-01-01T00:00:00Z