about
Regulation of integrin and growth factor signaling in biomaterials for osteodifferentiationHyperbranched Polyglycerol-Induced Porous Silica Nanoparticles as Drug Carriers for Cancer Therapy In Vitro and In Vivo.Protein interactions with polymer coatings and biomaterials.Nanopatterned Adhesive, Stretchable Hydrogel to Control Ligand Spacing and Regulate Cell Spreading and Migration.Multivalent anchoring and cross-linking of mussel-inspired antifouling surface coatings.In-depth analysis of switchable glycerol based polymeric coatings for cell sheet engineering.Adsorption mechanism and valency of catechol-functionalized hyperbranched polyglycerols.Multivalent anchored and crosslinked hyperbranched polyglycerol monolayers as antifouling coating for titanium oxide surfaces.A universal approach to crosslinked hierarchical polymer multilayers as stable and highly effective antifouling coatings.High-Antifouling Polymer Brush Coatings on Nonpolar Surfaces via Adsorption-Cross-Linking Strategy.Mussel-Inspired Polyglycerol Coatings with Controlled Wettability: From Superhydrophilic to Superhydrophobic Surface Coatings.Bioinspired Universal Monolayer Coatings by Combining Concepts from Blood Protein Adsorption and Mussel Adhesion.Surface-Independent Hierarchical Coatings with Superamphiphobic Properties.Complex Assembly of Polymer Conjugated Mesoporous Silica Nanoparticles for Intracellular pH-Responsive Drug Delivery.Supramolecular polymers as surface coatings: rapid fabrication of healable superhydrophobic and slippery surfaces.Mussel-inspired dendritic polymers as universal multifunctional coatings.Synthetic Polymers for Biomedical Applications.Preparation of polyethersulfone-alginate microcapsules for controlled releaseImproving the blood compatibility of material surfaces via biomolecule-immobilized mussel-inspired coatingsA swarm of slippery micropropellers penetrates the vitreous body of the eyeModification of a polyethersulfone matrix by grafting functional groups and the research of biomedical performanceSurface Roughness Gradients Reveal Topography-Specific Mechanosensitive Responses in Human Mesenchymal Stem CellsCorrection to Surface Roughness and Substrate Stiffness Synergize To Drive Cellular MechanoresponseSurface Roughness and Substrate Stiffness Synergize To Drive Cellular MechanoresponseSurface Immobilized E-Cadherin Mimetic Peptide Regulates the Adhesion and Clustering of Epithelial CellsLigand Diffusion Enables Force-Independent Cell Adhesion via Activating α5β1 Integrin and Initiating Rac and RhoA Signaling
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description
researcher
@en
հետազոտող
@hy
name
Qiang Wei
@ast
Qiang Wei
@de
Qiang Wei
@en
Qiang Wei
@es
Qiang Wei
@nl
type
label
Qiang Wei
@ast
Qiang Wei
@de
Qiang Wei
@en
Qiang Wei
@es
Qiang Wei
@nl
prefLabel
Qiang Wei
@ast
Qiang Wei
@de
Qiang Wei
@en
Qiang Wei
@es
Qiang Wei
@nl
P108
P1006
P214
P227
P1006
P106
P108
P214
P227
1137351764
P31
P496
0000-0001-5194-8262
P7859
lccn-no2001097541