about
Coupling between apical tension and basal adhesion allow epithelia to collectively sense and respond to substrate topography over long distances.In vitro analysis of acetalated dextran microparticles as a potent delivery platform for vaccine adjuvants.Formation of targeted monovalent quantum dots by steric exclusion.Acetal-derivatized dextran: an acid-responsive biodegradable material for therapeutic applicationsAcetalated dextran is a chemically and biologically tunable material for particulate immunotherapy.A strategy for tissue self-organization that is robust to cellular heterogeneity and plasticityChemically programmed cell adhesion with membrane-anchored oligonucleotidesAcetal-modified dextran microparticles with controlled degradation kinetics and surface functionality for gene delivery in phagocytic and non-phagocytic cells.Acid-degradable polyurethane particles for protein-based vaccines: biological evaluation and in vitro analysis of particle degradation products.In vivo studies on the effect of co-encapsulation of CpG DNA and antigen in acid-degradable microparticle vaccinesChemoselective ligation in the functionalization of polysaccharide-based particles.Acid-degradable solid-walled microcapsules for pH-responsive burst-release drug delivery.A biocompatible oxidation-triggered carrier polymer with potential in therapeutics.Mannosylated dextran nanoparticles: a pH-sensitive system engineered for immunomodulation through mannose targeting.Spirocyclic Acetal-Modified Dextran as a Flexible pH-Sensitive Solubility-Switching Material
P50
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P50
description
researcher
@en
wetenschapper
@nl
հետազոտող
@hy
name
Kyle E Broaders
@nl
Kyle E Broaders
@sl
Kyle E. Broaders
@en
Kyle E. Broaders
@es
type
label
Kyle E Broaders
@nl
Kyle E Broaders
@sl
Kyle E. Broaders
@en
Kyle E. Broaders
@es
prefLabel
Kyle E Broaders
@nl
Kyle E Broaders
@sl
Kyle E. Broaders
@en
Kyle E. Broaders
@es
P1053
G-2796-2010
P106
P31
P3829
P496
0000-0002-6827-8717
P569
2000-01-01T00:00:00Z