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Magnetic halloysite nanotubes for yeast cell surface engineering nanoparticles on the surfaces of the nanotubes allowed for magnetic-field manipulation of the coated cells

Magnetic halloysite nanotubes for yeast cell surface engineering nanoparticles on the surfaces of the nanotubes allowed for magnetic-field manipulation of the coated cells

Comparative study of an activity of rat spinal ganglion cells and PC12 cells on the surfaces modified with bioadhesive polymers potential of the modified surface was assessed. PC12 cells do not exhibit selective adhesion in the presence

Targeted and theranostic applications for nanotechnologies in medicine: Cell-surface engineering with magnetic nanoparticles for regenerative and bioanalytical applications magnetically responsive cells that can be directed by an external magnetic field. Cell surface engineering

Preparation and reversible aggregation of human cells encased in biocompatible polysaccharide shellA deposition of cationic (chitosan) and anionic (alginic acid) polysaccharides onto the surface

Comparative study of an activity of rat spinal ganglion cells and PC12 cells on the surfaces modified with bioadhesive polymers potential of the modified surface was assessed. PC12 cells do not exhibit selective adhesion in the presence

Nanoarchitectonics meets cell surface engineering: Shape recognition of human cells by halloysite-doped silica cell imprints© 2019 Rozhina et al. Cell surface engineering, as a practical manifestation of nanoarchitectonics

Fabrication of Magnetically Modified Chlorella pyrenoidosa Microalgae Using Poly(diallyldimethyl ammonium)-stabilised Magnetic Nanoparticles Chlorella pyrenoidosa cells using poly(diallyldimethyl ammonium chloride)-stabilised iron oxide

Surface-modified magnetic human cells for scaffold-free tissue engineering-layered multicellular clusters. Polymer-stabilized magnetic nanoparticles were deposited on surfaces of viable human

Surface-modified magnetic human cells for scaffold-free tissue engineering-layered multicellular clusters. Polymer-stabilized magnetic nanoparticles were deposited on surfaces of viable human

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