Search Results - "Zavgorodnya, Oleksandra"
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Ultrathin Polymeric Coatings Based on Hydrogen-Bonded Polyphenol for Protection of Pancreatic Islet Cells
Published in Advanced functional materials (21-08-2012)“…Though transplantation of pancreatic islet cells has emerged as a promising treatment for Type 1 diabetes its clinical application remains limited due to a…”
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2
Porous Chitin Microbeads for More Sustainable Cosmetics
Published in ACS sustainable chemistry & engineering (04-12-2017)“…The microbead form is a material architecture that is promising for use in biomedical and cosmetic applications; however, the use of petroleum-based microbeads…”
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3
Assembly of poly(N-isopropylacrylamide)-co-acrylic acid microgel thin films on polyelectrolyte multilayers: Effects of polyelectrolyte layer thickness, surface charge, and microgel solution pH
Published in Colloid and polymer science (01-04-2011)“…Temperature- and pH-sensitive poly(N-isopropylacrylamide)–co-acrylic acid (pNIPAm-co-AAc) microgels were deposited on glass substrates coated with…”
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4
Tailoring Architecture of Nanothin Hydrogels: Effect of Layering on pH-Triggered Swelling
Published in ACS macro letters (19-03-2013)“…We have tailored the internal architecture of ultrathin poly(methacrylic acid) (PMAA) hydrogels from well stratified to highly intermixed by controlling the…”
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5
Thermosensitive Multilayer Hydrogels of Poly(N‑vinylcaprolactam) as Nanothin Films and Shaped Capsules
Published in Chemistry of materials (09-10-2012)“…We report on nanothin multilayer hydrogels of cross-linked poly(N-vinylcaprolactam) (PVCL) that exhibit distinctive and reversible thermoresponsive behavior…”
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6
Encapsulation of anticancer drug by hydrogen-bonded multilayers of tannic acid
Published in Soft matter (14-12-2014)“…Tannic acid (TA)-based multilayer assemblies have attracted increasing interest for biomedical applications. Here we explore properties of…”
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7
Nanostructured highly-swollen hydrogels: Complexation with amino acids through copper (II) ions
Published in Polymer (Guilford) (15-09-2015)“…We report on the complexation of highly swollen poly(methacrylic acid) (PMAA) nanothin hydrogel films with copper (II) ions and the stability of these…”
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Temperature-responsive nanogel multilayers of poly(N-vinylcaprolactam) for topical drug delivery
Published in Journal of colloid and interface science (15-11-2017)“…[Display omitted] We report nanothin temperature-responsive hydrogel films of poly(N-vinylcaprolactam) nanoparticles (νPVCL) with remarkably high loading…”
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9
Multilayer Hydrogel Capsules of Interpenetrated Network for Encapsulation of Small Molecules
Published in Langmuir (02-10-2018)“…We report on a facile capsule-based platform for efficient encapsulation of a broad spectrum of hydrophilic compounds with molecular weight less than 1000 g…”
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10
In Search of Stronger/Cheaper Chitin Nanofibers through Electrospinning of Chitin–Cellulose Composites Using an Ionic Liquid Platform
Published in ACS sustainable chemistry & engineering (05-11-2018)“…The ability of the ionic liquid (IL) 1-ethyl-3-methylimidazolium acetate ([C2mim][OAc]) to solubilize natural biopolymers (e.g., chitin and cellulose) without…”
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11
Controlling Internal Organization of Multilayer Poly(methacrylic acid) Hydrogels with Polymer Molecular Weight
Published in Macromolecules (08-12-2015)“…We report on tailoring the internal architecture of multilayer-derived poly(methacrylic acid) (PMAA) hydrogels by controlling the molecular weight of…”
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12
Development of gellan gum containing formulations for transdermal drug delivery: Component evaluation and controlled drug release using temperature responsive nanogels
Published in International journal of pharmaceutics (25-07-2016)“…[Display omitted] Enhancing skin permeation is important for development of new transdermal drug delivery formulations. This is particularly relevant for…”
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13
“Practical” Electrospinning of Biopolymers in Ionic Liquids
Published in ChemSusChem (10-01-2017)“…To address the need to scale up technologies for electrospinning of biopolymers from ionic liquids to practical volumes, a setup for the multi‐needle…”
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14
Ionic Liquid Platform for Spinning Composite Chitin–Poly(lactic acid) Fibers
Published in ACS sustainable chemistry & engineering (06-08-2018)“…In the design of stronger chitin fibers reinforced with poly(lactic acid) (PLA), an ionic-liquid-based (IL-based) approach was developed in which both…”
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15
Electrospinning Biopolymers from Ionic Liquids Requires Control of Different Solution Properties than Volatile Organic Solvents
Published in ACS sustainable chemistry & engineering (05-06-2017)“…We report the correlation between key solution properties and spinability of chitin from the ionic liquid (IL) 1-ethyl-3-methylimidazolium acetate…”
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16
Tuning assembly and enzymatic degradation of silk/poly(N-vinylcaprolactam) multilayers via molecular weight and hydrophobicity
Published in Soft matter (07-07-2015)“…We report on enzymatically degradable nanothin coatings obtained by layer-by-layer (LbL) assembly of silk fibroin with poly(N-vinylcaprolactam) (PVCL) via…”
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17
“Practical” Electrospinning of Biopolymers in Ionic Liquids
Published in ChemSusChem (06-12-2016)“…To address the need to scale up technologies for electrospinning of biopolymers from ionic liquids to practical volumes, a setup for the multi-needle…”
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18
Ionic Liquid Platform for Spinning Composite Chitin–Poly(lactic acid) Fibers
Published in ACS sustainable chemistry & engineering (07-06-2018)“…In the design of stronger chitin fibers reinforced with poly(lactic acid) (PLA), an ionic-liquid-based (IL-based) approach was developed in which both polymers…”
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19
Assembly of poly(N-isopropylacrylamide)-co-acrylic acid microgel thin films on polyelectrolyte multilayers: Effects of polyelectrolyte layer thickness, surface charge, and microgel solution pH: Special themed issue on responsive gels
Published in Colloid and polymer science (2011)Get full text
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20
Porous Chitin Microbeads for More Sustainable Cosmetics
Published in ACS sustainable chemistry & engineering (30-10-2017)“…The microbead form is a material architecture that is promising for use in biomedical and cosmetic applications; however, the use of petroleum-based microbeads…”
Get full text
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