Daniela Ailincai
Romanian Academy
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Featured researches published by Daniela Ailincai.
Carbohydrate Polymers | 2015
Luminita Marin; Daniela Ailincai; Mihai Mares; Elena Paslaru; Mariana Cristea; Valentin Nica; Bogdan C. Simionescu
The paper reports the preparation of twelve imino-chitosan biopolymer films by acid condensation of the amino groups of chitosan with various aldehydes, in aqueous medium, followed by slow water removal. FTIR spectroscopy has shown drastic conformation changes of chitosan macromolecular chains—from a stiff coil to a straight one, while wide angle X-ray diffraction evidenced a layered morphology of the biopolymer films. Contact angle and surface free energy determination indicated a higher biocompatibility of the new biopolymers as compared to the chitosan parent, while the microbiological screening demonstrated their self-defense properties against common and virulent pathogen agents. It was concluded that the reversibility of imine forming promotes the self-assembling of imino-chitosan biopolymer films into a lamellar morphology and, on the other hand, the slow release of the antimicrobial aldehyde in the microbiological culture. The obtained results demonstrate that chitosan polyamine is a challenging workbench to functional biodynamic materials.
Liquid Crystals | 2016
Daniela Ailincai; Cosmin Farcau; Elena Paslaru; Luminita Marin
ABSTRACT Polymer dispersed liquid crystal (PDLC) systems based on a smectic liquid crystal embedded in polyvinylalcohol-boric acid (PVAB) as biocompatible carrying matrix were prepared and characterised. The smectic liquid crystal contains biologically friendly structural blocks and was designed to have a direct isotropic–smectic transition and a mesophase stability range at human body temperature. The resulted PDLCs were characterised from morphological and thermotropic aspects by polarised light microscopy (POM), differential scanning calorimetry (DSC), scanning electron microscopy (SEM) and Raman microspectroscopy, and their surface properties were determined by contact angle measurements and surface energy calculations. It was concluded that the electron-deficient PVAB matrix constrains the ester liquid crystal to grow as spherical droplets with planar anchoring. The droplet diameter was comprised in the range 4–11 µm, with a predominant droplet population around 7 µm and a narrower polydispersity as the amount of the liquid crystal in the polymeric matrix increases. The resulted PDLC films exhibited versatile morphology and surface properties which allow targeting of their application. GRAPHICAL ABSTRACT
Carbohydrate Polymers | 2016
Daniela Ailincai; Luminita Marin; Simona Morariu; Mihai Mares; Andra-Cristina Bostanaru; Mariana Pinteala; Bogdan C. Simionescu; Mihai Barboiu
Chitosan based hydrogels are a class of cross-linked materials intensely studied for their biomedical, industrial and environmental application, but their biomedical use is limited because of the toxicity of different organic crosslinkers. To overcome this disadvantage, a new strategy to produce supramolecular chitosan hydrogels using low molecular weight compounds able to form covalent linkages and H-bonds to give a dual crosslinking is proposed. For this purpose we used 2-formylphenylboronic acid, which brings the advantage of imine stabilization via iminoboronate formation and potential antifungal activity due to the presence of boric acid residue. FTIR and NMR spectroscopy indicated that the gelling process took place by chemo-physical crosslinking forming a dual iminoboronate-chitosan network. Further, X-ray diffraction demonstrated a three-dimensional nanostructuring of the iminoboronate network with consequences on the micrometer-scale morphology and on the improvement of mechanical properties, as demonstrated by SEM and rheological investigation. The hydrogels proved strong antifungal activity against Candida planktonic yeasts and biofilms, promising to be a friendly treatment of the recurrent vulvovaginitis infections.
RSC Advances | 2014
Luminita Marin; Daniela Ailincai; Elena Paslaru
A polymer dispersed liquid crystal composite (PDLC) based on polyvinyl alcohol boric acid (PVAB) as polymer matrix and 4-cyano-4′-penthylbiphenyl (5CB) as liquid crystal has been prepared by an encapsulation method. PVAB was used as a polymer matrix for the first time. Polarized light microscopy, scanning electron microscopy, differential scanning calorimetry and contact angle measurements were employed to explore the obtained PDLC systems. Optical properties were studied by photoluminescence spectroscopy. It was concluded that PVAB promotes homeotropic alignment, uniform distribution and narrow size polydispersity of the liquid crystal droplets. Moreover, the PDLC films show features of biocompatible materials, keeping the promise of their bioapplications.
Carbohydrate Polymers | 2017
Luminita Marin; Daniela Ailincai; Simona Morariu; Liliana Tartau-Mititelu
The paper focusses on the synthesis of novel hydrogels by joining natural biodegradable compounds with the aim to achieve biocompatible materials for bio related applications. The hydrogels were prepared from chitosan and citral by constitutional dynamic chemistry, incorporating both molecular and supramolecular dynamic features. The hydrophobic flexible citral has been reversible immobilized onto the hydrophilic chitosan backbone via imine bonds to form amphiphilic glycodynamers, which further self-ordered through supramolecular interactions into a 3D-network of biodynameric hydrogel. The synthetic pathway has been demonstrated by NMR and FTIR spectroscopy, X-ray diffraction and polarized light microscopy. Studies of the hydrogel morphology revealed a 3D porous microstructure, whose pores size correlated with the crosslinking degree. Rheological investigations evidenced high elasticity, thermo-responsiveness and thixotropic behavior. As a proof of the concept, the hydrogels proved in vivo biocompatibility on laboratory mice. The paper successfully implements the constitutional dynamic chemistry in generation of chitosan high performance hydrogels.
Polymer Chemistry | 2018
Andrei Bejan; Daniela Ailincai; Bogdan C. Simionescu; Luminita Marin
Pure organic luminescent hydrogels were synthesised using the condensation reaction of amino groups of chitosan with a photoactive aldehyde bearing a phenothiazine moiety. The hydrogels were structurally and supramolecularly characterized by FTIR and 1H-NMR spectroscopy, X-ray diffraction and polarized light microscopy. It was concluded that hydrogelation occurred due to the self-ordering of the chitosan segments grafted with pendant phenothiazine imines into ordered clusters, which play the role of crosslinking nodes. Scanning electron microscopy revealed microporous morphology with very thin pore walls. The ordered clusters immobilized in the polycationic chitosan network were responsible for high quantum efficiency, reaching the value of 51% in the xerogel state. The hydrogels formed flexible, transparent films with high mechanical toughness. Besides the remarkable optical and mechanical properties, the importance of the hydrogels is increased by their eco-design, based on chitosan from renewable resources and bio-friendly phenothiazine.
Materials Science and Engineering: C | 2019
Daniela Ailincai; Dragos Peptanariu; Mariana Pinteala; Luminita Marin
Dynamic constitutional chemistry has been used to design nonviral vectors for gene transfection. Their design has been thought in order to fulfill ab initio the main requirements for gene therapy. As building blocks were used hyperbranched PEI as hydrophilic part and benzentrialdehyde and a diamine linear siloxane as hydrophobic part, connected through reversible imine linkages. The obtaining of the envisaged structures has been confirmed by NMR and FTIR spectroscopy. The dynamic synthesized amphiphiles proved to be able to self-assemble in nano-sized spherical entities as was demonstrated by TEM and DLS, characterized by a narrow dimensional polydispersity. Agarose gel electrophoresis proved the ability of the synthesized compounds to bind DNA, while TEM revealed the spherical morphology of the formed polyplexes. As a proof of the concept, the nonviral vectors promoted an efficient transfection on HeLa cells, demonstrating that dynamic constitutional chemistry can be an important tool in the development of this domain.
Drug Delivery | 2018
Daniela Ailincai; Liliana Tartau Mititelu; Luminita Marin
Abstract A series of drug delivery systems were prepared by chitosan hydrogelation with citral in the presence of an antineoplastic drug: 5-fluorouracil. The dynamic covalent chemistry of the imine linkage allowed the obtaining of supramolecular tridimensional architectures in which the drug has been homogenously dispersed. Fourier-transform infrared spectroscopy (FTIR), wide-angle X-ray diffraction (WXRD) and polarized light microscopy (POM) measurements were used in order to follow the hydrogelation and drug encapsulation processes. The ability of the prepared systems to release the drug has been investigated by UV–Vis spectroscopy using a calibration curve and by fitting the results with different mathematic models. To mimic the behavior of the hydrogel matrix in bio-environmental conditions in view of applications, their enzymatic degradability was monitored in the presence of lysozyme. The in vivo side effects of the systems, in terms of their influence on the blood elements, biochemical and immune parameters were monitored on white Swiss mice by intraperitoneal administration of the injectable obtained hydrogels. All the characteristics of the obtained systems, such as micro-porous morphology, uniform drug encapsulation, enzymatic degradability, lack of side effects, other than the one of the drug itself, along with their ability to release the drug in a sustained manner proved that these material meet the requirements for the development of drug delivery systems, making them suitable for being applied in intraperitoneal chemotherapy.
European Polymer Journal | 2017
Luminita Marin; Andrei Bejan; Daniela Ailincai; Dalila Belei
ACS Biomaterials Science & Engineering | 2016
Luminita Marin; Daniela Ailincai; Manuela Calin; Daniela Stan; Cristina Ana Constantinescu; Laura Ursu; Florica Doroftei; Mariana Pinteala; Bogdan C. Simionescu; Mihail Barboiu