Magdolna Bodnár
University of Debrecen
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Publication
Featured researches published by Magdolna Bodnár.
International Journal of Pharmaceutics | 2013
András Polyák; István Hajdu; Magdolna Bodnár; György Trencsényi; Zita Pöstényi; Veronika Haász; Gergely Jánoki; Győző Jánoki; Lajos Balogh; János Borbély
We report the synthesis, in vitro and in vivo investigation of folate-targeted, biocompatible, biodegradable self-assembled nanoparticles radiolabelled with (99m)Tc, as potential new SPECT or SPECT/CT imaging agent. Nanoparticles with hydrodynamic size in the range of 75-200 nm were prepared by self-assembly of chitosan and folated poly-γ-glutamic acid, and then radiolabelled with (99m)Tc. The nanoparticles target tumour cells overexpressing folate receptors and internalize specifically into them to realize early tumour diagnosis detected by SPECT and SPECT/CT modalities. Rat hepatocellular carcinoma cells were used as model system. Cell specificity and tumour targeting efficacy of these nanosystems were investigated in vitro, and in vivo using SPECT and fusion nanoSPECT/CT imaging. In vitro results showed that the radiolabeled nanosystem was efficiently internalized by tumour cells. Whole-body biodistribution of the new radiolabelled, folate-targeted nanoparticles revealed higher uptake in the tumorous kidney compared to the non-tumorous contralateral side. Uptake by the lungs and thyroids was negligible, which confirmed the stability of the nanoparticles in vivo. In vivo SPECT and SPECT/CT imaging visually reinforced the uptake results and were in accordance with the biodistribution data: the new nanoparticles as a targeted contrast agent improve tumour targeting and are able to detect folate-receptor-overexpressing tumours in animal models with enhanced contrast.
Macromolecular Symposia | 2005
Magdolna Bodnár; John F. Hartmann; János Borbély
Novel biodegradable nanoparticles were synthesized by chemical modification of the chitosan linear chain. A natural dicarboxylic acid (malic acid) was used as a crosslinking agent for intramolecular covalent condensation reaction to obtain hydrophilic nanoparticles based on chitosan. A variety of methods including, solubility studies, laser light scattering (DLS), transmission electron microscopy (TEM) and nuclear magnetic resonance (NMR) was used to characterize the crosslinked macromolecules. The prepared biodegradable chitosan nanoparticles, soluble in aqueous media, might be useful for various biomedical applications, like injectable drug- or gene-delivery systems.
International Journal of Pharmaceutics | 2014
András Polyák; István Hajdu; Magdolna Bodnár; Gabriella Dabasi; Róbert Péter Jóba; János Borbély; Lajos Balogh
A new biocompatible, biodegradable, self-assembled chitosan-based nanoparticulate product was successfully synthesized and radiolabeled with technetium-99m, and studied as a potential new SPECT or SPECT/CT imaging agent for diagnosis of folate receptor overexpressing tumors. In the present study we examined the conditions of a preclinical application of this labeled nanosystem in early diagnosis of spontaneously diseased veterinary patient using a human SPECT/CT device. The results confirmed that the nanoparticles accumulated in tumor cells overexpressing folate receptors, contrast agent revealed higher uptake in the tumor for a long time. Preclinical trials verified that the new nanoparticles are able to detect folate-receptor-overexpressing tumors in spontaneously diseased animal models with enhanced contrast.
International Journal of Pharmaceutics | 2013
István Hajdu; Magdolna Bodnár; György Trencsényi; Teréz Márián; György Vámosi; József Kollár; János Borbély
We report here the synthesis, in vitro and in vivo investigation of magnetic resonance imaging (MRI) active nanoparticles, which target folate receptor overexpressing tumor cells. Self-assembled nanoparticles with a hydrodynamic size of 50-200 nm were prepared from poly-γ-glutamic acid and chitosan biopolymers with Gd-ions. The nanoparticles are biocompatible, non-toxic and stable for several months in aqueous media. In vitro assays using confocal microscopy, flow cytometry and MR imaging on HeLa human cervix carcinoma tumor cells showed that folic acid targeted nanoparticles were internalized specifically in a folate receptor dependent manner. In vivo study confirmed, that, considerable accumulation of nanosystems was found compared with the control animal represented by the MR images. Relaxometry measurements demonstrated that the nanoparticle-Gd complexes drastically change the signal intensity of the tumor cells. Because of the contrast enhancement, they are attractive candidates as potential contrast agents for a variety of diagnostic applications including early diagnosis of tumors.
Biomacromolecules | 2005
Magdolna Bodnár; John F. Hartmann; János Borbély
Biomacromolecules | 2006
Magdolna Bodnár; John F. Hartmann; János Borbély
Journal of Membrane Science | 2012
István Hajdu; Magdolna Bodnár; Zsuzsanna Csikós; Shi Wei; Lajos Daróczi; Béla Kovács; Zoltán Győri; János Tamás; János Borbély
Colloid and Polymer Science | 2008
István Hajdu; Magdolna Bodnár; Genovéva Filipcsei; John F. Hartmann; Lajos Daróczi; Miklós Zrínyi; János Borbély
Colloid and Polymer Science | 2009
Zsolt Keresztessy; Magdolna Bodnár; Elizabeth Ber; István Hajdu; Min Zhang; John F. Hartmann; Tamara Minko; János Borbély
Colloid and Polymer Science | 2009
Magdolna Bodnár; Lajos Daróczi; Gyula Batta; József Bakó; John F. Hartmann; János Borbély