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Emilia Madarasz

Explore the profile of Emilia Madarasz including associated specialties, affiliations and a list of published articles. Areas
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Articles 31
Citations 359
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Recent Articles
1.
Linder B, Zoldakova M, Kornyei Z, Kohler L, Seibt S, Menger D, et al.
Int J Mol Sci . 2022 Aug; 23(16). PMID: 36012321
While the fungal metabolite illudin M () is indiscriminately cytotoxic in cancer and non-malignant cells, its retinoate showed a greater selectivity for the former, especially in a cerebral context. Illudin...
2.
Kohidi T, Jady A, Marko K, Papp N, Andrasi T, Kornyei Z, et al.
Front Cell Neurosci . 2018 Jan; 11:401. PMID: 29311832
During neural tissue genesis, neural stem/progenitor cells are exposed to bioelectric stimuli well before synaptogenesis and neural circuit formation. Fluctuations in the electrochemical potential in the vicinity of developing cells...
3.
Nagy A, Fekete R, Horvath G, Koncsos G, Kriston C, Sebestyen A, et al.
Biochim Biophys Acta Bioenerg . 2017 Dec; 1859(3):201-214. PMID: 29273412
Microglia are highly dynamic cells in the brain. Their functional diversity and phenotypic versatility brought microglial energy metabolism into the focus of research. Although it is known that microenvironmental cues...
4.
Huth M, Hertrich S, Mezo G, Madarasz E, Nickel B
Materials (Basel) . 2017 Sep; 3(11):4994-5006. PMID: 28883366
We developed a bioadhesive coating based on a synthetic peptide-conjugate (AK-cyclo[RGDfC]) which contains multiples of the arginyl-glycyl-aspartic acid (RGD) amino acid sequence. Biotinylated AK-cyclo[RGDfC] is bound to a supported lipid...
5.
Kenesei K, Murali K, Czeh A, Piella J, Puntes V, Madarasz E
J Nanobiotechnology . 2016 Jul; 14(1):55. PMID: 27388915
Background: Precisely targeted nanoparticle delivery is critically important for therapeutic applications. However, our knowledge on how the distinct physical and chemical properties of nanoparticles determine tissue penetration through physiological barriers,...
6.
Jady A, Nagy A, Kohidi T, Ferenczi S, Tretter L, Madarasz E
Stem Cells Dev . 2016 Apr; 25(13):995-1005. PMID: 27116891
While it is evident that the metabolic machinery of stem cells should be fairly different from that of differentiated neurons, the basic energy production pathways in neural stem cells (NSCs)...
7.
Murali K, Kenesei K, Li Y, Demeter K, Kornyei Z, Madarasz E
Nanoscale . 2015 Feb; 7(9):4199-210. PMID: 25673096
Because of their capacity of crossing an intact blood-brain barrier and reaching the brain through an injured barrier or via the nasal epithelium, nanoparticles have been considered as vehicles to...
8.
Rona G, Borsos M, Ellis J, Mehdi A, Christie M, Kornyei Z, et al.
Cell Cycle . 2014 Dec; 13(22):3551-64. PMID: 25483092
Phosphorylation by the cyclin-dependent kinase 1 (Cdk1) adjacent to nuclear localization signals (NLSs) is an important mechanism of regulation of nucleocytoplasmic transport. However, no systematic survey has yet been performed...
9.
Hegyi B, Kornyei Z, Ferenczi S, Fekete R, Kudlik G, Kovacs K, et al.
Stem Cells Dev . 2014 May; 23(21):2600-12. PMID: 24870815
Mesenchymal stems or stromal cells (MSCs) are rare multipotent cells with potent regenerative and immunomodulatory properties. Microglial cells (MGs) are specialized tissue macrophages of the central nervous system (CNS) that...
10.
Izak-Nau E, Kenesei K, Murali K, Voetz M, Eiden S, Puntes V, et al.
Nanotoxicology . 2013 Dec; 8 Suppl 1:138-48. PMID: 24344716
Engineered amorphous silica nanoparticles (SiO2 NPs), due to simple and low cost production, are increasingly used in commercial products and produced on an industrial scale. Despite the potential benefits, there...