Zoltan Vereb
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Investigation and production of stem cell derived hepatocytes for drug development purposes
Open Date: 2017-07-01
Close Date: 2021-06-01
Grant: Close
Initiate the Hungarian participation in the international ECRIN network
Open Date: 2016-07-01
Close Date: 2019-06-01
Grant: Close
Altered regenerative and immunomodulatory function of mesenchymal stem cells in tumor cell-stroma cell interaction
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Grant: Close
Altered regenerative and immunomodulatory function of mesenchymal stem cells in tumor cell-stroma cell interaction
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Articles (25)
Foams Set a New Pace for the Release of Diclofenac Sodium
Medicated foams have emerged as promising alternatives to traditional carrier systems in pharmaceutical research. Their rapid and convenient application allows for effective treatment of extensive or hirsute areas, as well as sensitive or inflamed skin surfaces. Foams possess excellent spreading capabilities on the skin, ensuring immediate drug absorption without the need for intense rubbing. Our research focuses on the comparison of physicochemical and biopharmaceutical properties of three drug delivery systems: foam, the foam bulk liquid, and a conventional hydrogel. During the development of the composition, widely used diclofenac sodium was employed. The safety of the formulae was confirmed through an in vitro cytotoxicity assay. Subsequently, the closed Franz diffusion cell was used to determine drug release and permeation in vitro. Ex vivo Raman spectroscopy was employed to investigate the presence of diclofenac sodium in various skin layers. The obtained results of the foam were compared to the bulk liquid and to a conventional hydrogel. In terms of drug release, the foam showed a rapid release, with 80% of diclofenac released within 30 min. In summary, the investigated foam holds promising potential as an alternative to traditional dermal carrier systems, offering faster drug release and permeation.
Year:
2024
Does Diffusely Infiltrating Lobular Carcinoma of the Breast Arise from Epithelial–Mesenchymal Hybrid Cells?
Classic diffusely infiltrating lobular carcinoma has imaging features divergent from the breast cancers originating from the terminal ductal lobular units and from the major lactiferous ducts. Although the term “invasive lobular carcinoma” implies a site of origin within the breast lobular epithelium, we were unable to find evidence supporting this assumption. Exceptional excess of fibrous connective tissue and the unique cell architecture combined with the aberrant features at breast imaging suggest that this breast malignancy has not originated from cells lining the breast ducts and lobules. The only remaining relevant component of the fibroglandular tissue is the mesenchyme. The cells freshly isolated and cultured from diffusely infiltrating lobular carcinoma cases contained epithelial–mesenchymal hybrid cells with both epithelial and mesenchymal properties. The radiologic and histopathologic features of the tumours and expression of the mesenchymal stem cell positive markers CD73, CD90, and CD105 all suggest development in the direction of mesenchymal transition. These hybrid cells have tumour-initiating potential and have been shown to have poor prognosis and resistance to therapy targeted for malignancies of breast epithelial origin. Our work emphasizes the need for new approaches to the diagnosis and therapy of this highly fatal breast cancer subtype.
Year:
2023
Collaborators (12)
Anita Kovács
University of Szeged
Gabor Koncz
University of Debrecen
Zsuzsanna Bata-Csorgo
professor
University of Szeged
Tamás Bellák
Assistant professor
University of Szeged
Arpad Szoor
University of Debrecen
Zsolt Bacso
associate professor
University of Debrecen Medical School and Health Science Center
Márta Tóth
University of Debrecen
Barbara Gubán
University of Szeged
Endre Kristóf
senior lecturer
Debreceni Egyetem
Tünde Fekete
senior lecturer
University of Debrecen
Szilvia Berko
associate professor
University of Szeged
András Vörös
University of Szeged

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