Maciej Florczyk
University of Warmia and Mazury in Olsztyn
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Publication
Featured researches published by Maciej Florczyk.
PLOS ONE | 2016
Paweł Brzuzan; Maciej Florczyk; Alicja Łakomiak; Maciej Woźny
Molecular analyses show that challenging fish with microcystin-LR (MC-LR) causes perturbations of microRNA (miRNA) signaling. However, the significance and scope of these alterations is currently unknown. To address this issue, we studied miRNA gene expression in the liver of juvenile whitefish, C. lavaretus, during 28 days of exposure to a subacute dose of MC-LR (100 μg·kg-1 body mass). Using genomic resources of Atlantic salmon (AGKD03), the mature miRNA library of Atlantic salmon (miRBase-21) and bioinformatics tools (sRNAbench), we discovered and annotated a total of 377 distinct mature miRNAs belonging to 93 families of evolutionary conserved miRNAs, as well as 24 novel mature miRNA candidates that were mapped to 14 distinct S. salar miRNA precursors. miRNA-Seq transcriptome profiling of liver tissues revealed differential miRNA expression in control and treated fish at 14 days (73 miRNAs were modulated) and at 28 days (83 miRNAs) of the treatment, subsequently validated by qPCR for nine selected differentially expressed miRNAs. Additional qPCR study confirmed the miRNA-Seq data and revealed consistent, aberrant miRNAs expression profile in the later phase of MC-LR hepatotoxicity (7–28 d). Functional annotation analysis revealed that the aberrantly expressed miRNAs have target genes involved in cytoskeletal remodeling, cell metabolism, cell cycle regulation and apoptosis; dysregulation of these processes in liver cells leads to cirrhosis and hepatocellular carcinoma in humans. To enable deeper insight into the molecular responses of liver cells in fish exposed to MC-LR, we expanded the miRNAome analysis by inclusion of miRNA variants (isomiRs) profiles, and we showed that the isomiR profiles of liver specific MiR122, and a few other miRNAs, correlated with MC-LR treatment. Given the importance of isomiRs for disease biology in mammals, we believe that further research focused on the miRNA isoforms will bring us closer to better understanding the molecular mechanisms of MC-LR hepatotoxicity.
Toxicology and Applied Pharmacology | 2016
Maciej Woźny; Natalia Ziółkowska; Piotr Gomułka; Stefan Dobosz; Alicja Łakomiak; Maciej Florczyk; Paweł Brzuzan
Environmental biotechnology | 2014
Maciej Florczyk; Alicja Łakomiak; Maciej Woźny; Paweł Brzuzan
Journal of Fish Diseases | 2016
Maciej Florczyk; Paweł Brzuzan; J Krom; Maciej Woźny; Alicja Łakomiak
Comparative Biochemistry and Physiology B | 2016
Alicja Łakomiak; Paweł Brzuzan; Ewa Jakimiuk; Maciej Florczyk; Maciej Woźny
Polish Journal of Veterinary Sciences | 2015
Paweł Brzuzan; Maciej Woźny; Wolińska-Nizioł L; Piasecka A; Maciej Florczyk; Ewa Jakimiuk; Maciej Góra; M. K. Łuczyński; Maciej Gajęcki
Fish Physiology and Biochemistry | 2015
Paweł Brzuzan; C. Kramer; Alicja Łakomiak; Ewa Jakimiuk; Maciej Florczyk; Maciej Woźny
Toxicology Letters | 2015
Paweł Brzuzan; Maciej Florczyk; Alicja Łakomiak; Maciej Woźny
Toxicology Letters | 2015
Maciej Woźny; Natalia Ziółkowska; Piotr Gomułka; Stefan Dobosz; Maciej Florczyk; Paweł Brzuzan
Neurotoxicity Research | 2018
Maciej Florczyk; Paweł Brzuzan; Alicja Łakomiak; Ewa Jakimiuk; Maciej Woźny