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Cancer Plasticity

Our team investigates fundamental mechanisms and translates findings from bench to bedside, combining preclinical models with clinical insight.

Researcher at ICRC with focus on translational medicine. Combines preclinical insights with clinical practice across cardiology, neurology, and oncology programs.

Currently leads / contributes to interdisciplinary projects bridging molecular biology, imaging, and patient care at St. Anne's University Hospital Brno.

Research Group

Team size
Team size: 13 Researchers
Place
Place: Building B1, 4th Floor
Collaborates with
Collaborates with Mayo Clinic, USA

Head of Research Group

doc. Mgr. Karel Souček, Ph.D.
doc. Mgr. Karel Souček, Ph.D.
doc. Mgr. Karel Souček, Ph.D.

Members

Mgr. Paula Hoffmanová

Mgr. Paula Hoffmanová

Ph.D. Student

Mgr. Andrea Rousová

Mgr. Andrea Rousová

Ph.D. Student

Kateřina Svobodová

Kateřina Svobodová

Research Technician

Katarína Marečková

Katarína Marečková

Research Technician

Mgr. Jana Ondřejová

Research Technician

Mgr. Lucia Knopfová, Ph.D.

Mgr. Lucia Knopfová, Ph.D.

Postdoctoral Researcher

Mgr. Jarmila Navrátilová, Ph.D.

Postdoctoral Researcher

prof. Mgr. Petr Beneš, Ph.D.

prof. Mgr. Petr Beneš, Ph.D.

Head Researcher

Mgr. Stjepan Uldrijan, CSc.

Mgr. Stjepan Uldrijan, CSc.

Head Researcher

Kateřina Káňová

Kateřina Káňová

Lab Specialist

doc. Mgr. Karel Souček, Ph.D.

doc. Mgr. Karel Souček, Ph.D.

Senior Research Team Leader

Mgr. Ondřej Naar

Mgr. Ondřej Naar

Research Technician Specialist

Mgr. Matěj Přikryl

Research Technician Specialist

Team Assistant

Main Objectives

  1. Correlation of the plasticity of cancer cells with aberrant signaling, dissemination capability and chemoresistance.
  2. Description of heterogeneity of expression of markers defining most aggressive cells at single cell level within tumor.
  3. Introducing the methods for expansion and characterisation of clinical samples maintaining its original phenotype (e.g. patient-derived xenografts, 3D in vitro cultures of organoids/tumoroids).

Research focus

The major research interest is to understand the plasticity and heterogeneity of cancer cells and the role of the microenvironment in cancer progression. Cellular plasticity has been considered as a factor contributing to resistance to cancer chemotherapy and poor prognosis. Simultaneously, recurrence and chemoresistance of many types of cancers are believed to be tightly linked with the biology of cancer stem-like cells or tumor-initiating cells (CSCs/TICs) and circulating tumor cells (CTCs). There is increasing evidence that cancer plasticity induced by different stimuli is a source of CSCs/TICs/CTCs. Currently, we identified in vitro and in vivo experimental models showing heterogeneity in cancer cell plasticity in terms of CSC and plasticity profile. We are characterizing single cells and single cell-derived clones to understand molecular mechanisms associated with cell plasticity and its role in cancer progression, therapy resistance and generation of the cells with CSCs/TICs/CTCs-like properties.

Technological equipment

  • Pre-clinical in vivo Imaging System – analysis of tumor progression and therapy response in small experimental animals
  • Widefield High-Content Analysis System – automated microscope for multiparametric fluorescent cell analysis in 2D and 3D culture
  • Seahorse XF Analyzer – analysis of changes in cell bioenergetics in real-time

Selected Results

  • Total number of defended PhD students within the team (2011-2022): 13
  • Total number of defended M.Sc. studends within the team (2011-2022): 26
  • Muresan XM, Slabáková E, Procházková J, Drápela S, Fedr R, Pícková M, Vacek O, Víchová R, Suchánková T, Bouchal J, Kürfürstová D, Král M, Hulínová T, Sýkora RP, Študent V, Hejret V, van Weerden WM, Puhr M, Pustka V, Potěšil D, Zdráhal Z, Culig Z, Souček K. Toll-like receptor 3 (TLR3) overexpression induces invasion of prostate cancer cells, whereas its activation triggers apoptosis. Am J Pathol. 2022
  • Lenárt S, Lenárt P, Knopfová L, Kotasová H, Pelková V, Sedláková V, Vacek O, Pokludová J, Čan V, Šmarda J, Souček K, Hampl A, Beneš P. TACSTD2 upregulation is an early reaction to lung infection. Sci Rep. 2022 
  • Drápela, S., Khirsariya, P., Van Weerden, W.M., Fedr, R., Suchánková, T., Búzová, D., Červený, J., Hampl, A., Puhr, M., Watson, W.R., Culig, Z., Krejčí, L., Paruch, K., and Souček, K. The CHK1 inhibitor MU380 significantly increases the sensitivity of human docetaxel-resistant prostate cancer cells to gemcitabine through the induction of mitotic catastrophe. Molecular Oncology. 2020
  • Remšík J, Binó L, Kahounová Z, Kharaishvili G, Šimecková Š, Fedr R, Kucírková T, Lenárt S, Muresan XM, Slabáková E, Knopfová L, Bouchal J, Král M, Beneš P, Soucek K. Trop-2 plasticity is controlled by epithelial-to-mesenchymal transition. Carcinogenesis. 2018: 39, 1411-1418.
  • Knopfová L, Biglieri E, Volodko N, Masařík M, Hermanová M, Glaus Garzón JF, Dúcka M, Kučírková T, Souček K, Šmarda J, Beneš P, Borsig L.Transcription factor c-Myb inhibits breast cancer lung metastasis by suppression of tumor cell seeding. Oncogene. 2018; 37: 1020-1030.
  • Verlande A, Krafčíková M, Potěšil D, Trantírek L, Zdráhal Z, Elkalaf M, Trnka J, Souček K, Rauch N, Rauch J, Kolch W, Uldrijan S. Metabolic stress regulates ERK activity by controlling KSR-RAF heterodimerization. EMBO Rep. 2018; 19: 320-336. 
  • Samadder, P., Suchankova, T., Hylse, O., Khirsariya, P., Nikulenkov, F., Drapela, S., Strakova, N., Vanhara, P., Vasickova, K., Kolarova, H., Bino, L., Bittova, M., Ovesna, P., Kollar, P., Fedr, R., Esner, M., Jaros, J., Hampl, A., Krejci, L., Paruch, K., and Soucek, K. Synthesis and Profiling of a Novel Potent Selective Inhibitor of CHK1 Kinase Possessing Unusual N-trifluoromethylpyrazole Pharmacophore Resistant to Metabolic N-dealkylation. Molecular Cancer Therapeutics. 2017; 16, 1831-1842.