Viability fingerprint of glioblastoma cell lines: roles of mitotic, proliferative, and epigenetic targets

被引:0
|
作者
Darja Lavogina
Tõnis Laasfeld
Markus Vardja
Helen Lust
Jana Jaal
机构
[1] University of Tartu,Institute of Clinical Medicine
[2] University of Tartu,Institute of Chemistry
[3] University of Tartu,Department of Computer Science
[4] Tartu University Hospital,Department of Radiotherapy and Oncological Therapy
来源
关键词
D O I
暂无
中图分类号
学科分类号
摘要
Despite the use of multimodal treatment combinations, the prognosis of glioblastoma (GB) is still poor. To prevent rapid tumor recurrence, targeted strategies for the treatment of GB are widely sought. Here, we compared the efficacy of focused modulation of a set of signaling pathways in two GB cell lines, U-251 MG and T98-G, using a panel of thirteen compounds targeting cell cycle progression, proliferation, epigenetic modifications, and DNA repair mechanism. In parallel, we tested combinations of these compounds with temozolomide and lomustine, the standard chemotherapy agents used in GB treatment. Two major trends were found: within individual compounds, the lowest IC50 values were exhibited by the Aurora kinase inhibitors, whereas in the case of mixtures, the addition of DNA methyltransferase 1 inhibitor azacytidine to lomustine proved the most beneficial. The efficacy of cell cycle-targeting compounds was further augmented by combination with radiation therapy using two different treatment regimes. The potency of azacytidine and lomustine mixtures was validated using a unique assay pipeline that utilizes automated imaging and machine learning-based data analysis algorithm for assessment of cell number and DNA damage extent. Based on our results, the combination of azacytidine and lomustine should be tested in GB clinical trials.
引用
收藏
相关论文
共 49 条
  • [1] Viability fingerprint of glioblastoma cell lines: roles of mitotic, proliferative, and epigenetic targets
    Lavogina, Darja
    Laasfeld, Tonis
    Vardja, Markus
    Lust, Helen
    Jaal, Jana
    SCIENTIFIC REPORTS, 2021, 11 (01)
  • [2] Inhibition of epigenetic and cell cycle-related targets in glioblastoma cell lines reveals that onametostat reduces proliferation and viability in both normoxic and hypoxic conditions
    Darja Lavogina
    Mattias Kaspar Krõlov
    Hans Vellama
    Vijayachitra Modhukur
    Valentina Di Nisio
    Helen Lust
    Kattri-Liis Eskla
    Andres Salumets
    Jana Jaal
    Scientific Reports, 14
  • [3] Inhibition of epigenetic and cell cycle-related targets in glioblastoma cell lines reveals that onametostat reduces proliferation and viability in both normoxic and hypoxic conditions
    Lavogina, Darja
    Krolov, Mattias Kaspar
    Vellama, Hans
    Modhukur, Vijayachitra
    Di Nisio, Valentina
    Lust, Helen
    Eskla, Kattri-Liis
    Salumets, Andres
    Jaal, Jana
    SCIENTIFIC REPORTS, 2024, 14 (01)
  • [4] Proliferative Activity and Viability of Fibroblast and Glioblastoma Cell on Various Types of Carbon Nanotubes
    Bobrinetskii, I. I.
    Morozov, R. A.
    Seleznev, A. S.
    Podchernyaeva, R. Ya
    Lopatina, O. A.
    BULLETIN OF EXPERIMENTAL BIOLOGY AND MEDICINE, 2012, 153 (02) : 259 - 262
  • [5] Proliferative Activity and Viability of Fibroblast and Glioblastoma Cell on Various Types of Carbon Nanotubes
    I. I. Bobrinetskii
    R. A. Morozov
    A. S. Seleznev
    R. Ya. Podchernyaeva
    O. A. Lopatina
    Bulletin of Experimental Biology and Medicine, 2012, 153 : 259 - 262
  • [6] Curcumin Loaded Dendrimers Specifically Reduce Viability of Glioblastoma Cell Lines
    Gallien, John
    Srinageshwar, Bhairavi
    Gallo, Kellie
    Holtgrefe, Gretchen
    Koneru, Sindhuja
    Otero, Paulina Sequeiros
    Bueno, Catalina Alvarez
    Mosher, Jamie
    Roh, Alison
    Kohtz, D. Stave
    Swanson, Douglas
    Sharma, Ajit
    Dunbar, Gary
    Rossignol, Julien
    MOLECULES, 2021, 26 (19):
  • [7] Revealing the epigenetic effect of temozolomide on glioblastoma cell lines in therapeutic conditions
    Belter, Agnieszka
    Barciszewski, Jakub
    Barciszewska, Anna-Maria
    PLOS ONE, 2020, 15 (02):
  • [8] β-escin selectively targets the glioblastoma-initiating cell population and reduces cell viability
    Harford-Wright, Elizabeth
    Bidere, Nicolas
    Gavard, Julie
    ONCOTARGET, 2016, 7 (41) : 66865 - 66879
  • [9] VDX-111 targets proliferative pathways in canine cancer cell lines
    Farrell, Kristen B.
    Das, Sunetra
    Nordeen, Steven K.
    Lambert, James R.
    Thamm, Douglas H.
    PLOS ONE, 2024, 19 (05):
  • [10] Silencing ZEB2 Induces Apoptosis and Reduces Viability in Glioblastoma Cell Lines
    Safaee, Sahar
    Fardi, Masoumeh
    Hemmat, Nima
    Khosravi, Neda
    Derakhshani, Afshin
    Silvestris, Nicola
    Baradaran, Behzad
    MOLECULES, 2021, 26 (04):