Molecular events and cytotoxic effects of a novel thiosemicarbazone derivative in human leukemia and lymphoma cell lines
Author(s) -
Íris Mattos SantosPirath,
Laura Otto Walter,
Mariana Franzoni Maioral,
Lucas Antônio Pacheco,
Larissa Sens,
Ricardo J. Nunes,
Maria Cláudia SantosSilva
Publication year - 2020
Publication title -
hematology/oncology and stem cell therapy
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 0.666
H-Index - 22
eISSN - 1658-3876
pISSN - 2589-0646
DOI - 10.1016/j.hemonc.2020.07.007
Subject(s) - semicarbazone , cytotoxic t cell , leukemia , lymphoma , cancer research , cell culture , derivative (finance) , biology , chemistry , immunology , genetics , stereochemistry , in vitro , economics , financial economics
The present study aimed to investigate the cytotoxic effect of 38 new thiosemicarbazone derivatives on hematological neoplastic cells lines and to select the most effective compounds to investigate the main molecular mechanisms involved in cell death. Cytotoxicity screening on Daudi and Jurkat cells revealed that only compound 1b met the selection criteria; therefore, it was chosen for further investigation. Cell viability of Daudi, Jurkat, Molt-4, Namalwa, K562, and MM.1S cell lines decreased in a concentration- and time-dependent manner after compound1b incubation; nevertheless the compound neither caused significant hemolysis nor reduction in peripheral blood mononuclear cell viability. Although no changes were observed on cell cycle or Ki-67 expression, compound1b induced apoptotic-like cell death with mitochondrial involvement, Bax/Bcl-2 inversion, AIF release, survivin inhibition, and caspase-3 activation in both Daudi and Jurkat cells. Furthermore, the compound reduced NFκB expression in Jurkat cells. In Daudi cells, compound1b also decreased CHOP, Akt, pAkt, and MAPK/ERK2 expression, thereby suggesting modulation of UPR, PI3K/Akt/mTOR, and MAPK/ERK signaling pathways. Finally, the compound was able to reduce the cell viability of samples collected from patients with different lymphoid neoplasms subtypes, showing that thiosemicarbazones derivatives could be used in the development of new drugs with anticancer activity.
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