Targeting Ca 2+ and Mitochondrial Homeostasis by Antipsychotic Thioridazine in Leukemia Cells.
Vivian W R MoraesVivian M SantosEloah Rabello SuarezLetícia S FerrazRayssa de Mello LopesGiuliana P MognolJoana D'Arc CampeiroJoão Agostinho Machado-NetoFabio D NascimentoMirian Akemi Furuie HayashiIvarne Luis Dos Santos TersariolDonald D NewmeyerTiago RodriguesPublished in: Life (Basel, Switzerland) (2022)
Mitochondria have pivotal roles in cellular physiology including energy metabolism, reactive oxygen species production, Ca 2+ homeostasis, and apoptosis. Altered mitochondrial morphology and function is a common feature of cancer cells and the regulation of mitochondrial homeostasis has been identified as a key to the response to chemotherapeutic agents in human leukemias. Here, we explore the mechanistic aspects of cytotoxicity produced by thioridazine (TR), an antipsychotic drug that has been investigated for its anticancer potential in human leukemia cellular models. TR exerts selective cytotoxicity against human leukemia cells in vitro. A PCR array provided a general view of the expression of genes involved in cell death pathways. TR immediately produced a pulse of cytosolic Ca 2+ , followed by mitochondrial uptake, resulting in mitochondrial permeabilization, caspase 9/3 activation, endoplasmic reticulum stress, and apoptosis. Ca 2+ chelators, thiol reducer dithiothreitol, or CHOP knockdown prevented TR-induced cell death. TR also exhibited potent cytotoxicity against BCL-2/BCL-xL-overexpressing leukemia cells. Additionally, previous studies have shown that TR exhibits potent antitumor activity in vivo in different solid tumor models. These findings show that TR induces a Ca 2+ -mediated apoptosis with involvement of mitochondrial permeabilization and ER stress in leukemia and it emphasizes the pharmacological potential of TR as an adjuvant in antitumor chemotherapy.
Keyphrases
- induced apoptosis
- cell cycle arrest
- cell death
- oxidative stress
- endoplasmic reticulum stress
- diabetic rats
- acute myeloid leukemia
- endothelial cells
- bone marrow
- pi k akt
- reactive oxygen species
- signaling pathway
- induced pluripotent stem cells
- poor prognosis
- machine learning
- pluripotent stem cells
- protein kinase
- squamous cell carcinoma
- blood pressure
- diffuse large b cell lymphoma
- drug delivery
- long non coding rna
- mass spectrometry
- human health
- early stage
- endoplasmic reticulum
- electronic health record