Background
Type: Article

Iron protects childhood acute lymphoblastic leukemia cells from methotrexate cytotoxicity

Journal: Cancer Medicine (20457634)Year: 1 May 2020Volume: 9Issue: Pages: 3537 - 3550
Green • GoldDOI:10.1002/cam4.2982Language: English

Abstract

Drug resistance is a fundamental clinical concern in pediatric acute lymphoblastic leukemia (pALL), and methotrexate (MTX) is an essential chemotherapy drug administered for the treatment. In the current study, the effect of iron in response to methotrexate and its underlying mechanisms were investigated in pALL cells. CCRF-CEM and Nalm6 cell lines were selected as T and B-ALL subtypes. Cells were pretreated with ferric ammonium citrate, exposed to the IC50 concentration of MTX and cell viability was assessed using MTT, colony formation, and flow cytometry assays. Iron-loaded cells were strongly resistant to MTX cytotoxicity. The inhibitory effect of N-acetyl cysteine to reverse the acquired MTX resistance was greater than that of the iron chelator, deferasirox, highlighting the importance of iron-mediated ROS in MTX resistance. Subsequently, the upregulation of BCL2, SOD2, NRF2, and MRP1 was confirmed using quantitative RT-PCR. Moreover, a positive correlation was demonstrated between the MRP1 expression levels and bone marrow iron storage in pALL patients. Further supporting our findings were the hematoxylin and eosin-stained histological sections showing that iron-treated nude mice xenografts demonstrated significantly more liver damage than those unexposed to iron. Overall, iron is introduced as a player with a novel role contributing to methotrexate resistance in pALL. Our findings suggest that the patients' bone marrow iron stores are necessary to be assessed during the chemotherapy, and transfusions should be carefully administrated. © 2020 The Authors. Cancer Medicine published by John Wiley & Sons Ltd.


Author Keywords

acute lymphoblastic leukemiadrug resistanceironmethotrexate

Other Keywords

AcetylcysteineBone MarrowCell Line, TumorCell SurvivalChildChild, PreschoolDeferasiroxDrug Resistance, NeoplasmFemaleFerric CompoundsFree Radical ScavengersHumansInfantInhibitory Concentration 50IronIron Chelating AgentsMaleMethotrexateMultidrug Resistance-Associated ProteinsNF-E2-Related Factor 2Precursor B-Cell Lymphoblastic Leukemia-LymphomaPrecursor Cell Lymphoblastic Leukemia-LymphomaPrecursor T-Cell Lymphoblastic Leukemia-LymphomaProto-Oncogene Proteins c-bcl-2Quaternary Ammonium CompoundsReactive Oxygen SpeciesRNA, MessengerSuperoxide DismutaseTranscriptomeUp-Regulationeosinhematoxylinmanganese superoxide dismutasemultidrug resistance associated protein 1protein bcl 2reactive oxygen metabolitetranscription factor Nrf2BCL2 protein, humanferric ammonium citrateferric ioniron chelating agentmessenger RNAmultidrug resistance associated proteinmultidrug resistance-associated protein 1NFE2L2 protein, humanquaternary ammonium derivativescavengeracute lymphoblastic leukemiaadolescentanimal experimentanimal modelanimal tissueArticlecancer resistancecell protectionclinical articlecolony formationcontrolled studycytotoxicityenzyme inhibitionflow cytometryhumanIC50iron storagemouseMTT assaynonhumanpriority journalprotein expressionreal time polymerase chain reactiontreatment responsedrug effectdrug resistancegeneticsmetabolismphysiologypreschool childtumor cell lineupregulation