Background
Type: Article

MRNA expression profile of multidrug-resistant genes in acute lymphoblastic leukemia of children, a prognostic value for ABCA3 and ABCA2

Journal: Cancer Biology and Therapy (15384047)Year: January 2014Volume: 15Issue: Pages: 35 - 41
Rahgozar S.a Moafi A.Abedi M. Entezar-e-Ghaem M. Moshtaghian J. Ghaedi K.Esmaeili A.aMontazeri F.
Green • BronzeDOI:10.4161/cbt.26603Language: English

Abstract

Multidrug resistance (MDR) is an important cause of treatment failure in acute lymphoblastic leukemia (ALL). The ABC family of membrane transporters is proposed, albeit with controversy, to be involved in this process. The present study aims to investigate the mRNA expression profile of several genes of this family, including ABCA 2, ABCA 3, ABCB1/MDR1, MRP1/ABCC 1, MRP3/ABCC 3, ABCG2/BCRP, and the intracellular transporter MVP/LRP, in childhood ALL, and to evaluate their association with response to therapy. Some genes in the present research are being studied for the first time in Iran. Using quantitative real time PCR, we evaluated 27 children with ALL at diagnosis and 15 children with normal bone marrow. The status of response to therapy was assessed one year after the onset of therapy through investigating the IgH/TCRγ gene rearrangements. Our findings indicate a considerable and direct relationship between mRNA expression levels of ABCA 2, ABCA 3, MDR1, and MRP1 genes and positive minimal residual disease (MRD) measured after one-year treatment. Statistical analysis revealed that expression of these genes higher than the cutoff point will raise the risk of MRD by 15-, 6.25-, 12-, and 9-fold, respectively. No relationship was found between of MVP/LRP, MRP3 and ABCG2 genes expression and ALL prognoses. Considering the direct and significant relationship between the increased expression of ABCA 2, ABCA 3, MDR1, and MRP1 genes and positive risk of MRD in children with ALL, evaluating the expression profile of these genes on diagnosis may identify high risk individuals and help plan a more efficient treatment strategy. © 2014 Landes Bioscience.


Author Keywords

ABC transporterAcute lymphoblastic leukemiaMinimal residual diseaseMultidrug resistance

Other Keywords

AdolescentATP-Binding Cassette TransportersCase-Control StudiesChildDrug Resistance, NeoplasmFemaleHumansInfantInfant, NewbornMaleMultidrug Resistance-Associated ProteinsPrecursor B-Cell Lymphoblastic Leukemia-LymphomaPrecursor T-Cell Lymphoblastic Leukemia-LymphomaPrognosisRNA, MessengerABC transporteracute lymphoblastic leukemiaminimal residual diseasemultidrug resistanceABC transporter A2abc transporter a3asparaginasebreast cancer resistance proteincytarabinelung resistance proteinmessenger RNAmethotrexatemultidrug resistance associated protein 1multidrug resistance associated protein 3multidrug resistance protein 1prednisoloneunclassified drugarticlebone marrowcancer combination chemotherapycancer prognosiscancer resistancechildhood leukemiaclinical articledrug megadosegene expressiongene rearrangementgeneticshumanhuman cellpreschool childreal time polymerase chain reactionschool childtreatment response