Abstract 4625: Influence of intrinsic apoptotic pathway gene polymorphisms on the development and progression of acute myeloid leukemia: Case-control study

2015 
Proceedings: AACR 106th Annual Meeting 2015; April 18-22, 2015; Philadelphia, PA Background: Apoptosis plays a pivotal role in maintaining cellular homeostasis mainly in rapidly proliferating tissue like hematopoietic tissue. Defective apoptosis is one of the hallmarks of cancer as it plays a crucial role in malignant transformation through disruption of homeostasis mechanism resulting in acquired chemo-resistance. Aim: The functional single nucleotide polymorphisms (SNPs) in apoptotic genes can influence the gene expression leading to altered apoptosis that may promote malignancy. Moreover, these SNPs might also influence the treatment outcome, since most of the chemotherapeutic drugs being used are aimed to induce apoptosis of malignant cells. The present study mainly aims to evaluate the role of SNPs in BCL2 (-938C>A (rs2279115); BAX (-248G>A (rs4645878), CASP9 [-1263A>G (rs4645978); -712C>T (rs4645981); -293del (rs4645982); Ex5+32G>A (rs1052576)] with development of acute myeloid leukemia (AML) and treatment outcome in terms of disease free survival (DFS) among patients who have achieved complete remission(CR) rates after first induction chemotherapy. Methods: The study includes 225 AML cases and 307 age-gender matched controls for case-control comparison. The study was approved by ethical committee of Osmania University. Before collecting 5ml of blood sample, each participant had provided written informed consent. Baseline line clinical characteristics and follow-up data were collected from the tumor registries with the help of oncologist. Genomic DNA was extracted and SNPs were genotyped using PCR, RFLP, Tetra primer techniques. The genotype data was subjected to various statistical analyses to correlate with disease occurrence and treatment outcome in terms of CR and DFS rates using SPSS Software. We have also performed non parametric analysis to know gene-gene interaction through Multi Dimensionality Reduction (MDR). Results: The single SNP analysis had revealed that BCL2 (rs2279115), BAX (rs4645878), CASP9 (rs4645978) and CASP9 (rs4645982) were significantly associated with the origin of AML. Survival analysis had shown that minor alleles of both CASP9 (rs4645978 and rs4645982) SNPs were associated with reduced DFS rates (log rank p = 0.02). Further, cox regression analysis had also confirmed these observations where CASP9 rs4645978 (HR = 1.91; 95%CI = 1.19-3.07; p = 0.008) and rs4645982 (HR = 1.88; 95%CI = 1.06-3.35; p = 0.03) had elevated risk for relapse and shorter DFS rates. The MDR analysis had revealed that CASP9 (rs4645981) is the highest predicting variable. The best interaction model was found to be CASP9 (-1263A>G (rs4645978); -712C>T (rs4645981); and BCL2 (rs2279115) with CVC = 8/10 and TAB = 0.604. Conclusion: Our results suggest that CASP9 (rs4645978 and rs4645982) SNPs might influence the AML development and DFS rates after first induction chemotherapy. Citation Format: Anuradha Cingeetham, Sugunakar Vuree, Nageswara Rao Dunna, Manjula Gorre, Raghunadharao Digumarti, Sudha Sinha, Vishnupriya Satti. Influence of intrinsic apoptotic pathway gene polymorphisms on the development and progression of acute myeloid leukemia: Case-control study. [abstract]. In: Proceedings of the 106th Annual Meeting of the American Association for Cancer Research; 2015 Apr 18-22; Philadelphia, PA. Philadelphia (PA): AACR; Cancer Res 2015;75(15 Suppl):Abstract nr 4625. doi:10.1158/1538-7445.AM2015-4625
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