PO.ET07.02 · 实验与分子治疗

表征增强子-基因调控在5-氟尿嘧啶毒性和耐药性中的关键作用

Characterizing the critical role of enhancer-gene regulation in 5-fluorouracil toxicity and resistance

海报缩略图:表征增强子-基因调控在5-氟尿嘧啶毒性和耐药性中的关键作用
编号 3140 展板 8 时间 4/20 02:00–05:00 区域 Section 18 主讲 Hannah Krause, BS
分会场 Pharmacogenomics and Translational Biomarkers for Precision Cancer Therapy
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作者与单位 Authors & Affiliations

Hannah Marie Krause1, Julia Magee2, Kelly Bouchonville1, Lauryn Allyn Hahn1, Ryan Jonathan Swartz1, Brianna Bembenek3, Lulu Jiang1, Steven M. Offer1

1University of Iowa Carver College of Medicine, Iowa City, IA,2University of Iowa, Iowa City, IA,3Mayo Clinic, Rochester, MN

摘要 Abstract

中文摘要
以5-氟尿嘧啶(5FU)为基础的化疗仍是大多数结直肠癌患者的一线治疗。然而,约30%接受5FU治疗的患者经历严重、危及生命的毒性。二氢嘧啶脱氢酶(DPD,DPYD基因)介导5FU分解代谢的限速步骤。DPYD的有害基因变异与循环5FU浓度升高以及5FU毒性风险的显著增加相关。DPYD中已识别出五个有害变异作为毒性的临床生物标志物,并已促成前瞻性基因分型和针对这些变异携带者的差异化剂量推荐,如近期FDA对5-FU前药卡培他滨标签的更新中所述。我们此前的研究还确立了表观遗传调控DPD表达的重要性。在本研究中,我们利用现有的表观遗传数据库识别DPYD的候选增强子元件。我们选取了20个新颖的高优先级推定增强子,结合报告基因检测和跨多种细胞模型应用的CRISPRi进行进一步研究。后续研究将探讨靶向这些调控机制的方法,作为提高以5-FU为基础的疗法在结直肠癌中的局部疗效的手段。
查看英文原文 English abstract
5-Fluorouracil (5FU)-based chemotherapy remains a front-line treatment for most patients with colorectal cancer. However, approximately 30% of patients who receive 5FU experience severe, life-threatening toxicity. Dihydropyrimidine dehydrogenase (DPD, DPYD gene) mediates the rate determining step in 5FU catabolism. Deleterious genetic variations in DPYD have been associated with elevated concentrations of circulating 5FU and significantly increased risk for 5FU toxicity. Five deleterious variants in DPYD have been identified as clinical biomarkers of toxicity and have led to prospective genotyping and differential dosing recommendations for carriers of these variants, as noted on recent updates to the FDA label for the 5-FU prodrug capecitabine. Our previous studies also established the importance of epigenetic control of DPD expression. In this study, we used existing epigenetic repositories to identify candidate enhancer elements for DPYD . We selected 20 novel high-priority putative enhancers for further study using a combination of reporter assays and CRISPRi applied across multiple cell models. Further studies will investigate means to target these regulatory mechanisms as a means to increase localized efficacy of 5-FU-based therapies in colorectal cancer.
利益披露 Disclosure
H. M. Krause, None.. J. Magee, None.. K. Bouchonville, None.. L. A. Hahn, None.. R. J. Swartz, None.. B. Bembenek, None.. L. Jiang, None.. S. M. Offer, None.

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