PO.MCB01.01 · 分子与细胞生物学

双重BET和CDK9抑制在胰腺导管腺癌小鼠模型中的活性

Activity of dual BET and CDK9 inhibition in murine models of pancreatic ductal adenocarcinoma

海报缩略图:双重BET和CDK9抑制在胰腺导管腺癌小鼠模型中的活性
编号 1908 展板 16 时间 4/20 09:00–12:00 区域 Section 20 主讲 Michela Cadarso, BS
分会场 Cell Cycle
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作者与单位 Authors & Affiliations

Michela Cadarso1, Austin Stram1, Lucas Koeppel1, Robert J. Millikin2, Md Shahadat Hossan1, Eleanor Riedl1, Ron Stewart2, Jeremy D. Kratz1

1University of Wisconsin-Madison, Madison, WI,2Morgridge Institute for Research, Madison, WI

摘要 Abstract

中文摘要
背景:胰腺导管腺癌(PDAC)仍然是美国癌症相关死亡的主要原因之一,5年生存率为13%。获得性耐药在进展中发挥关键作用,然而针对罕见分子亚型已开发出靶向治疗药物。此前的表型筛选工作显示溴结构域和末端外(BET)以及周期蛋白依赖性激酶9(CDK9)在PDAC类器官模型中具有活性。在此,我们研究两个独立的异位患者来源异种移植(PDX)小鼠模型中BET抑制剂(ZEN3694)和CDK9抑制剂(VIP152)的活性。 方法:免疫缺陷的Rag2 KO/II2rg KO(R2G2)小鼠皮下注射两种PDAC模型PDX1和PDX2。这些模型共有的病理变异包括KRAS G12D、MTAP缺失和CDKN2A/B缺失。PDX2伴有SMAD4的同时缺失。小鼠群体接受ZEN3694(50 mg/kg)、VIP152(6 mg/kg)或联合治疗。VIP152在每个治疗周期开始时每周给药一次,ZEN3694连续给药五天后休息两天。共进行四个七天周期,主要终点为第28天的肿瘤体积比较。由一位盲法共同研究者每两周测量体重和肿瘤体积。通过动物状况、全血细胞计数(CBC)和综合代谢检测(CMP)评估毒性。 结果:所有治疗均耐受良好,在研究期间没有任何治疗组体重减轻>20%。对于PDX1,中位体重增加了+1.21%,VIP152与ZEN3694联合组的体重变化无显著性(-14.1%)。对于PDX2,中位体重下降了-4.17%,联合组的体重变化无显著性(-8.85%)。CBC和CMP结果显示各治疗组在终末采血时无显著差异。对于PDX1,中位肿瘤生长增加了+308%,VIP152(+223%)或ZEN3694(+210%)的生长变化无显著性,而VIP152与ZEN3694联合产生了生长停滞(-1.56%,p<0.036)。对于PDX2,中位肿瘤生长增加了+1,127%,VIP152(+1,083%)或ZEN3694(+643%)的生长变化无显著性,而联合组产生了显著的生长减少(+375%,p<0.024)。 结论:在两个独立的PDAC PDX模型中,ZEN3694和VIP152产生肿瘤生长抑制。所有治疗在两个独立的PDAC模型PDX1和PDX2中均耐受良好。正在进行的研究正在分析早期时间点,以探究涉及RNA聚合酶II激活短暂破坏的推定机制。平行分析正在检查这种破坏在癌组织中相对于背景肝脏的选择性,以指示该药物组合在癌症类型中的选择性,包括那些Myc可响应治疗挑战而动态过表达的类型。
查看英文原文 English abstract
Background : Pancreatic ductal adenocarcinoma (PDAC) remains a leading cause of cancer related mortality in the U.S. with a 13% 5-year survival rate. Acquired resistance plays a critical role in progression, however targeted therapeutics have been developed for rare molecular subsets. Prior phenotypic screening efforts showed activity of bromodomain and extraterminal (BET) and cyclin dependent kinase 9 (CDK9) in PDAC organoid models. Here, we examine two independent heterotopic patient derived xenograft (PDX) murine models for the activity of BET inhibitor (ZEN3694) and CDK9 inhibitor (VIP152). Methods : Immunodeficient Rag2 KO /II2rg KO (R2G2) mice received subcutaneous injections of two PDAC models, PDX1 and PDX2. The models shared pathologic variants including KRAS G12D , MTAP loss, and CDKN2A/B loss. PDX2 had concurrent loss of SMAD4. Mice colonies were treated with ZEN3694 (50 mg/kg), VIP152 (6 mg/kg), or the combination. VIP152 was administered once per week at the start of each treatment cycle and ZEN3694 was administered for five consecutive days followed by a two-day rest period. Four seven-day cycles were administered with primary endpoint of tumor volume comparison at day 28. Body weight and tumor volumes were measured biweekly by a blinded co-investigator. Toxicity was assessed by animal condition, complete blood count (CBC), and comprehensive metabolic panel (CMP) testing. Results : All treatments were well tolerated, with no treatment group achieving weight loss >20% over the study duration. For PDX1, median weights increased by +1.21%, with non-significant change in weight for the combination of VIP152 with ZEN3694 (-14.1%). For PDX2, median weights decreased by -4.17%, with non-significant change in weight for the combination group (-8.85%). CBC and CMP results reveal no significant differences at terminal draws across treatment groups. For PDX1, median tumor growth was found to increase by +308%, with non-significant change in growth for VIP152 (+223%) or ZEN3694 (+210%), while the combination of VIP152 with ZEN3694 yielded growth arrest (-1.56%, p<0.036). For PDX2, median tumor growth was found to increase by +1,127%, with non-significant change in growth for VIP152 (+1,083%) or ZEN3694 (+643%), while the combination group yielded significant reduction in growth (+375%, p<0.024). Conclusions : Across two independent PDAC PDX models, ZEN3694 and VIP152 yield tumor growth inhibition. All treatments were well tolerated in two independent PDAC models, PDX1and PDX2. Ongoing studies are analyzing early timepoints for a putative mechanism involving transient disruption in the activation of RNA polymerase II. Parallel analysis is examining the selectivity of this disruption in cancer tissues as opposed to background liver to index the selectivity of this drug combination in cancer types, including those where Myc can be dynamically overexpressed in response to therapeutic challenge.
利益披露 Disclosure
M. Cadarso, None.. L. Koeppel, None.. R. J. Millikin, None.. E. Riedl, None.. R. Stewart, None. J. D. Kratz, Mirati Therapeutics Other, provided drug for research.

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