PO.ET09.09 · 实验与分子治疗
Nesuparib在BRCA野生型胰腺癌异种移植模型中增强吉西他滨与白蛋白结合型紫杉醇的抗肿瘤疗效
Nesuparib enhances anti-tumor efficacy with gemcitabine and nab-paclitaxel in BRCA wild type pancreatic cancer xenograft model
作者与单位 Authors & Affiliations
摘要 Abstract
中文摘要
胰腺导管腺癌是最具侵袭性和致死性的癌症之一,治疗选择有限。吉西他滨与白蛋白结合型紫杉醇联合方案(GnP)是胰腺癌的一线治疗,但中位总生存期仍不足一年,且高毒性限制了其使用。
为解决这一局限,我们探究了Nesuparib(一种针对多聚ADP核糖基转移酶1/2和端锚聚合酶1/2的双重抑制剂)是否能在BRCA野生型胰腺癌临床前模型中增强与GnP的抗肿瘤疗效。
我们首先在BRCA野生型Mia Paca-2细胞中进行了细胞活力实验,以确定Nesuparib是否增加基于吉西他滨的化疗的细胞毒性。与单独GnP治疗相比,Nesuparib与GnP联合使活力降低了70%以上。在Mia Paca-2体内异种移植模型中,与对照组相比,GnP治疗导致31%的肿瘤生长抑制(TGI),而Nesuparib与GnP联合引起79%的TGI。在体内实验结束时,对分离出的肿瘤中各种分子的蛋白水平变化进行了研究,以表征Nesuparib与GnP治疗组相较于其他治疗组显著肿瘤缩小背后的可能机制。有趣的是,与溶媒对照相比,GnP治疗组中c-Myc和MYBL2水平升高,推测可能在药物治疗后激活了代偿机制,而这些上调被Nesuparib与GnP联合治疗所抑制。我们还观察到,与对照或GnP治疗相比,Nesuparib与GnP联合治疗中cyclinD1、beta-Catenin和RAD51降低。总的来说,这些数据表明这些分子调控与Nesuparib在BRCA野生型模型中对端锚聚合酶的抑制密切相关,并且与单独化疗相比,Nesuparib与标准化疗联合进一步减少了细胞增殖并延迟了DNA修复。
总体而言,我们的结果表明,Nesuparib与GnP化疗联合可能是胰腺癌治疗的一种新型且合理的治疗选择。
查看英文原文 English abstract
Pancreatic ductal adenocarcinoma is one of the most aggressive and fatal cancer with limited treatment options. The combination of gemcitabine and nab-paclitaxel (GnP) is the first-line treatment for pancreatic cancer, but the median overall survival remains less than a year, and high toxicity limits its use.
To address this limitation, we explored whether Nesuparib, a dual inhibitor for poly-ADP-ribosyl transferase 1/2 and tankyrase 1/2, enhances anti-tumor efficacy with GnP in BRCA wild-type pancreatic preclinical models.
We first conducted a cell viability assay in BRCA wild-type Mia Paca-2 cells to determine whether Nesuparib increases the cytotoxicity of gemcitabine-based chemotherapy. Combination of Nesuparib with GnP decreased viability by more than 70% compared to GnP treatment alone. In Mia Paca-2 in vivo xenograft model, GnP treatment resulted in 31% tumor growth inhibition (TGI ) compared to the control group, while Nesuparib with GnP elicited TGI by 79%. At the end of the in vivo experiment, changes in various molecules at protein levels were investigated in the separated tumors to characterize plausible mechanisms underlying the significant tumor reduction in Nesuparib with GnP-treated group compared to other treatment groups. Interestingly, c-Myc and MYBL2 levels were increased in the GnP treated one compared to the vehicle control speculating that compensatory mechanisms might be activated after the drug treatment, while these upregulations were restrained by Nesuparib with GnP treatment. We also observed that cyclinD1, beta- Catenin, and RAD51 were decreased in Nesuparib with GnP treatment compared to the control or GnP treatment. Collectively, the data suggests that those molecular modulations are closely associated with the tankyrase inhibition by Nesuparib in BRCA wild-type model, and that combining Nesuparib with the standard chemotherapy further reduces cell proliferation and delays DNA repair compared to chemotherapy alone.
Overall, our results suggest that combination with Nesuparib with GnP chemotherapy could be a novel and rational therapeutic option for pancreatic cancer treatment.
利益披露 Disclosure
B. Cheon,
Onconic therapeutic Inc. Employment.
J. Shin,
Onconic therapeutics Inc. Employment.
G. Kang,
Onconic Therapeutic Inc. Employment.
D. Park,
Onconic Therapeutics Inc. Employment.
J. Kim,
Onconic Therapeutics Inc. Employment.
H. Cha,
Onconic therapeutics Inc. Employment.