首页> 外文会议> >Modeling and control for in vitro combination therapy using ONYX-015 replicating adenovirus
【24h】

Modeling and control for in vitro combination therapy using ONYX-015 replicating adenovirus

机译:使用ONYX-015复制型腺病毒进行体外联合治疗的建模和对照

获取原文

摘要

Replicating genetically modified adenoviruses have shown promise as a new treatment approach against cancer. Recombinant adenoviruses replicate only in cancer cells which contain certain mutations, such as the loss of functional p53, as is the case in the virus ONYX-015. The successful entry of the viral particle into target cells is strongly dependent on the presence of the main receptor for adenovirus, the coxsackie- and adeno-virus receptor (CAR). This receptor is frequently down-regulated in highly malignant cells, rendering this population less vulnerable to viral attack. It has been shown that use of MEK inhibitors can up-regulate CAR expression, resulting in enhanced adenovirus entry into the cells. However, inhibition of MEK results in G1 cell cycle arrest, rendering infected cells temporarily unable to produce virus. This forces a tradeoff. While drug mediated up-regulation of CAR enhances virus entry into cancer cells, the consequent cell cycle arrest inhibits production of new virus particles and the replication of the virus. Optimal control-based schedules of MEK inhibitor application should increase the efficacy of this treatment, maximizing the overall tumor toxicity by exploiting the dynamics of CAR expression and viral production. We introduce two mathematical models of these dynamics and show simple optimal control based strategies which motivate this approach.
机译:复制基因修饰的腺病毒已显示出有望作为一种新的抗癌治疗方法。重组腺病毒仅在含有某些突变(例如功能性p53缺失)的癌细胞中复制,就像病毒ONYX-015一样。病毒颗粒能否成功进入靶细胞,在很大程度上取决于腺病毒的主要受体,柯萨奇和腺病毒受体(CAR)的存在。该受体在高度恶性的细胞中经常被下调,从而使该种群更不容易受到病毒攻击。已经显示,使用MEK抑制剂可以上调CAR表达,导致增强的腺病毒进入细胞。但是,抑制MEK会导致G1细胞周期停滞,使受感染的细胞暂时无法产生病毒。这迫使进行权衡。虽然药物介导的CAR上调增强了病毒进入癌细胞的能力,但随之而来的细胞周期停滞抑制了新病毒颗粒的产生和病毒的复制。基于最佳对照的MEK抑制剂应用方案可提高该治疗的疗效,并通过利用CAR表达和病毒产生的动力学最大化整体肿瘤毒性。我们介绍了这些动力学的两个数学模型,并给出了基于简单最优控制的策略来激发这种方法。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号