...
首页> 外文期刊>BMC Bioinformatics >MiRNA therapeutics based on logic circuits of biological pathways
【24h】

MiRNA therapeutics based on logic circuits of biological pathways

机译:基于生物途径逻辑电路的miRNA治疗方法

获取原文
           

摘要

BACKGROUND:In silico experiments, with the aid of computer simulation, speed up the process of in vitro or in vivo experiments. Cancer therapy design is often based on signalling pathway. MicroRNAs (miRNA) are small non-coding RNA molecules. In several kinds of diseases, including cancer, hepatitis and cardiovascular diseases, they are often deregulated, acting as oncogenes or tumor suppressors. miRNA therapeutics is based on two main kinds of molecules injection: miRNA mimics, which consists of injection of molecules that mimic the targeted miRNA, and antagomiR, which consists of injection of molecules inhibiting the targeted miRNA. Nowadays, the research is focused on miRNA therapeutics. This paper addresses cancer related signalling pathways to investigate miRNA therapeutics.RESULTS:In order to prove our approach, we present two different case studies: non-small cell lung cancer and melanoma. KEGG signalling pathways are modelled by a digital circuit. A logic value of 1 is linked to the expression of the corresponding gene. A logic value of 0 is linked to the absence (not expressed) gene. All possible relationships provided by a signalling pathway are modelled by logic gates. Mutations, derived according to the literature, are introduced and modelled as well. The modelling approach and analysis are widely discussed within the paper. MiRNA therapeutics is investigated by the digital circuit analysis. The most effective miRNA and combination of miRNAs, in terms of reduction of pathogenic conditions, are obtained. A discussion of obtained results in comparison with literature data is provided. Results are confirmed by existing data.CONCLUSIONS:The proposed study is based on drug discovery and miRNA therapeutics and uses a digital circuit simulation of a cancer pathway. Using this simulation, the most effective combination of drugs and miRNAs for mutated cancer therapy design are obtained and these results were validated by the literature. The proposed modelling and analysis approach can be applied to each human disease, starting from the corresponding signalling pathway.
机译:背景:在硅实验中,借助计算机模拟,加快体外或体内实验的过程。癌症治疗设计通常基于信号通路。 microRNAs(miRNA)是小的非编码RNA分子。在几种疾病中,包括癌症,肝炎和心血管疾病,它们通常会管制,作为癌肠或肿瘤抑制剂。 miRNA治疗方法基于两种主要种类的分子注射:miRNA模仿,其由注射模拟靶向miRNA的分子和诱导物的分子组成,这包括注射抑制靶向miRNA的分子。如今,该研究专注于miRNA治疗方法。本文涉及癌症相关的信令途径来调查miRNA治疗方法。结果:为了证明我们的方法,我们提出了两种不同的案例研究:非小细胞肺癌和黑色素瘤。 Kegg信令路径由数字电路建模。逻辑值1与相应基因的表达相关联。逻辑值为0与缺席(未表达)基因相关联。信令路径提供的所有可能的关系由逻辑门建模。根据文献衍生的突变也被引入和建模。纸质中广泛讨论了建模方法和分析。通过数字电路分析研究了miRNA治疗剂。在降低致病病症的情况下,获得最有效的miRNA和miRNA的组合。提供了与文献数据相比的获得结果的讨论。结果通过现有数据确认.Conclusions:拟议的研究是基于药物发现和miRNA治疗方法,并使用癌症途径的数字电路模拟。使用该模拟,获得了突变癌症治疗设计的药物和miRNA的最有效组合,并通过文献验证了这些结果。从相应的信令途径开始,可以将所提出的建模和分析方法应用于每个人类疾病。

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