首页> 外文会议>2018 IEEE International Work Conference on Bioinspired Intelligence >A Systems Biology Approach to Identify Candidate Targets to Downregulate Angiogenic Gene Expression in Cancer
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A Systems Biology Approach to Identify Candidate Targets to Downregulate Angiogenic Gene Expression in Cancer

机译:一种系统生物学方法来识别候选目标以下调癌症中的血管生成基因表达

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The control of angiogenesis in cancer has been recognized as a promising therapeutic target for many diseases like cancer. Specifically, the Angiopoietin-2 - Vascular Endothelial Growth Factor system has demonstrated special relevance in the regulation of angiogenesis, highlighting the importance of the complex coordination among vascular signaling molecules [3] for the identification of targets for future anti-angiogenic therapy. Current approaches to regulate the angiogenesis process focus their efforts only on VEGF regulation but this has proven ineffective in many kinds of cancer, prompting the need for further understanding of how the vasculature can be effectively targeted in tumors [9]. Given the complex properties of gene expression in this process, a Systems Biology approach is required to identify putative candidates to robustly regulate genes involved in angiogenesis. We propose a model with candidate targets to downregulate the angiogenic genes expression. We identified a strong regulation of the AKT1-ANGPT2-KDR axis by miR200B and miR200C. Also, we identified a strong regulation of SRC by miR34a. These candidate miRNAs could therefore have a potential for the development of novel therapeutic strategies against angiogenesis in cancer.
机译:在癌症中控制血管生成已被认为是许多疾病如癌症的有希望的治疗靶标。具体而言,Angiopoietin-2-血管内皮生长因子系统在血管生成的调节中表现出特殊的相关性,突显了血管信号分子之间复杂配合的重要性[3]对于确定未来抗血管生成治疗的靶标非常重要。当前调节血管生成过程的方法仅将努力集中在VEGF调节上,但是事实证明,这种方法在许多种癌症中均无效,这促使人们需要进一步了解如何有效地靶向肿瘤中的脉管系统[9]。考虑到该过程中基因表达的复杂特性,需要一种系统生物学方法来鉴定推测的候选物,以强有力地调节涉及血管生成的基因。我们提出了一个具有候选目标的模型,以下调血管生成基因的表达。我们发现miR200B和miR200C对AKT1-ANGPT2-KDR轴有很强的调节作用。此外,我们发现miR34a对SRC有很强的调节作用。因此,这些候选miRNA可能具有开发针对癌症血管生成的新型治疗策略的潜力。

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