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首页> 外文期刊>Journal of Advances in Medical and Pharmaceutical Sciences >MicroRNA Memory II: A Novel Scoring Integration Model for Prediction of Human Disease by MicroRNA/MicroRNA Quantum Multi-Interaction
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MicroRNA Memory II: A Novel Scoring Integration Model for Prediction of Human Disease by MicroRNA/MicroRNA Quantum Multi-Interaction

机译:MicroRNA Memory II:通过MicroRNA / MicroRNA量子多重相互作用预测人类疾病的新型计分整合模型

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摘要

Aims: To further investigate quantum characters of the microRNA (miRNA) gene as the disease memory device, we calculated neo-score tool for miRNA/miRNA multi-interaction. Since the potential miRNA/target interaction is not one-to-one correspondence; therefore, the network of miRNA/mRNA is too busy to achieve the goal of prognosis and diagnose human disease. Methodology: Neo-score tool based on quantum and electrodynamics for miRNA/miRNA multi-interaction, which are Dynamic Nexus Score (DNS) and Electric Field Tangent score (EFTS) is compare with Context+ Score Change (CSC) on PolymiRTS database, an integrated platform of the functional impact of genetic polymorphisms in miRNA seed regions and miRNA target sites within 149 human disease. Results: The DNS was correlated with CSC. Since the EFTS was mathematically functioned into the DNS, the function of the DNS to the EFTS was integrated together disease prediction on CSC. Further, a possibility was suggested in this context that miRNA/miRNA multi-interaction on the algorithmic function could be applied for specific discernment of disease without miRNA/target interaction complex. Conclusion: MiRNA/miRNA multi-interaction may have an important role for prognostic and diagnostic technologies for human health. This is the first report demonstrating that miRNA memory would manage the etiologies of human diseases.
机译:目的:为了进一步研究作为疾病记忆装置的microRNA(miRNA)基因的量子特征,我们计算了用于miRNA / miRNA多重相互作用的neo-score工具。由于潜在的miRNA /靶标相互作用不是一对一的对应关系;因此,miRNA / mRNA的网络太忙,无法实现预后和诊断人类疾病的目标。方法:将基于量子和电动力学的miRNA / miRNA多重相互作用的新得分工具,即动态Nexus得分(DNS)和电场切线得分(EFTS)与PolymiRTS数据库上的上下文+得分变化(CSC)进行比较, 149种人类疾病中miRNA种子区域和miRNA目标位点的遗传多态性功能影响的研究平台。结果:DNS与CSC相关。由于EFTS在数学上已应用到DNS中,因此将DNS对EFTS的功能集成到CSC的疾病预测中。此外,在这种情况下,有人提出在没有miRNA /靶标相互作用复合物的情况下,可以将miRNA / miRNA在算法功能上的多重相互作用用于疾病的特异性识别。结论:MiRNA / miRNA的多重相互作用可能对人类健康的预后和诊断技术具有重要作用。这是第一份证明miRNA记忆将控制人类疾病病因的报告。

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