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利用果蝇癌症模型对大型癌症数据进行功能解析的策略。

Strategies for Functional Interrogation of Big Cancer Data Using Drosophila Cancer Models.

机构信息

Department of Biological Science, Florida State University, Tallahassee, FL 32306, USA.

出版信息

Int J Mol Sci. 2020 May 26;21(11):3754. doi: 10.3390/ijms21113754.

Abstract

Rapid development of high throughput genome analysis technologies accompanied by significant reduction in costs has led to the accumulation of an incredible amount of data during the last decade. The emergence of big data has had a particularly significant impact in biomedical research by providing unprecedented, systems-level access to many disease states including cancer, and has created promising opportunities as well as new challenges. Arguably, the most significant challenge cancer research currently faces is finding effective ways to use big data to improve our understanding of molecular mechanisms underlying tumorigenesis and developing effective new therapies. Functional exploration of these datasets and testing predictions from computational approaches using experimental models to interrogate their biological relevance is a key step towards achieving this goal. Given the daunting scale and complexity of the big data available, experimental systems like Drosophila that allow large-scale functional studies and complex genetic manipulations in a rapid, cost-effective manner will be of particular importance for this purpose. Findings from these large-scale exploratory functional studies can then be used to formulate more specific hypotheses to be explored in mammalian models. Here, I will discuss several strategies for functional exploration of big cancer data using Drosophila cancer models.

摘要

高通量基因组分析技术的快速发展伴随着成本的显著降低,使得过去十年中积累了难以置信的大量数据。大数据的出现对生物医学研究产生了特别重大的影响,为包括癌症在内的许多疾病状态提供了前所未有的系统水平的访问,同时也带来了有希望的机遇和新的挑战。可以说,癌症研究目前面临的最大挑战是找到有效的方法来利用大数据来提高我们对肿瘤发生分子机制的理解,并开发有效的新疗法。对这些数据集进行功能探索,并使用实验模型来检验计算方法的预测,以研究其生物学相关性,是实现这一目标的关键步骤。鉴于可用的大数据规模之大、复杂性之高,像果蝇这样的实验系统将特别重要,因为它们可以快速、经济有效地进行大规模的功能研究和复杂的遗传操作。然后,可以将这些大规模探索性功能研究的结果用于制定更具体的假说,以便在哺乳动物模型中进行探索。在这里,我将讨论使用果蝇癌症模型对癌症大数据进行功能探索的几种策略。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d996/7312059/e484f145f5f8/ijms-21-03754-g001.jpg

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