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循环微RNA提示与侵袭性难治性2型乳糜泻生物学功能相关的网络

Circulating microRNAs Suggest Networks Associated with Biological Functions in Aggressive Refractory Type 2 Celiac Disease.

作者信息

Bianchi Nicoletta, Doneda Luisa, Elli Luca, Taccioli Cristian, Vaira Valentina, Scricciolo Alice, Lombardo Vincenza, Terrazzan Anna, Colapietro Patrizia, Terranova Leonardo, Bergamini Carlo, Vecchi Maurizio, Scaramella Lucia, Nandi Nicoletta, Roncoroni Leda

机构信息

Department of Translational Medicine, University of Ferrara, Street L. Borsari 46, 44121 Ferrara, Italy.

Department of Biomedical, Surgical and Dental Sciences, University of Milan, Street Pascal 36, 20133 Milan, Italy.

出版信息

Biomedicines. 2022 Jun 14;10(6):1408. doi: 10.3390/biomedicines10061408.

Abstract

Despite following a gluten-free diet, which is currently the only effective therapy for celiac disease, about 5% of patients can develop serious complications, which in the case of refractory type 2 could evolve towards intestinal lymphoma. In this study, we have identified a set of 15 microRNAs in serum discriminating between the two types of refractory disease. Upregulated miR-770-5p, miR-181b-2-3p, miR-1193, and miR-1226-3p could be useful for the better stratification of patients and the monitoring of disease development, while miR-490-3p was found to be dysregulated in patients with refractory type 1. Finally, by using bioinformatic tools applied to the analysis of the targets of dysregulated microRNAs, we have completed a more precise assessment of their functions. These mainly include the pathway of response to Transforming Growth Factor β cell-cell signaling by Wnt; epigenetic regulation, especially novel networks associated with transcriptional and post-transcriptional alterations; and the well-known inflammatory profiles.

摘要

尽管遵循无麸质饮食,这是目前治疗乳糜泻的唯一有效疗法,但仍有大约5%的患者会出现严重并发症,对于难治性2型患者而言,可能会发展为肠道淋巴瘤。在本研究中,我们在血清中鉴定出一组15种微小RNA,可区分两种类型的难治性疾病。上调的miR-770-5p、miR-181b-2-3p、miR-1193和miR-1226-3p可能有助于更好地对患者进行分层以及监测疾病发展,而miR-490-3p在难治性1型患者中被发现失调。最后,通过使用生物信息学工具分析失调微小RNA的靶标,我们对其功能进行了更精确的评估。这些主要包括对Wnt介导的转化生长因子β细胞间信号传导的反应途径;表观遗传调控,尤其是与转录和转录后改变相关的新网络;以及众所周知的炎症特征。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/cc77/9219665/6b3d3777b691/biomedicines-10-01408-g001.jpg

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