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首页> 外文期刊>Biochemical Pharmacology >Immunomodulatory tetracyclines ameliorate DNBS-colitis: Impact on microRNA expression and microbiota composition
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Immunomodulatory tetracyclines ameliorate DNBS-colitis: Impact on microRNA expression and microbiota composition

机译:免疫调节四环素改善DNBS-结肠炎:对MicroRNA表达和微生物瘤组成的影响

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摘要

ObjectiveThe use of immunomodulatory antibiotics to simultaneously target different factors involved in intestinal inflammatory conditions is an interesting but understudied pharmacological strategy. A great therapeutic potential has been obtained with minocycline and doxycycline in experimental colitis. Therefore, understanding the contribution of the different activities of immunomodulatory tetracyclines is crucial for the improvement and translation of their use into clinic. DesignA comparative pharmacological study including tetracyclines and other antibiotic or immunomodulatory drugs was performed in 2,4-dinitrobenzene sulfonic acid (DNBS)-induced colitis in mice. The correlation between the therapeutic efficacy of each drug and changes in the gut microbiota composition, markers of barrier integrity, inflammatory mediators, microRNAs and TLRs was analysed to identify the main mechanisms of action. ResultsTetracyclines counteracted most of the markers found altered in DNBS-colitis, which differed from effects of corticosteroid treatment. Of note, administration of tetracyclines led to increased mucosal protection, associated with up-regulated expression of CCL2, miR-142 and miR-375. All drugs with antibiotic activity ameliorated the progression of inflammation and reduced neutrophil-related genes, such as miR-223, despite their effects were not associated with restored intestinal dysbiosis. However, reduced bacterial richness was correlated with increased expression of TLR2 and TLR9 in antibiotic-treated groups and TLR6 was also up-regulated by the immunomodulatory tetracyclines with higher efficacy (doxycycline, minocycline and tigecycline). ConclusionThe anti-inflammatory effect of tetracyclines involves specific modifications in TLR and microRNA expression leading to an improved microbial-derived signalling and mucosal protection. These results support the potential of immunomodulatory tetracyclines to prevent inflammation-associated tissue damage in acute intestinal inflammation.
机译:客观使用免疫调节抗生素同时靶向肠炎症条件的不同因素是一个有趣但被升值的药理学策略。在实验性结肠炎中含有米诺环素和茂霉素获得了巨大的治疗潜力。因此,了解免疫调节四环素不同活动的贡献对于改善和翻译它们对诊所的改善至关重要。在2,4-二硝基苯磺酸(DNB)诱导小鼠的结肠炎中,在2,4-二硝基苯磺酸(DNB)中进行Designa比较药理研究。分析了每种药物治疗效果与肠道微生物组成,阻隔性的标记,炎症介质,微大RNA和TLR之间的相关性与肠道微生物组成,炎症介质,微大RNS和TLR之间的相关性。结果级孢菌素抵消了DNBS-结肠炎中发现的大部分标记,这与皮质类固醇治疗的影响不同。值得注意的是,四环素的给药导致粘膜保护增加,与CCl2,miR-142和miR-375的上调表达相关。所有具有抗生素活性的药物都会改善炎症和中性粒细胞相关基因的进展,例如miR-223,尽管它们的效果与恢复的肠道失活性无关。然而,降低的细菌性质与抗生素处理的组中的TLR2和TLR9的增加相关,并且TLR6也由免疫调节四环素升级,具有较高疗效(毒素,米诺环素和甲嘧嘧素)。结论Tetracyclines的抗炎作用涉及TLR和MicroRNA表达中的特异性修饰,导致改善的微生物衍生信号传导和粘膜保护。这些结果支持免疫调节四环素的潜力,以防止急性肠炎症中的炎症相关的组织损伤。

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  • 来源
    《Biochemical Pharmacology 》 |2018年第2018期| 共13页
  • 作者单位

    CIBER-EHD Department of Pharmacology ibs.GRANADA Center for Biomedical Research (CIBM);

    CIBER-EHD Department of Pharmacology ibs.GRANADA Center for Biomedical Research (CIBM);

    CIBER-EHD Department of Pharmacology ibs.GRANADA Center for Biomedical Research (CIBM);

    CIBER-EHD Department of Pharmacology ibs.GRANADA Center for Biomedical Research (CIBM);

    CIBER-EHD Department of Pharmacology ibs.GRANADA Center for Biomedical Research (CIBM);

    Clinical Microbiology Service Hospital Universitario San Cecilio ibs.GRANADA Red de Investigaci;

    Clinical Microbiology Service Hospital Universitario San Cecilio ibs.GRANADA Red de Investigaci;

    CIBER-EHD Department of Pharmacology ibs.GRANADA Center for Biomedical Research (CIBM);

    School of Health Sport and Bioscience University of East Lodon;

    CIBER-EHD Department of Pharmacology ibs.GRANADA Center for Biomedical Research (CIBM);

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 药理学 ;
  • 关键词

    Tetracyclines; Intestinal inflammation: immunomodulation; Microbiota; microRNA; TLR;

    机译:四环素;肠炎症:免疫调节;微生物瘤;MicroRNA;TLR;

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