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Application of a phenotypic drug discovery strategy to identify biological and chemical starting points for inhibition of TSLP production in lung epithelial cells

机译:表型药物发现策略在鉴定抑制肺上皮细胞TSLP产生的生物学和化学起点中的应用

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摘要

Thymic stromal lymphopoietin (TSLP) is a cytokine released by human lung epithelium in response to external insult. Considered as a master switch in T helper 2 lymphocyte (Th2) mediated responses, TSLP is believed to play a key role in allergic diseases including asthma. The aim of this study was to use a phenotypic approach to identify new biological and chemical starting points for inhibition of TSLP production in human bronchial epithelial cells (NHBE), with the objective of reducing Th2-mediated airway inflammation. To this end, a phenotypic screen was performed using poly I:C / IL-4 stimulated NHBE cells interrogated with a 44,974 compound library. As a result, 85 hits which downregulated TSLP protein and mRNA levels were identified and a representative subset of 7 hits was selected for further characterization. These molecules inhibited the activity of several members of the MAPK, PI3K and tyrosine kinase families and some of them have been reported as modulators of cellular phenotypic endpoints like cell-cell contacts, microtubule polymerization and caspase activation. Characterization of the biological profile of the hits suggested that mTOR could be a key activity involved in the regulation of TSLP production in NHBE cells. Among other targeted kinases, inhibition of p38 MAPK and JAK kinases showed different degrees of correlation with TSLP downregulation, while Syk kinase did not seem to be related. Overall, inhibition of TSLP production by the selected hits, rather than resulting from inhibition of single isolated targets, appeared to be due to a combination of activities with different levels of relevance. Finally, a hit expansion exercise yielded additional active compounds that could be amenable to further optimization, providing an opportunity to dissociate TSLP inhibition from other non-desired activities. This study illustrates the potential of phenotypic drug discovery to complement target based approaches by providing new chemistry and biology leads.
机译:胸腺基质淋巴细胞生成素(TSLP)是人肺上皮细胞响应外界损伤而释放的一种细胞因子。被认为是T辅助2淋巴细胞(Th2)介导的反应的主要开关,TSLP被认为在包括哮喘在内的过敏性疾病中起关键作用。这项研究的目的是使用一种表型方法来确定抑制人支气管上皮细胞(NHBE)中TSLP产生的新的生物学和化学起点,以减少Th2介导的气道炎症。为此,使用被44,974种化合物文库审问的经I / C / IL-4刺激的NHBE细胞进行表型筛选。结果,鉴定出85个命中了TSLP蛋白和mRNA水平下调的命中物,并且选择了7个命中的代表性子集进行进一步表征。这些分子抑制了MAPK,PI3K和酪氨酸激酶家族的几个成员的活性,据报道其中一些是细胞表型终点的调节剂,例如细胞与细胞的接触,微管聚合和胱天蛋白酶激活。命中的生物学特征的表征表明,mTOR可能是参与调节NHBE细胞中TSLP产生的关键活动。在其他靶向激酶中,对p38 MAPK和JAK激酶的抑制与TSLP下调显示不同程度的相关性,而Syk激酶似乎没有相关性。总体而言,选定的命中对TSLP产生的抑制作用,而不是抑制单个分离的靶标,似乎是由于具有不同相关程度的活性组合所致。最终,一次成功的扩展运动产生了可能需要进一步优化的其他活性化合物,从而提供了将TSLP抑制与其他不良活动分离的机会。这项研究说明了表型药物发现通过提供新的化学和生物学线索来补充基于靶标的方法的潜力。

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