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一种用于银屑病和湿疹的新型分子疾病分类器。

A novel molecular disease classifier for psoriasis and eczema.

作者信息

Garzorz-Stark Natalie, Krause Linda, Lauffer Felix, Atenhan Anne, Thomas Jenny, Stark Sebastian P, Franz Regina, Weidinger Stephan, Balato Anna, Mueller Nikola S, Theis Fabian J, Ring Johannes, Schmidt-Weber Carsten B, Biedermann Tilo, Eyerich Stefanie, Eyerich Kilian

机构信息

Department of Dermatology and Allergy, Technical University of Munich, Munich, Germany.

Institute of Computational Biology, Helmholtz Center Munich, Neuherberg, Germany.

出版信息

Exp Dermatol. 2016 Oct;25(10):767-74. doi: 10.1111/exd.13077.

Abstract

Novel specific therapies for psoriasis and eczema have been developed, and they mark a new era in the treatment of these complex inflammatory skin diseases. However, within their broad clinical spectrum, psoriasis and eczema phenotypes overlap making an accurate diagnosis impossible in special cases, not to speak about predicting the clinical outcome of an individual patient. Here, we present a novel robust molecular classifier (MC) consisting of NOS2 and CCL27 gene that diagnosed psoriasis and eczema with a sensitivity and specificity of >95% in a cohort of 129 patients suffering from (i) classical forms; (ii) subtypes; and (iii) clinically and histologically indistinct variants of psoriasis and eczema. NOS2 and CCL27 correlated with clinical and histological hallmarks of psoriasis and eczema in a mutually antagonistic way, thus highlighting their biological relevance. In line with this, the MC could be transferred to the level of immunofluorescence stainings for iNOS and CCL27 protein on paraffin-embedded sections, where patients were diagnosed with sensitivity and specificity >88%. Our MC proved superiority over current gold standard methods to distinguish psoriasis and eczema and may therefore build the basis for molecular diagnosis of chronic inflammatory skin diseases required to establish personalized medicine in the field.

摘要

针对银屑病和湿疹的新型特异性疗法已经研发出来,它们标志着这些复杂炎症性皮肤病治疗的新时代。然而,在其广泛的临床范围内,银屑病和湿疹的表型存在重叠,在特殊情况下无法进行准确诊断,更不用说预测个体患者的临床结果了。在此,我们提出一种由NOS2和CCL27基因组成的新型强大分子分类器(MC),在129例患有(i)经典形式;(ii)亚型;以及(iii)临床和组织学上不明确的银屑病和湿疹变体的患者队列中,该分类器诊断银屑病和湿疹的敏感性和特异性均>95%。NOS2和CCL27以相互拮抗的方式与银屑病和湿疹的临床及组织学特征相关,从而突出了它们的生物学相关性。与此一致的是,MC可以转化为石蜡包埋切片上iNOS和CCL27蛋白免疫荧光染色水平,在此诊断患者的敏感性和特异性>88%。我们的MC证明了其在区分银屑病和湿疹方面优于当前的金标准方法,因此可能为建立该领域个性化医疗所需的慢性炎症性皮肤病分子诊断奠定基础。

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