An unbiased tissue transcriptome analysis identifies potential markers for skin phenotypes and therapeutic responses in atopic dermatitis

特应性皮炎 转录组 表型 计算生物学 生物 生物信息学 医学 遗传学 免疫学 基因表达 基因
作者
Ayano Fukushima‐Nomura,Hiroshi Kawasaki,Kiyoshi Yashiro,Shoko Obata,Keiji Tanese,Tamotsu Ebihara,Hidehisa Saeki,Takafumi Etoh,Takehiro Hasegawa,Junshi Yazaki,Jun Seita,Osamu Ohara,Aiko Sekita,Tomohiro Miyai,Koichi Ashizaki,Haruhiko Koseki,Kazuhiro Sakurada,Eiryo Kawakami,Masayuki Amagai
出处
期刊:Nature Communications [Nature Portfolio]
卷期号:16 (1): 4981-4981 被引量:23
标识
DOI:10.1038/s41467-025-59340-x
摘要

Atopic dermatitis (AD) is a skin disease exhibiting clinical and molecular heterogeneity, thereby jeopardizing the development of personalized treatments. Here we pursue a cross-sectional and longitudinal cohort analysis of 951 whole-skin samples, employing an unsupervised decomposition analysis to link gene expression profiles to disease severity, six distinct skin phenotypes, and blood cytokines representative of given endotypes. Specifically, type 2 and type 17 responses are associated with major skin phenotypes such as erythema and induration, while type 1 response is upregulated in lichen amyloidosis of AD patients. Longitudinal analysis of patients treated with dupilumab finds sustained gene signatures related to type 17 response in lesional skin and upregulated transcription factors in non-lesional skin of patients with poor treatment outcomes. Lastly, several extracellular matrix organization-associated genes are correlated with clinical severity and treatment response to dupilumab. Our findings thus provide potential skin and blood biomarkers for assessing endotypes and therapeutic responses in AD to pave the way for personalized medicine. Atopic dermatitis (AD) with complex manifestations and genetic associations. Here the author profile the transcriptome of 951 skin samples from patients with AD to link skin phenotypes, clinical severity, and efficacy of dupilumab treatment to specific types of immune responses and gene features to serve clues for personalized medicine.
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