سجل مستودعي · ncbi-prjna1294752
Cathelicidin LL-37-induced transcriptome of human keratinocyte identifies chemokine CXCL10 link to T cell-mediated rosacea pathogenesis via JAK-1/STAT-1 pathway
Rosacea is a chronic inflammatory disease of facial skin with unknown pathophysiology. Abnormal overexpression of human antimicrobial peptide LL-37 is a hallmark of rosacea. However, its significance in the rosacea pathogenesis is not fully understood. We sought to understand the molecular mechanisms of LL-37-mediated rosacea-like inflammation in an in-vitro model of normal human epidermal keratinocytes. Transcriptome profiling of LL-37-treated keratinocytes identified signatures of interferon (IFN)-stimulating genes (ISGs) such as CXCL10, IFIT2, RSAD2 and CXCL11 among the top upregulated differentially expressed genes. Gene ontogeny (GO) enrichment of biological processes revealed activation of cellular response to molecules of bacterial origin, response to chemokines, and cytokine mediated signaling pathways. While KEGG enrichment analysis revealed the activation of TNF signaling, IL-17 signaling, NF-kB signaling and chemokine signaling among the most significant pathways. Remarkably, T cell recruiting chemokine CXCL10 turns out to be the most abundant inflammatory mediator overexpressed upon LL-37 exposure. Mechanistically, LL-37 induced CXCL10 production relied on JAK-1/STAT-1 signaling pathway. In summary, our findings provide a crucial link to keratinocyte: T cell crosstalk and blockade of CXCL10:CXCR3 axis or JAK-1/STAT-1 pathways can be an effective anti-inflammatory strategy to reduce rosacea inflammation by restricting pathogenic T cells infiltration. Overall design: Primary keratinocytes (NHEK) from three healthy donors were stimulated with or without LL-37 in a 6-well collagen 1-coated culture plate for 6-hours. Cells were lysed and RNA was isolated using RNAeasy Mini kit (Qiagen). RNA was further processed for Affymetrix microarray.
تم التحقق من رقم الوصول وارتباطه بدولة خليجية. ولا يثبت التسجيل وحده أن البرنامج البحثي الأوسع ما زال نشطًا.
01 / نظرة عامة على المشروع
ما الذي يثبته السجل.
- النطاق الجغرافي
- Qatar connection indexed in BioProject metadata
- نوع المشروع
- Repository project
- مجال البحث
- Pathogen genomics and infectious disease
- السنوات
- 2025–
- حالة المشروع
- repository_recorded
- أساس تحديد الحالة
- Registered in NCBI BioProject on 2025/07/22; operational lifecycle is not asserted.
- تاريخ دليل الحالة
- 2025-07-22
- الحجم
- 1 BioProject accession grouped by matching submitter, date, data type and narrative.
02 / المؤسسات والمجتمع
من وما الذي يربطه المشروع.
- الجهات القائدة
- Weill Cornell Medicine Qatar
- الجهات الشريكة
- غير مذكور
- الكائن / المجتمع
- Homo sapiens
03 / البيانات والإتاحة
ما الموجود وكيف يمكن الوصول إليه.
أنواع البيانات
- Transcriptome or Gene expression
- Array
- Transcriptome
إتاحة البيانات
Public repository metadata with linked data where supplied by the submitter
المعرّفات
- BioProject
PRJNA1294752
04 / الدليل والمصدر
لماذا أُدرج هذا السجل.
أساس الإدراج
Exact country-name match in authoritative NCBI BioProject metadata; repeated submissions are grouped into one Atlas series.
ملاحظة تحريرية
Repository verification confirms the accession and regional connection, not whether the broader research programme remains active.
المصادر
- primary record source تم التحقق في 2026-08-15
الإصدار v0.2.0
