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Dermoscopy Aids in the Diagnosis of Discoid Lupus Erythematosus
Published on: May 16, 2025
Molecular stratification and transcriptome-guided therapeutics in systemic lupus erythematosus with insufficient
Lorenzo Beretta1, Chiu Wai Shirley Chan2, Georgia-Savina Moysidou3
1Referral Center for Systemic Autoimmune Diseases, Fondazione IRCCS Ca' Granda Ospedale Maggiore Policlinico di Milano, Milan, Italy.
Abstract:
Insufficient treatment response is common in systemic lupus erythematosus (SLE) and may be associated with progressive organ damage, yet the molecular underpinnings of treatment resistance remain elusive. RNA sequencing was performed in blood samples from 21 SLE patients who failed to achieve Lupus Low Disease Activity State after six months of treatment with cyclophosphamide (n = 9), rituximab (n = 5), or belimumab (n = 7). Molecular endotypes were identified via unsupervised clustering of Functional Analysis of Individual Microarray Expression (FAIME) scores and cluster stability was validated in an independent cohort (n = 23). Endotype-specific druggability was assessed using the L1000CDS2 platform. The pathway-based molecular stratification revealed three major endotypes among patients with inadequate treatment response: (i) a T cell-centric cluster characterized by enrichment of PD-1 signaling and DNA damage response pathways along with downregulation of CD28 co-stimulatory signaling, indicative of T cell senescence; (ii) a cytokine-driven cluster defined by elevated IL-6 and IL-17 signaling and reduced IL-2 signaling, suggesting a Th17/Treg imbalance and potential responsiveness to cytokine inhibition or low-dose IL-2 therapy; and (iii) an inflammasome-dominant cluster. A multinomial LASSO regression-derived Molecular Endotype Classification Index (MECI) - validated via 1000-fold bootstrap resampling - demonstrated potential as a surrogate marker for endotype assignment (median AUC-ROC 0.889). Transcriptome reversal analysis suggested that patients of the T cell-dominant endotype may be more responsive to CD19 CAR-T cell therapy. In summary, distinct molecular endotypes underlie insufficient response to therapy in SLE, providing a framework for personalized treatment strategies and improved clinical trial design.
Insights
Systemic lupus erythematosus (SLE) treatment resistance is linked to distinct molecular endotypes. Identifying these subtypes, like T cell-senescence or cytokine-driven profiles, can guide personalized therapies and clinical trials for better patient outcomes.
Area of Science:
- Immunology
- Genomics
- Rheumatology
Background:
- Insufficient treatment response in systemic lupus erythematosus (SLE) contributes to organ damage.
- The molecular basis of treatment resistance in SLE remains poorly understood.
Purpose of the Study:
- To identify molecular endotypes associated with inadequate treatment response in SLE patients.
- To explore potential therapeutic strategies and surrogate markers for these endotypes.
Main Methods:
- RNA sequencing of blood samples from SLE patients with insufficient response to standard therapies.
- Unsupervised clustering of Functional Analysis of Individual Microarray Expression (FAIME) scores to define molecular endotypes.
- Validation in an independent cohort and assessment of endotype-specific druggability using the L1000CDS2 platform.
Main Results:
- Three distinct molecular endotypes were identified: T cell-centric (senescence), cytokine-driven (Th17/Treg imbalance), and inflammasome-dominant.
- A Molecular Endotype Classification Index (MECI) showed potential as a surrogate marker for endotype assignment (AUC-ROC 0.889).
- T cell-dominant endotype patients may benefit from CD19 CAR-T cell therapy.
Conclusions:
- Distinct molecular endotypes underlie treatment resistance in SLE.
- This stratification provides a framework for personalized treatment strategies.
- Findings can inform the design of future clinical trials for SLE therapies.
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