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Cutaneous Leishmaniasis in the Dorsal Skin of Hamsters: a Useful Model for the Screening of Antileishmanial Drugs
Published on: April 21, 2012
Innate biosignature of treatment failure in human cutaneous leishmaniasis
María Adelaida Gómez1,2, Ashton Trey Belew3,4, Deninson Alejandro Vargas5,6
1Centro Internacional de Entrenamiento e Investigaciones Médicas (CIDEIM), Cali, Colombia. mgomez@cideim.org.co.
Abstract:
The quality and magnitude of the immune and inflammatory responses determine the clinical outcome of Leishmania infection, and contribute to the efficacy of antileishmanial treatments. However, the precise immune mechanisms involved in healing or in the chronic immunopathology of human cutaneous leishmaniasis (CL) are not well understood. Through sequential transcriptomic profiling of blood monocytes, neutrophils, and eosinophils over the course of systemic treatment with meglumine antimoniate, we revealed that a heightened and sustained Type-I interferon response signature is a hallmark of treatment failure (TF) in CL patients infected with Leishmania (Viannia) panamensis and L.V. braziliensis. The transcriptomes of pre-treatment, mid-treatment and end-of-treatment samples were interrogated to identify predictive and prognostic biomarkers of TF. A composite score derived from the expression of 11 differentially expressed genes (common between monocytes, neutrophils and eosinophils) is predictive of TF. Similarly, machine learning models constructed using data from pre-treatment as well as post-treatment samples, accurately classify treatment outcome into cure and TF. Results from this study instigate the evaluation of Type-I interferon responses as immunological targets for host-directed therapies for the treatment of CL, and highlight the feasibility of using transcriptional signatures as predictive biomarkers of outcome for therapeutic decision making.
Insights
A heightened Type-I interferon response predicts treatment failure in cutaneous leishmaniasis (CL). Transcriptional signatures can identify patients likely to fail therapy, guiding future host-directed treatments for CL.
Area of Science:
- Immunology
- Molecular Biology
- Genomics
Background:
- The immune response dictates Leishmania infection outcomes and treatment effectiveness.
- Mechanisms underlying healing and chronic immunopathology in human cutaneous leishmaniasis (CL) remain unclear.
Purpose of the Study:
- To identify immune mechanisms and biomarkers predicting treatment failure (TF) in CL.
- To explore the role of Type-I interferon responses in CL treatment outcomes.
Main Methods:
- Sequential transcriptomic profiling of monocytes, neutrophils, and eosinophils during meglumine antimoniate treatment.
- Analysis of gene expression in pre-treatment, mid-treatment, and end-of-treatment samples.
- Development of predictive biomarkers using gene expression signatures and machine learning models.
Main Results:
- A sustained Type-I interferon response signature is a hallmark of TF in CL patients infected with Leishmania (Viannia) species.
- A composite gene expression score of 11 differentially expressed genes predicts TF.
- Machine learning models accurately classify treatment outcomes (cure vs. TF) using transcriptional data.
Conclusions:
- Type-I interferon responses are potential immunological targets for host-directed CL therapies.
- Transcriptional signatures offer a feasible approach for predicting CL treatment outcomes and informing therapeutic decisions.
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