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Published on: April 8, 2016
Transcriptome immune-regulatory differences between leprosy patients and type 1 reaction patients, before onset of
Wilian Correa-Macedo1,2,3, Monica Dallmann-Sauer2,3,4, Marianna Orlova2,3
1Department of Biochemistry, Faculty of Medicine and Health Sciences, McGill University, Montréal, Québec, Canada.
Insights
Leprosy reactions, specifically Type I reversal reactions (T1R), pose a risk for nerve damage. This study found distinct immune responses in blood cells before T1R onset, suggesting potential for early detection and intervention in leprosy patients.
Area of Science:
- Immunology
- Genomics
- Infectious Diseases
Background:
- Leprosy is a chronic infectious disease caused by Mycobacterium leprae.
- Leprosy reactions, particularly Type I reversal reactions (T1R), are inflammatory episodes leading to nerve damage and disability.
- Early intervention strategies are crucial for preventing T1R and associated complications in leprosy patients.
Purpose of the Study:
- To investigate the transcriptomic differences in peripheral blood cells before the onset of T1R in leprosy patients.
- To identify potential biomarkers for predicting T1R development.
- To gain insight into the pathogenesis of T1R.
Main Methods:
- Prospective study enrolling 32 leprosy patients.
- Whole blood samples were challenged with M. leprae sonicate or media.
- Transcriptomic analysis (expression and usage) was performed on RNA extracted from blood cells.
- Comparison of transcriptomic profiles between patients who developed T1R and those who remained T1R-free over three years.
Main Results:
- No significant baseline differences in transcript expression or usage between T1R-destined and T1R-free groups.
- T1R-destined patients showed a significantly different transcriptomic immune response to M. leprae antigens.
- Upregulated transcripts in the T1R-destined group were enriched in pathways related to intracellular pathogens, apoptosis regulation, and inflammation.
- Transcript usage analysis revealed distinct proportions in T1R-destined patients' cells upon in-vitro challenge.
Conclusions:
- Peripheral blood cells of T1R-destined patients exhibit a distinct, dysregulated inflammatory response, including increased apoptosis regulation, prior to T1R symptom onset.
- Transcriptomic profiling offers insights into the early pathogenesis of T1R.
- These findings may pave the way for early detection and prevention of T1R in leprosy.
Abstract:
Leprosy is a chronic disease of the skin and peripheral nerves caused by Mycobacterium leprae. A major public health and clinical problem are leprosy reactions, which are inflammatory episodes that often contribute to nerve damage and disability. Type I reversal reactions (T1R) can occur after microbiological cure of leprosy and affect up to 50% of leprosy patients. Early intervention to prevent T1R and, hence, nerve damage, is a major focus of current leprosy control efforts. In a prospective study, we enrolled and collected samples from 32 leprosy patients before the onset of T1R. Whole blood aliquots were challenged with M. leprae sonicate or media and total RNA was extracted. After a three-year follow-up, the transcriptomic response was compared between cells from 22 patients who remained T1R-free and 10 patients who developed T1R during that period. Our analysis focused on differential transcript (i.e. isoform) expression and usage. Results showed that, at baseline, cells from T1R-destined and T1R-free subjects had no main difference in their transcripts expression and usage. However, the cells of T1R patients displayed a transcriptomic immune response to M. leprae antigens that was significantly different from the one of cells from leprosy patients who remained T1R-free. Transcripts with significantly higher upregulation in the T1R-destined group, compared to the cells from T1R-free patients, were enriched for pathways and GO terms involved in response to intracellular pathogens, apoptosis regulation and inflammatory processes. Similarly, transcript usage analysis pinpointed different transcript proportions in response to the in-vitro challenge of cells from T1R-destined patients. Hence, transcript usage in concert with transcript expression suggested a dysregulated inflammatory response including increased apoptosis regulation in the peripheral blood cells of T1R-destined patients before the onset of T1R symptoms. Combined, these results provided detailed insight into the pathogenesis of T1R.
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