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In Situ complement activation and T-cell immunity in leprosy spectrum: An immunohistological study on leprosy lesional skin

Mycobacterium leprae (M. leprae) infection causes nerve damage and the condition worsens often during and long after treatment. Clearance of bacterial antigens including lipoarabinomannan (LAM) during and after treatment in leprosy patients is slow. We previously demonstrated that M. leprae LAM dama...

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Autores principales: Bahia El Idrissi, Nawal, Iyer, Anand M., Ramaglia, Valeria, Rosa, Patricia S., Soares, Cleverson T., Baas, Frank, Das, Pranab K.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2017
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5432188/
https://www.ncbi.nlm.nih.gov/pubmed/28505186
http://dx.doi.org/10.1371/journal.pone.0177815
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author Bahia El Idrissi, Nawal
Iyer, Anand M.
Ramaglia, Valeria
Rosa, Patricia S.
Soares, Cleverson T.
Baas, Frank
Das, Pranab K.
author_facet Bahia El Idrissi, Nawal
Iyer, Anand M.
Ramaglia, Valeria
Rosa, Patricia S.
Soares, Cleverson T.
Baas, Frank
Das, Pranab K.
author_sort Bahia El Idrissi, Nawal
collection PubMed
description Mycobacterium leprae (M. leprae) infection causes nerve damage and the condition worsens often during and long after treatment. Clearance of bacterial antigens including lipoarabinomannan (LAM) during and after treatment in leprosy patients is slow. We previously demonstrated that M. leprae LAM damages peripheral nerves by in situ generation of the membrane attack complex (MAC). Investigating the role of complement activation in skin lesions of leprosy patients might provide insight into the dynamics of in situ immune reactivity and the destructive pathology of M. leprae. In this study, we analyzed in skin lesions of leprosy patients, whether M. leprae antigen LAM deposition correlates with the deposition of complement activation products MAC and C3d on nerves and cells in the surrounding tissue. Skin biopsies of paucibacillary (n = 7), multibacillary leprosy patients (n = 7), and patients with erythema nodosum leprosum (ENL) (n = 6) or reversal reaction (RR) (n = 4) and controls (n = 5) were analyzed. The percentage of C3d, MAC and LAM deposition was significantly higher in the skin biopsies of multibacillary compared to paucibacillary patients (p = <0.05, p = <0.001 and p = <0.001 respectively), with a significant association between LAM and C3d or MAC in the skin biopsies of leprosy patients (r = 0.9578, p< 0.0001 and r = 0.8585, p<0.0001 respectively). In skin lesions of multibacillary patients, MAC deposition was found on axons and co-localizing with LAM. In skin lesions of paucibacillary patients, we found C3d positive T-cells in and surrounding granulomas, but hardly any MAC deposition. In addition, MAC immunoreactivity was increased in both ENL and RR skin lesions compared to non-reactional leprosy patients (p = <0.01 and p = <0.01 respectively). The present findings demonstrate that complement is deposited in skin lesions of leprosy patients, suggesting that inflammation driven by complement activation might contribute to nerve damage in the lesions of these patients. This should be regarded as an important factor in M. leprae nerve damage pathology.
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spelling pubmed-54321882017-05-26 In Situ complement activation and T-cell immunity in leprosy spectrum: An immunohistological study on leprosy lesional skin Bahia El Idrissi, Nawal Iyer, Anand M. Ramaglia, Valeria Rosa, Patricia S. Soares, Cleverson T. Baas, Frank Das, Pranab K. PLoS One Research Article Mycobacterium leprae (M. leprae) infection causes nerve damage and the condition worsens often during and long after treatment. Clearance of bacterial antigens including lipoarabinomannan (LAM) during and after treatment in leprosy patients is slow. We previously demonstrated that M. leprae LAM damages peripheral nerves by in situ generation of the membrane attack complex (MAC). Investigating the role of complement activation in skin lesions of leprosy patients might provide insight into the dynamics of in situ immune reactivity and the destructive pathology of M. leprae. In this study, we analyzed in skin lesions of leprosy patients, whether M. leprae antigen LAM deposition correlates with the deposition of complement activation products MAC and C3d on nerves and cells in the surrounding tissue. Skin biopsies of paucibacillary (n = 7), multibacillary leprosy patients (n = 7), and patients with erythema nodosum leprosum (ENL) (n = 6) or reversal reaction (RR) (n = 4) and controls (n = 5) were analyzed. The percentage of C3d, MAC and LAM deposition was significantly higher in the skin biopsies of multibacillary compared to paucibacillary patients (p = <0.05, p = <0.001 and p = <0.001 respectively), with a significant association between LAM and C3d or MAC in the skin biopsies of leprosy patients (r = 0.9578, p< 0.0001 and r = 0.8585, p<0.0001 respectively). In skin lesions of multibacillary patients, MAC deposition was found on axons and co-localizing with LAM. In skin lesions of paucibacillary patients, we found C3d positive T-cells in and surrounding granulomas, but hardly any MAC deposition. In addition, MAC immunoreactivity was increased in both ENL and RR skin lesions compared to non-reactional leprosy patients (p = <0.01 and p = <0.01 respectively). The present findings demonstrate that complement is deposited in skin lesions of leprosy patients, suggesting that inflammation driven by complement activation might contribute to nerve damage in the lesions of these patients. This should be regarded as an important factor in M. leprae nerve damage pathology. Public Library of Science 2017-05-15 /pmc/articles/PMC5432188/ /pubmed/28505186 http://dx.doi.org/10.1371/journal.pone.0177815 Text en © 2017 Bahia El Idrissi et al http://creativecommons.org/licenses/by/4.0/ This is an open access article distributed under the terms of the Creative Commons Attribution License (http://creativecommons.org/licenses/by/4.0/) , which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are credited.
spellingShingle Research Article
Bahia El Idrissi, Nawal
Iyer, Anand M.
Ramaglia, Valeria
Rosa, Patricia S.
Soares, Cleverson T.
Baas, Frank
Das, Pranab K.
In Situ complement activation and T-cell immunity in leprosy spectrum: An immunohistological study on leprosy lesional skin
title In Situ complement activation and T-cell immunity in leprosy spectrum: An immunohistological study on leprosy lesional skin
title_full In Situ complement activation and T-cell immunity in leprosy spectrum: An immunohistological study on leprosy lesional skin
title_fullStr In Situ complement activation and T-cell immunity in leprosy spectrum: An immunohistological study on leprosy lesional skin
title_full_unstemmed In Situ complement activation and T-cell immunity in leprosy spectrum: An immunohistological study on leprosy lesional skin
title_short In Situ complement activation and T-cell immunity in leprosy spectrum: An immunohistological study on leprosy lesional skin
title_sort in situ complement activation and t-cell immunity in leprosy spectrum: an immunohistological study on leprosy lesional skin
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5432188/
https://www.ncbi.nlm.nih.gov/pubmed/28505186
http://dx.doi.org/10.1371/journal.pone.0177815
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