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1.
Front Immunol ; 9: 1223, 2018.
Artigo em Inglês | MEDLINE | ID: mdl-29915584

RESUMO

Leprosy reactions are responsible for incapacities in leprosy and represent the major cause of permanent neuropathy. The identification of biomarkers able to identify patients more prone to develop reaction could contribute to adequate clinical management and the prevention of disability. Reversal reaction may occur in unstable borderline patients and also in lepromatous patients. To identify biomarker signature profiles related with the reversal reaction onset, multibacillary patients were recruited and classified accordingly the occurrence or not of reversal reaction during or after multidrugtherapy. Analysis of skin lesion cells at diagnosis of multibacillary leprosy demonstrated that in the group that developed reaction (T1R) in the future there was a downregulation of autophagy associated with the overexpression of TLR2 and MLST8. The autophagy impairment in T1R group was associated with increased expression of NLRP3, caspase-1 (p10) and IL-1ß production. In addition, analysis of IL-1ß production in serum from multibacillary patients demonstrated that patients who developed reversal reaction have significantly increased concentrations of IL-1ß at diagnosis, suggesting that the pattern of innate immune responses could predict the reactional episode outcome. In vitro analysis demonstrated that the blockade of autophagy with 3-methyladenine (3-MA) in Mycobacterium leprae-stimulated human primary monocytes increased the assembly of NLRP3 specks assembly, and it was associated with an increase of IL-1ß and IL-6 production. Together, our data suggest an important role for autophagy in multibacillary leprosy patients to avoid exacerbated inflammasome activation and the onset of reversal reaction.


Assuntos
Autofagia , Inflamassomos/metabolismo , Hanseníase Multibacilar/etiologia , Hanseníase Multibacilar/metabolismo , Adulto , Idoso , Biomarcadores , Feminino , Perfilação da Expressão Gênica , Regulação da Expressão Gênica , Humanos , Imunidade Inata , Interleucina-1beta/metabolismo , Hanseníase Multibacilar/patologia , Leucócitos Mononucleares/imunologia , Leucócitos Mononucleares/metabolismo , Masculino , Pessoa de Meia-Idade , Monócitos/imunologia , Monócitos/metabolismo , Monócitos/microbiologia , Mycobacterium leprae/fisiologia , Proteína 3 que Contém Domínio de Pirina da Família NLR/metabolismo , Transdução de Sinais , Transcriptoma
2.
Microbes Infect ; 19(11): 505-514, 2017 11.
Artigo em Inglês | MEDLINE | ID: mdl-28684130

RESUMO

Our previous study has demonstrated that IL-10 may modulate both indoleamine 2,3-dioxygenase (IDO) and CD163 expression in lepromatous leprosy (LL) cells, favoring Mycobacterium leprae persistence through induction of regulatory pathways and iron storage. Here, we observed that in LL lesion cells there is an increase in the expression of proteins involved in iron metabolism such as hemoglobin (Hb), haptoglobin, heme oxygenase 1 and transferrin receptor 1 (TfR1) when compared to tuberculoid leprosy (BT) cells. We also found increased iron deposits and diminished expression of the iron exporter ferroportin 1 in LL lesion cells. Hemin, but not FeSO4 stimulation, was able to enhance M. leprae viability by a mechanism that involves IDO. Analysis of cell phenotype in lesions demonstrated a predominance of M2 markers in LL when compared with BT lesion cells. A positive correlation between CD163 and PPARG with the bacillary index (BI) was observed. In contrast, TNF, STAT1 and CSF2 presented a negative correlation with the BI. In summary, this study demonstrates that iron may regulate IDO expression by a mechanism that involves IL-10, which may contribute for the predominance of M2-like phenotype in LL lesions that favors the phagocytosis and maintenance of M. leprae in host cells.


Assuntos
Indolamina-Pirrol 2,3,-Dioxigenase/fisiologia , Ferro/fisiologia , Mycobacterium leprae/fisiologia , Adulto , Feminino , Humanos , Immunoblotting , Técnicas Imunoenzimáticas , Indolamina-Pirrol 2,3,-Dioxigenase/metabolismo , Ferro/metabolismo , Hanseníase Virchowiana/metabolismo , Hanseníase Virchowiana/microbiologia , Masculino , Pessoa de Meia-Idade , Mycobacterium leprae/metabolismo , Reação em Cadeia da Polimerase Via Transcriptase Reversa
3.
s.l; Elsevier; 2017. 10 p. tab, graf.
Não convencional em Inglês | HANSEN, SES-SP, HANSENIASE, SESSP-ILSLPROD, SES-SP, SESSP-ILSLACERVO, SES-SP | ID: biblio-1052567

RESUMO

Our previous study has demonstrated that IL-10 may modulate both indoleamine 2,3-dioxygenase (IDO) and CD163 expression in lepromatous leprosy (LL) cells, favoring Mycobacterium leprae persistence through induction of regulatory pathways and iron storage. Here, we observed that in LL lesion cells there is an increase in the expression of proteins involved in iron metabolism such as hemoglobin (Hb), haptoglobin, heme oxygenase 1 and transferrin receptor 1 (TfR1) when compared to tuberculoid leprosy (BT) cells. We also found increased iron deposits and diminished expression of the iron exporter ferroportin 1 in LL lesion cells. Hemin, but not FeSO stimulation, was able to enhance M. leprae viability by a mechanism that involves IDO. Analysis of cell phenotype in lesions demonstrated a predominance of M2 markers in LL when compared with BT lesion cells. A positive correlation between CD163 and PPARG with the bacillary index (BI) was observed. In contrast, TNF, STAT1 and CSF2 presented a negative correlation with the BI. In summary, this study demonstrates that iron may regulate IDO expression by a mechanism that involves IL-10, which may contribute for the predominance of M2-like phenotype in LL lesions that favors the phagocytosis and maintenance of M. leprae in host cells.


Assuntos
Humanos , Masculino , Feminino , Adulto , Pessoa de Meia-Idade , Immunoblotting , Hanseníase Virchowiana/metabolismo , Hanseníase Virchowiana/microbiologia , Técnicas Imunoenzimáticas , Reação em Cadeia da Polimerase Via Transcriptase Reversa , Indolamina-Pirrol 2,3,-Dioxigenase/fisiologia , Indolamina-Pirrol 2,3,-Dioxigenase/metabolismo , Ferro/fisiologia , Ferro/metabolismo , Mycobacterium leprae/fisiologia , Mycobacterium leprae/metabolismo
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