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Karunaweera, N. D.

Publications and source records attributed to Karunaweera, N. D..

2 recordsLinked to original sources

Proteome profiling of cutaneous leishmaniasis lesions due to dermotropic Leishmania donovani in Sri Lanka

Characterization of the host response in cutaneous leishmaniasis (CL) through proteome profiling has gained limited insights in leishmaniasis research, in comparison to that of the parasite. The primary objective of this study was to comprehensively analyze the proteomic profile of the skin lesions tissues in patients with CL, by mass spectrometry, and subsequent validation of these findings through immunohistochemical methods. Sixty-seven proteins exhibited significant differential expression between tissues of CL lesions and healthy controls (p<0.01), representing numerous enriched biological processes within the lesion tissue, as evident by both the Kyoto Encyclopedia of Genes and Genomes (KEGG) and Reactome databases. Among these, the integrated endoplasmic reticulum stress response (IERSR) emerges as a pathway characterized by the up-regulated proteins in CL tissues compared to healthy skin. Expression of endoplasmic reticulum (ER) stress sensors, inositol-requiring enzyme-1 (IRE1), protein kinase RNA-like ER kinase (PERK), and activating transcription factor 6 (ATF6) in lesion tissue was validated by immunohistochemistry. In conclusion, proteomic profiling of skin lesions carried out as a discovery phase study revealed a multitude of probable immunological and pathological mechanisms operating in patients with CL in Sri Lanka, which needs to be further elaborated using more in-depth and targeted investigations. Author SummaryCutaneous leishmaniasis (CL), is a skin infection caused by a type of single-celled parasite. These parasites are usually transmitted through the bite of infected sandflies. In Sri Lanka, CL is caused by a parasite type that usually causes a more severe disease form, known as visceral leishmaniasis. Interaction between the parasite and the human host is important in determining the disease outcome and hence, we conducted a study to look at the proteins in the skin lesions of people with CL using a technique called mass spectrometry. We found 67 proteins that were different between CL lesions and healthy skin. These proteins are involved in various processes in the body, and one specific process called the integrated endoplasmic reticulum stress response (IERSR) was more active in CL patients. We confirmed this by studying specific proteins related to stress in the lesion tissue. In conclusion, our study uncovered several potential immune and disease-related mechanisms in CL patients in Sri Lanka. However, more detailed investigations are needed to fully understand these processes.

molecular biology↗

Cytokine and phenotypic cell profiles in human cutaneous leishmaniasis caused by Leishmania donovani

BackgroundThe innate immune mediators are likely to influence the clinical phenotype of leishmaniasis by primary responses which limit or facilitate the spread of the parasite, as well as by modulating adaptive immunity. This study investigated the response of key innate immune cells in a focus which regularly reports localised cutaneous leishmaniasis (LCL) caused by Leishmania donovani, a species which typically causes visceral disease. MethodsPeripheral blood mononuclear cell (PBMC) derived macrophage and dendritic cell responses to soluble Leishmania antigen (SLA) were compared between patients with LCL and healthy controls from endemic and non-endemic areas. Inflammatory mediators produced by macrophages (TNF-, NO, TGF-{beta} and IL-10) and dendritic cells (IL-12p70, IL-10) and cell surface markers of macrophage polarization, activation and maturation were determined at 24h, 48h and 72h by Enzyme-linked immunosorbent assay (ELISA) and flowcytometry. ResultsPatient derived macrophages and dendritic cells produced higher levels of both pro and anti-inflammatory mediators compared to controls (p<0.05) with the best discrimination for active disease observed at 72h. Data demonstrated an early activation of macrophages and a subsequent pro-inflammatory bias, as indicated by temporal profiles of TNF-/TGF-{beta} and TNF-/IL-10 ratios and higher proportions of classical (M1) macrophages. Higher TGF-{beta} levels were observed in cells from patients with ulcerated or persistent lesions. Immune responses by cells derived from controls in endemic and non-endemic regions did not differ significantly from each other. ConclusionsThe overall immunophenotypic profile suggests that LCL observed in the country is the result of a balancing immune response between pro-inflammatory and regulatory mediators. The mediators which showed distinct profiles in patients warrant further investigation as potential candidates for immunotherapeutic approaches. A comparison with visceral leishmaniasis caused by the same species, would provide further evidence on the differential role of these mediators in the resulting clinical phenotype.

microbiology↗