Role of clec9A+ CD8+DCs in controlling malaria infection

Dendritic cells (DCs) are the major antigen presenting cells (APCs) involved in orchestrating appropriate host immune response against Plasmodium parasites since they form a large phagocyte network inside the red pulp of spleen - a major site for control of blood-borne diseases such as malaria. Sple...

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Main Author: Ang, Wei Ling
Other Authors: Lai Si Min
Format: Final Year Project
Language:English
Published: 2015
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Online Access:http://hdl.handle.net/10356/65414
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Institution: Nanyang Technological University
Language: English
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spelling sg-ntu-dr.10356-654142023-02-28T18:02:00Z Role of clec9A+ CD8+DCs in controlling malaria infection Ang, Wei Ling Lai Si Min Ruedl Christiane School of Biological Sciences DRNTU::Science::Biological sciences::Microbiology::Immunology Dendritic cells (DCs) are the major antigen presenting cells (APCs) involved in orchestrating appropriate host immune response against Plasmodium parasites since they form a large phagocyte network inside the red pulp of spleen - a major site for control of blood-borne diseases such as malaria. Splenic DCs represent remarkable phenotypic heterogeneity but their functional role in containing the Plasmodium infection remains unknown. Since conventional DCs (cDCs) present Plasmodium antigens to prime T cell responses during the acute phase of malarial infection, we hypothesized that CD8+ cDCs could play a role in controlling acute and chronic P. chabaudi infection by regulating T cell-mediated and antibody-mediated responses. Hence, we exploited Clec9A-DTR transgenic mice, which allow specific ablation of CD8+Clec9A+DC subset upon diptheria toxin administration. As compared to wild-type, Clec9A-DTR mice show significantly lower IFN-ɣ production in acute phase and higher parasitemia in chronic phase. Phenotype rescue via injection of CpG-induced IFN-ɣ reiterates the importance of IFN-ɣ in controlling the infection as parasitemia levels were reduced. Moreover, sera transfer from infected WT and Clec9A-DTR mice into naive mice infected with P. chabaudi showed that Clec9A+ CD8+ DCs initiate better protection against P. chabaudi infection through the polarization of IgG1 and IgG2c. Bachelor of Science in Biomedical Sciences 2015-09-08T08:04:55Z 2015-09-08T08:04:55Z 2015 2015 Final Year Project (FYP) http://hdl.handle.net/10356/65414 en Nanyang Technological University 35 p. application/pdf
institution Nanyang Technological University
building NTU Library
continent Asia
country Singapore
Singapore
content_provider NTU Library
collection DR-NTU
language English
topic DRNTU::Science::Biological sciences::Microbiology::Immunology
spellingShingle DRNTU::Science::Biological sciences::Microbiology::Immunology
Ang, Wei Ling
Role of clec9A+ CD8+DCs in controlling malaria infection
description Dendritic cells (DCs) are the major antigen presenting cells (APCs) involved in orchestrating appropriate host immune response against Plasmodium parasites since they form a large phagocyte network inside the red pulp of spleen - a major site for control of blood-borne diseases such as malaria. Splenic DCs represent remarkable phenotypic heterogeneity but their functional role in containing the Plasmodium infection remains unknown. Since conventional DCs (cDCs) present Plasmodium antigens to prime T cell responses during the acute phase of malarial infection, we hypothesized that CD8+ cDCs could play a role in controlling acute and chronic P. chabaudi infection by regulating T cell-mediated and antibody-mediated responses. Hence, we exploited Clec9A-DTR transgenic mice, which allow specific ablation of CD8+Clec9A+DC subset upon diptheria toxin administration. As compared to wild-type, Clec9A-DTR mice show significantly lower IFN-ɣ production in acute phase and higher parasitemia in chronic phase. Phenotype rescue via injection of CpG-induced IFN-ɣ reiterates the importance of IFN-ɣ in controlling the infection as parasitemia levels were reduced. Moreover, sera transfer from infected WT and Clec9A-DTR mice into naive mice infected with P. chabaudi showed that Clec9A+ CD8+ DCs initiate better protection against P. chabaudi infection through the polarization of IgG1 and IgG2c.
author2 Lai Si Min
author_facet Lai Si Min
Ang, Wei Ling
format Final Year Project
author Ang, Wei Ling
author_sort Ang, Wei Ling
title Role of clec9A+ CD8+DCs in controlling malaria infection
title_short Role of clec9A+ CD8+DCs in controlling malaria infection
title_full Role of clec9A+ CD8+DCs in controlling malaria infection
title_fullStr Role of clec9A+ CD8+DCs in controlling malaria infection
title_full_unstemmed Role of clec9A+ CD8+DCs in controlling malaria infection
title_sort role of clec9a+ cd8+dcs in controlling malaria infection
publishDate 2015
url http://hdl.handle.net/10356/65414
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