Contains fulltext : 202883.pdf (publisher's version ) (Closed access)Recently, a population of non-recirculating, tissue-resident memory CD8(+) T cells has been identified; cells that seems to act as key sentinels for invading microorganisms with enhanced effector functions. In malaria, the liver represents the first site for parasite development before a definite infection is established in circulating red blood cells. Here, we discuss the evidence obtained from animal models on several diseases and hypothesize that liver-resident memory CD8(+) T cells (hepatic TRM) play a critical role in providing protective liver-stage immunity against Plasmodium malaria parasites. Although observations in human malaria trials are limi...
Immunological memory is fundamental to maintain immunity against re-invading pathogens. It is the ba...
Protection from liver-stage malaria requires high numbers of CD8+ T cells to find and kill Plasmodiu...
Malaria is a vector-borne infectious disease caused by unicellular parasites of the genus Plasmodium...
Recently, a population of non-recirculating, tissue-resident memory CD8(+) T cells has been identifi...
Summary: Circulating memory CD8 T cell trafficking and protective capacity during liver-stage malari...
While the role of malaria parasite-specific memory CD8(+) T cells in the control of exo-erythrocytic...
Identification of correlates of protection for infectious diseases including malaria is a major chal...
Contains fulltext : 108537.pdf (publisher's version ) (Open Access)Protection agai...
ch Background develop a partially protective immunity. Such ‘semi-immune’ Bao et al. Malaria Journal...
While the role of malaria parasite-specific memory CD8+ T cells in the control of exo-erythrocytic s...
Plasmodium sporozoites and liver stages express antigens that are targeted to the MHC-Class I antige...
Since the demonstration of sterile protection afforded by injection of irradiated sporozoites, CD8+ ...
Since the demonstration of sterile protection afforded by injection of irradiated sporozoites, CD8+ ...
International audienceComplete and long-lasting protective immunity against malaria can be achieved ...
Item does not contain fulltextBACKGROUND: The liver stage of the human malaria parasite Plasmodium f...
Immunological memory is fundamental to maintain immunity against re-invading pathogens. It is the ba...
Protection from liver-stage malaria requires high numbers of CD8+ T cells to find and kill Plasmodiu...
Malaria is a vector-borne infectious disease caused by unicellular parasites of the genus Plasmodium...
Recently, a population of non-recirculating, tissue-resident memory CD8(+) T cells has been identifi...
Summary: Circulating memory CD8 T cell trafficking and protective capacity during liver-stage malari...
While the role of malaria parasite-specific memory CD8(+) T cells in the control of exo-erythrocytic...
Identification of correlates of protection for infectious diseases including malaria is a major chal...
Contains fulltext : 108537.pdf (publisher's version ) (Open Access)Protection agai...
ch Background develop a partially protective immunity. Such ‘semi-immune’ Bao et al. Malaria Journal...
While the role of malaria parasite-specific memory CD8+ T cells in the control of exo-erythrocytic s...
Plasmodium sporozoites and liver stages express antigens that are targeted to the MHC-Class I antige...
Since the demonstration of sterile protection afforded by injection of irradiated sporozoites, CD8+ ...
Since the demonstration of sterile protection afforded by injection of irradiated sporozoites, CD8+ ...
International audienceComplete and long-lasting protective immunity against malaria can be achieved ...
Item does not contain fulltextBACKGROUND: The liver stage of the human malaria parasite Plasmodium f...
Immunological memory is fundamental to maintain immunity against re-invading pathogens. It is the ba...
Protection from liver-stage malaria requires high numbers of CD8+ T cells to find and kill Plasmodiu...
Malaria is a vector-borne infectious disease caused by unicellular parasites of the genus Plasmodium...