Novel approaches to whole sporozoite vaccination against malaria
Abstract The parasitic disease malaria threatens more than 3 billion people worldwide, resulting in more than 200 million clinical cases and almost 600,000 deaths annually. Vaccines remain crucial for prevention and ultimately eradication of infectious diseases and, for malaria, whole sporozoite bas...
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Published in | Vaccine Vol. 33; no. 52; pp. 7462 - 7468 |
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Main Authors | , , , , , |
Format | Journal Article |
Language | English |
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Elsevier Ltd
22.12.2015
Elsevier Limited |
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Abstract | Abstract The parasitic disease malaria threatens more than 3 billion people worldwide, resulting in more than 200 million clinical cases and almost 600,000 deaths annually. Vaccines remain crucial for prevention and ultimately eradication of infectious diseases and, for malaria, whole sporozoite based immunization has been shown to be the most effective in experimental settings. In addition to immunization with radiation-attenuated sporozoites, chemoprophylaxis and sporozoites (CPS) is a highly efficient strategy to induce sterile protection in humans. Genetically attenuated parasites (GAP) have demonstrated significant protection in rodent studies, and are now being advanced into clinical testing. This review describes the existing pre-clinical and clinical data on CPS and GAP, discusses recent developments and examines how to transform these immunization approaches into vaccine candidates for clinical development. |
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AbstractList | The parasitic disease malaria threatens more than 3 billion people worldwide, resulting in more than 200 million clinical cases and almost 600,000 deaths annually. Vaccines remain crucial for prevention and ultimately eradication of infectious diseases and, for malaria, whole sporozoite based immunization has been shown to be the most effective in experimental settings. In addition to immunization with radiation-attenuated sporozoites, chemoprophylaxis and sporozoites (CPS) is a highly efficient strategy to induce sterile protection in humans. Genetically attenuated parasites (GAP) have demonstrated significant protection in rodent studies, and are now being advanced into clinical testing. This review describes the existing pre-clinical and clinical data on CPS and GAP, discusses recent developments and examines how to transform these immunization approaches into vaccine candidates for clinical development. Abstract The parasitic disease malaria threatens more than 3 billion people worldwide, resulting in more than 200 million clinical cases and almost 600,000 deaths annually. Vaccines remain crucial for prevention and ultimately eradication of infectious diseases and, for malaria, whole sporozoite based immunization has been shown to be the most effective in experimental settings. In addition to immunization with radiation-attenuated sporozoites, chemoprophylaxis and sporozoites (CPS) is a highly efficient strategy to induce sterile protection in humans. Genetically attenuated parasites (GAP) have demonstrated significant protection in rodent studies, and are now being advanced into clinical testing. This review describes the existing pre-clinical and clinical data on CPS and GAP, discusses recent developments and examines how to transform these immunization approaches into vaccine candidates for clinical development. |
Author | Mordmüller, Benjamin Sack, Brandon K Khan, Shahid M Bijker, Else M Borrmann, Steffen Kappe, Stefan H |
AuthorAffiliation | a Radboud University Medical Center, Department of Medical Microbiology, PO Box 9101, 6500 HB Nijmegen, The Netherlands f Department of Global Health, University of Washington, Seattle, WA, USA b Institute for Tropical Medicine, University of Tübingen, Tübingen, Germany c German Centre for Infection Research, University of Tübingen, Tübingen, Germany e Seattle Biomedical Research Institute, Seattle, WA, USA g Centre de Recherches Médicales de Lambaréné, Alberts Schweitzer Hospital, BP 118 Lambaréné, Gabon d Kenya Medical Research Institute-Wellcome Trust Research Programme, Kilifi, Kenya h Leiden University Medical Center, Department of Parasitology, PO Box 9600, 2300 RC Leiden, The Netherlands |
AuthorAffiliation_xml | – name: f Department of Global Health, University of Washington, Seattle, WA, USA – name: d Kenya Medical Research Institute-Wellcome Trust Research Programme, Kilifi, Kenya – name: h Leiden University Medical Center, Department of Parasitology, PO Box 9600, 2300 RC Leiden, The Netherlands – name: c German Centre for Infection Research, University of Tübingen, Tübingen, Germany – name: e Seattle Biomedical Research Institute, Seattle, WA, USA – name: g Centre de Recherches Médicales de Lambaréné, Alberts Schweitzer Hospital, BP 118 Lambaréné, Gabon – name: b Institute for Tropical Medicine, University of Tübingen, Tübingen, Germany – name: a Radboud University Medical Center, Department of Medical Microbiology, PO Box 9101, 6500 HB Nijmegen, The Netherlands |
Author_xml | – sequence: 1 fullname: Bijker, Else M – sequence: 2 fullname: Borrmann, Steffen – sequence: 3 fullname: Kappe, Stefan H – sequence: 4 fullname: Mordmüller, Benjamin – sequence: 5 fullname: Sack, Brandon K – sequence: 6 fullname: Khan, Shahid M |
BackLink | https://www.ncbi.nlm.nih.gov/pubmed/26469716$$D View this record in MEDLINE/PubMed |
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Keywords | Plasmodium Immunization Chemoprophylaxis Malaria Genetic attenuation Chloroquine Liver stage Sporozoite Vaccine Pre-erythrocytic stages |
Language | English |
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Snippet | Abstract The parasitic disease malaria threatens more than 3 billion people worldwide, resulting in more than 200 million clinical cases and almost 600,000... The parasitic disease malaria threatens more than 3 billion people worldwide, resulting in more than 200 million clinical cases and almost 600,000 deaths... |
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SubjectTerms | Allergy and Immunology Animals Antimalarials - therapeutic use Chemoprophylaxis Chloroquine Chloroquine - therapeutic use Drug Evaluation, Preclinical Genetic attenuation Humans Immunization Liver stage Malaria Malaria - immunology Malaria - prevention & control Malaria Vaccines - genetics Malaria Vaccines - immunology Mice Mosquitoes Parasites Plasmodium Plasmodium - immunology Plasmodium falciparum - genetics Plasmodium falciparum - immunology Pre-erythrocytic stages Pre-Exposure Prophylaxis Sporozoite Sporozoites - immunology Sporozoites - radiation effects Vaccination - methods Vaccine Vaccines Vaccines, Attenuated - immunology |
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Title | Novel approaches to whole sporozoite vaccination against malaria |
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