Anneth Tumbo, Freia-Raphaella Lorenz, Annie S P Yang, Stephanie Sefried, Tobias Schindler, Maximilian Mpina, Jean-Pierre Dangy, Florence A Milando, Mohammed A Rashid, Gloria Nyaulingo, Kamaka Ramadhani, Said Jongo, Philip L Felgner, Yonas Abebe, B Kim Lee Sim, L W Preston Church, Thomas L Richie, Peter F Billingsley, Tooba Murshedkar, Stephen L Hoffman, Salim Abdulla, Peter G Kremsner, Benjamin Mordmüller, Claudia Daubenberger, Rolf Fendel
{"title":"PfSPZ 疫苗可诱导坦桑尼亚艾滋病毒阳性和阴性成人产生集中的体液免疫反应。","authors":"Anneth Tumbo, Freia-Raphaella Lorenz, Annie S P Yang, Stephanie Sefried, Tobias Schindler, Maximilian Mpina, Jean-Pierre Dangy, Florence A Milando, Mohammed A Rashid, Gloria Nyaulingo, Kamaka Ramadhani, Said Jongo, Philip L Felgner, Yonas Abebe, B Kim Lee Sim, L W Preston Church, Thomas L Richie, Peter F Billingsley, Tooba Murshedkar, Stephen L Hoffman, Salim Abdulla, Peter G Kremsner, Benjamin Mordmüller, Claudia Daubenberger, Rolf Fendel","doi":"10.1016/j.ebiom.2024.105364","DOIUrl":null,"url":null,"abstract":"<p><strong>Background: </strong>PfSPZ Vaccine, a promising pre-erythrocytic stage malaria vaccine candidate based on whole, radiation-attenuated Plasmodium falciparum (Pf) sporozoites (SPZ), has proven safe and effective in mediating sterile protection from malaria in malaria-naïve and exposed healthy adults. Vaccine-induced protection presumably depends on cellular responses to early parasite liver stages, but humoral immunity contributes.</p><p><strong>Methods: </strong>On custom-made Pf protein microarrays, we profiled IgG and IgM responses to PfSPZ Vaccine and subsequent homologous controlled human malaria infection (CHMI) in 21 Tanzanian adults with (n = 12) or without (n = 9) HIV infection. Expression of the main identified immunogens in the pre-erythrocytic parasite stage was verified by immunofluorescence detection using freshly purified PfSPZ and an in vitro model of primary human hepatocytes.</p><p><strong>Findings: </strong>Independent of HIV infection status, immunisation induced focused IgG and IgM responses to circumsporozoite surface protein (PfCSP) and merozoite surface protein 5 (PfMSP5). We show that PfMSP5 is detectable on the surface and in the apical complex of PfSPZ.</p><p><strong>Interpretation: </strong>Our data demonstrate that HIV infection does not affect the quantity of the total IgG and IgM antibody responses to PfCSP and PfMSP5 after immunization with PfSPZ Vaccine. PfMSP5 represents a highly immunogenic, so far underexplored, target for vaccine-induced antibodies in malaria pre-exposed volunteers.</p><p><strong>Funding: </strong>This work was supported by the Equatorial Guinea Malaria Vaccine Initiative (EGMVI), the Clinical Trial Platform of the German Center for Infection Research (TTU 03.702), the Swiss Government Excellence Scholarships for Foreign Scholars and Artists (grant 2016.0056) and the Interdisciplinary Center for Clinical Research doctoral program of the Tübingen University Hospital. The funders had no role in design, analysis, or reporting of this study.</p>","PeriodicalId":11494,"journal":{"name":"EBioMedicine","volume":"108 ","pages":"105364"},"PeriodicalIF":9.7000,"publicationDate":"2024-10-01","publicationTypes":"Journal Article","fieldsOfStudy":null,"isOpenAccess":false,"openAccessPdf":"https://www.ncbi.nlm.nih.gov/pmc/articles/PMC11464252/pdf/","citationCount":"0","resultStr":"{\"title\":\"PfSPZ Vaccine induces focused humoral immune response in HIV positive and negative Tanzanian adults.\",\"authors\":\"Anneth Tumbo, Freia-Raphaella Lorenz, Annie S P Yang, Stephanie Sefried, Tobias Schindler, Maximilian Mpina, Jean-Pierre Dangy, Florence A Milando, Mohammed A Rashid, Gloria Nyaulingo, Kamaka Ramadhani, Said Jongo, Philip L Felgner, Yonas Abebe, B Kim Lee Sim, L W Preston Church, Thomas L Richie, Peter F Billingsley, Tooba Murshedkar, Stephen L Hoffman, Salim Abdulla, Peter G Kremsner, Benjamin Mordmüller, Claudia Daubenberger, Rolf Fendel\",\"doi\":\"10.1016/j.ebiom.2024.105364\",\"DOIUrl\":null,\"url\":null,\"abstract\":\"<p><strong>Background: </strong>PfSPZ Vaccine, a promising pre-erythrocytic stage malaria vaccine candidate based on whole, radiation-attenuated Plasmodium falciparum (Pf) sporozoites (SPZ), has proven safe and effective in mediating sterile protection from malaria in malaria-naïve and exposed healthy adults. Vaccine-induced protection presumably depends on cellular responses to early parasite liver stages, but humoral immunity contributes.</p><p><strong>Methods: </strong>On custom-made Pf protein microarrays, we profiled IgG and IgM responses to PfSPZ Vaccine and subsequent homologous controlled human malaria infection (CHMI) in 21 Tanzanian adults with (n = 12) or without (n = 9) HIV infection. Expression of the main identified immunogens in the pre-erythrocytic parasite stage was verified by immunofluorescence detection using freshly purified PfSPZ and an in vitro model of primary human hepatocytes.</p><p><strong>Findings: </strong>Independent of HIV infection status, immunisation induced focused IgG and IgM responses to circumsporozoite surface protein (PfCSP) and merozoite surface protein 5 (PfMSP5). We show that PfMSP5 is detectable on the surface and in the apical complex of PfSPZ.</p><p><strong>Interpretation: </strong>Our data demonstrate that HIV infection does not affect the quantity of the total IgG and IgM antibody responses to PfCSP and PfMSP5 after immunization with PfSPZ Vaccine. PfMSP5 represents a highly immunogenic, so far underexplored, target for vaccine-induced antibodies in malaria pre-exposed volunteers.</p><p><strong>Funding: </strong>This work was supported by the Equatorial Guinea Malaria Vaccine Initiative (EGMVI), the Clinical Trial Platform of the German Center for Infection Research (TTU 03.702), the Swiss Government Excellence Scholarships for Foreign Scholars and Artists (grant 2016.0056) and the Interdisciplinary Center for Clinical Research doctoral program of the Tübingen University Hospital. 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PfSPZ Vaccine induces focused humoral immune response in HIV positive and negative Tanzanian adults.
Background: PfSPZ Vaccine, a promising pre-erythrocytic stage malaria vaccine candidate based on whole, radiation-attenuated Plasmodium falciparum (Pf) sporozoites (SPZ), has proven safe and effective in mediating sterile protection from malaria in malaria-naïve and exposed healthy adults. Vaccine-induced protection presumably depends on cellular responses to early parasite liver stages, but humoral immunity contributes.
Methods: On custom-made Pf protein microarrays, we profiled IgG and IgM responses to PfSPZ Vaccine and subsequent homologous controlled human malaria infection (CHMI) in 21 Tanzanian adults with (n = 12) or without (n = 9) HIV infection. Expression of the main identified immunogens in the pre-erythrocytic parasite stage was verified by immunofluorescence detection using freshly purified PfSPZ and an in vitro model of primary human hepatocytes.
Findings: Independent of HIV infection status, immunisation induced focused IgG and IgM responses to circumsporozoite surface protein (PfCSP) and merozoite surface protein 5 (PfMSP5). We show that PfMSP5 is detectable on the surface and in the apical complex of PfSPZ.
Interpretation: Our data demonstrate that HIV infection does not affect the quantity of the total IgG and IgM antibody responses to PfCSP and PfMSP5 after immunization with PfSPZ Vaccine. PfMSP5 represents a highly immunogenic, so far underexplored, target for vaccine-induced antibodies in malaria pre-exposed volunteers.
Funding: This work was supported by the Equatorial Guinea Malaria Vaccine Initiative (EGMVI), the Clinical Trial Platform of the German Center for Infection Research (TTU 03.702), the Swiss Government Excellence Scholarships for Foreign Scholars and Artists (grant 2016.0056) and the Interdisciplinary Center for Clinical Research doctoral program of the Tübingen University Hospital. The funders had no role in design, analysis, or reporting of this study.
EBioMedicineBiochemistry, Genetics and Molecular Biology-General Biochemistry,Genetics and Molecular Biology
CiteScore
17.70
自引率
0.90%
发文量
579
审稿时长
5 weeks
期刊介绍:
eBioMedicine is a comprehensive biomedical research journal that covers a wide range of studies that are relevant to human health. Our focus is on original research that explores the fundamental factors influencing human health and disease, including the discovery of new therapeutic targets and treatments, the identification of biomarkers and diagnostic tools, and the investigation and modification of disease pathways and mechanisms. We welcome studies from any biomedical discipline that contribute to our understanding of disease and aim to improve human health.