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A malaria vaccine adjuvant based on recombinant antigen binding to liposomes

  • Wei Chiao Huang
  • , Bingbing Deng
  • , Cuiyan Lin
  • , Kevin A. Carter
  • , Jumin Geng
  • , Aida Razi
  • , Xuedan He
  • , Upendra Chitgupi
  • , Jasmin Federizon
  • , Boyang Sun
  • , Carole A. Long
  • , Joaquin Ortega
  • , Sheetij Dutta
  • , C. Richter King
  • , Kazutoyo Miura
  • , Shwu Maan Lee
  • , Jonathan F. Lovell
  • SUNY Buffalo
  • National Institutes of Health
  • McGill University
  • Walter Reed Army Institute of Research
  • PATH's Malaria Vaccine Initiative (MVI)

Research output: Contribution to journalArticlepeer-review

140 Scopus citations

Abstract

Pfs25 is a malaria transmission-blocking vaccine antigen candidate, but its apparently limited immunogenicity in humans has hindered clinical development. Here, we show that recombinant, polyhistidine-tagged (his-tagged) Pfs25 can be mixed at the time of immunization with pre-formed liposomes containing cobalt porphyrin–phospholipid, resulting in spontaneous nanoliposome antigen particleization (SNAP). Antigens are stably presented in uniformly orientated display via his-tag insertion in the cobalt porphyrin–phospholipid bilayer, without covalent modification or disruption of antigen conformation. SNAP immunization of mice and rabbits is well tolerated with minimal local reactogenicity, and results in orders-of-magnitude higher functional antibody generation compared with other ‘mix-and-inject’ adjuvants. Serum-stable antigen binding during transit to draining lymph nodes leads to enhanced antigen uptake by phagocytic antigen-presenting cells, with subsequent generation of long-lived, antigen-specific plasma cells. Seamless multiplexing with four additional his-tagged Plasmodium falciparum polypeptides induces strong and balanced antibody production, illustrating the simplicity of developing multistage particulate vaccines with SNAP immunization.

Original languageEnglish
Pages (from-to)1174-1181
Number of pages8
JournalNature Nanotechnology
Volume13
Issue number12
DOIs
StatePublished - Dec 1 2018

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