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Identification of target proteins of clinical immunity to Plasmodium falciparum in a region of low malaria transmission

  • Hirokazu Sakamoto
  • , Satoru Takeo
  • , Eizo Takashima
  • , Kazutoyo Miura
  • , Bernard N. Kanoi
  • , Takamasa Kaneko
  • , Eun Taek Han
  • , Mayumi Tachibana
  • , Kazuhiro Matsuoka
  • , Jetsumon Sattabongkot
  • , Rachanee Udomsangpetch
  • , Tomoko Ishino
  • , Takafumi Tsuboi
  • Ehime University
  • Faculty of Medicine
  • Kyorin University School of Medicine
  • National Institute of Allergy and Infectious Diseases (NIAID)
  • Kangwon National University College of Medicine
  • US Army Medical Directorate of the Armed Forces Research Institute of Medical Sciences
  • Mahidol University

Research output: Contribution to journalArticlepeer-review

15 Citations (Scopus)

Abstract

The target molecules of antibodies against falciparum malaria remain largely unknown. Recently we have identified multiple proteins as targets of immunity against Plasmodium falciparum using African serum samples. To investigate whether potential targets of clinical immunity differ with transmission intensity, we assessed immune responses in residents of low malaria transmission region in Thailand. Malaria asymptomatic volunteers (Asy: n = 19) and symptomatic patients (Sym: n = 21) were enrolled into the study. Serum immunoreactivity to 186 wheat germ cell-free system (WGCFS)-synthesized recombinant P. falciparum asexual-blood stage proteins were determined by AlphaScreen, and subsequently compared between the study groups. Forty proteins were determined as immunoreactive with antibody responses to 35 proteins being higher in Asy group than in Sym group. Among the 35 proteins, antibodies to MSP3, MSPDBL1, RH2b, and MSP7 were significantly higher in Asy than Sym (unadjusted p < 0.005) suggesting these antigens may have a protective role in clinical malaria. MSP3 reactivity remained significantly different between Asy and Sym groups even after multiple comparison adjustments (adjusted p = 0.033). Interestingly, while our two preceding studies using African sera were conducted differently (e.g., cross-sectional vs. longitudinal design, observed clinical manifestation vs. functional activity), those studies similarly identified MSP3 and MSPDBL1 as potential targets of protective immunity. This study further provides a strong rationale for the application of WGCFS-based immunoprofiling to malaria vaccine candidate and biomarker discovery even in low or reduced malaria transmission settings.

Original languageEnglish
Pages (from-to)203-208
Number of pages6
JournalParasitology International
Volume67
Issue number2
DOIs
Publication statusPublished - Apr 2018

UN SDGs

This output contributes to the following UN Sustainable Development Goals (SDGs)

  1. SDG 3 - Good Health and Well-being
    SDG 3 Good Health and Well-being

Keywords

  • Blood-stage vaccine
  • High-throughput immunoscreening
  • Malaria
  • Plasmodium falciparum
  • Thailand
  • Wheat germ cell-free system (WGCFS)

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