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RecruitingNCT06923592PvSTATEMUpdated Sep 18, 2026

Serological Testing and Treatment for Plasmodium Vivax Malaria: a Trial in Ethiopia and Madagascar

A Phase 3 interventional study of PvSeroTAT and Control in Malaria Vivax, Malaria Falciparum and Plasmodium Vivax, sponsored by London School of Hygiene and Tropical Medicine. Recruiting at 2 sites in 2 countries. Open to participants aged 12 Months and older. Per ClinicalTrials.gov, last updated 2026-09-18.

Sponsored by London School of Hygiene and Tropical Medicine · Phase 3, Interventional, and Diagnostic

Phase
Phase 3
Study type
Interventional
Enrollment
19,200
Allocation
Randomized
Ages
12 Months and older
Sex
All
01

Study summary

The resilience of P. vivax to malaria elimination efforts is due to its ability to form dormant liver stages (hypnozoites) that reactivate weeks to months after the initial infection causing recurrent episodes of malaria (relapses) and ongoing parasite transmission. Relapses account for a majority of recurrent infections and clinical cases of P. vivax malaria, and therefore have a significant effect on morbidity at the individual level.

With current technology, it is not possible to directly measure hypnozoite biomarkers. Rather than directly detecting hypnozoites, our team developed an indirect approach by measuring antibodies induced by the primary blood-stage infection. Antibodies to different blood-stage antigens decay at different rates. Measuring antibodies to a carefully selected panel of P. vivax antigens can aid to identify individuals who have been infected within the previous 9 months (approximately the lifespan of hypnozoites).

A serological test based on selected P. vivax antigens can detect recent exposure and predict future relapses. Coupling this test with a safe and efficacious primaquine treatment regimen, results in a population-based intervention to target the hypnozoite reservoir. This intervention is referred to as Plasmodium vivax Serological Testing and Treatment (PvSeroTAT).

PvSTATEM is a cluster randomised trial in Madagascar and Ethiopia. This study will provide insights into the feasibility, acceptability, and efficacy of the PvSeroTAT approach. In this study, individuals, randomised by clusters, will be tested for the presence of serological markers of a recent P. vivax infection, followed by a targeted drug treatment intervention aimed at killing P. vivax hypnozoites.

Read the detailed description

In each country, 24 clusters (48 clusters in total) will be randomly allocated using computer generated numbers to one of the two interventions:

Arm 1 (PvSeroTAT intervention) or Arm 2 (Control arm). Within each cluster, approximately 400 participants (range 100-600) will be enrolled, based on the trial's inclusion and exclusion criteria. At baseline (month 0) and month 6 serology for P. vivax infections will be performed in all study participants. In the clusters in the PvSeroTAT arm, participants with a positive P. vivax serology at baseline or month 6 will be approached for treatment. First G6PD enzyme activity will be measured. If the enzyme activity is normal and no other contra-indication for treatment are found, the participants will be treated with 14 days of primaquine 0.25mg/kg/day OR 7 days of primaquine 0.5mg/kg (Ethiopia) or 7 days of primaquine 0.5mg/kg/day (Madagascar), and a three-day course of either chloroquine (Ethiopia) or artesunate-amodiaquine (Madagascar). It is possible that a participant could receive a radical P. vivax treatment at both baseline (month 0) and month 6. Participants will be monitored for side effects and adherence during the first 7 days after the start of antimalarial treatments. In addition, blood samples will be taken to measure hemoglobin levels to monitor for post-treatment hemolysis.

In the clusters in both arms, the incidence of malaria will be monitored through passive case detection in health posts up to 18 months after the first intervention. All cases that are detected during the passive case detection will be treated according to the national guidelines.

At month 12 and month 18 of the study, a cross sectional survey will be conducted in all study clusters. Blood samples will be taken to determine the prevalence of P. vivax and P. falciparum through PCR assays.

02

Conditions studied

  • Malaria Vivax
  • Malaria Falciparum
  • Plasmodium Vivax
  • Plasmodium Falciparum

Keywords

  • Plasmodium vivax
  • Vivax
  • PvSeroTAT
  • PvSTATEM
  • Primaquine
  • serology
  • Cluster randomised trial
  • G6PD
03

Who can participate

Ages eligible
12 Months and older
Sexes eligible
All
Accepts healthy volunteers
No

Inclusion criteria

  • Participant will remain in the study area for at least the next month.
  • Participant is older than 12 months

Exclusion criteria

Exclusion Criteria:

  • Participant is unwilling to participate.
04

Study design

Phase
Phase 3
Primary purpose
Diagnostic
Allocation
Randomized
Intervention model
Parallel assignment
Masking
None (open label)
Enrollment
19,200 participants (estimated)

Study arms

  • Experimental
    PvSeroTAT intervention

    Combination Product: PvSeroTAT

  • Other
    Control arm

    Diagnostic Test: Control

Interventions

  • Combination productPvSeroTAT

    Two rounds (month 0 and month 6) of serological screening for antibodies against P. vivax in the blood of all eligible cluster inhabitants. In the clusters in the PvSeroTAT arm, participants with a positive P. vivax serology at baseline or month 6 will be treated with 14 days of primaquine 0.25mg/kg/day OR 7 days of primaquine 0.5mg/kg (Ethiopia) or 7 days of primaquine 0.5mg/kg/day (Madagascar), and a three-day course of either chloroquine (Ethiopia) or artesunate-amodiaquine (Madagascar)

  • Diagnostic testControl

    Two rounds (month 0 and month 6) of serological screening for antibodies against P. vivax in the blood of a subset of eligible cluster inhabitants. Serological status will be assessed at a later stage (months later) and will not lead to treatment of sero-positive individuals.

05

What researchers measure

Primary outcomes

  1. Proportion of individuals with PCR detectable P. vivax blood-stage infections 6 months after the second round of PvSeroTAT or 6 months after the second round of blood sampling in the control clusters.

    6 months after the second round of PvSeroTAT, a blood sample will be collected from participants through fingerprick in the intervention clusters. In the control clusters a blood sample to determine PCR prevalence will be collected 6 months after the second round of blood sampling in that control cluster.

    Time frame: 6 months after the second round of PvSeroTAT or 6 months after the second round of blood sampling in the control clusters.

Secondary outcomes

  1. Proportion of individuals with PCR detectable P. vivax blood-stage infections 12 months after the second round of PvSeroTAT or 12 months after the second round of blood sampling in the control clusters.

    12 months after the second round of PvSeroTAT, a blood sample will be collected from participants through fingerprick in the intervention clusters. In the control clusters a blood sample to determine PCR prevalence will be collected 12 months after the second round of blood sampling in that control cluster.

    Time frame: 12 months after the second round of PvSeroTAT or 12 months after the second round of blood sampling in the control clusters.

  2. Proportion of individuals with PCR detectable P. vivax blood-stage infections 6 months after the first round of PvSeroTAT (before second round) or 6 months after the first round of blood sampling in the control clusters.

    6 months after the first round of PvSeroTAT, a blood sample will be collected from participants through fingerprick in the intervention clusters. In the control clusters a blood sample to determine PCR prevalence will be collected 6 months after the first round of blood sampling in that control cluster.

    Time frame: 6 months after the first round of PvSeroTAT or 6 months after the first round of blood sampling in the control clusters.

  3. Decrease of mean cluster prevalence of PCR detectable P. vivax blood-stage infections at month 6 after the first round of PvSeroTAT or 6 months after the first round of blood sampling in the control clusters, compared to baseline.

    Time frame: 6 months after the first round of PvSeroTAT or 6 months after the first round of blood sampling in the control clusters.

  4. Decrease of mean cluster prevalence of PCR detectable P. vivax blood-stage infections at month 12 after the first round of PvSeroTAT or 12 months after the first round of blood sampling in the control clusters, compared to baseline.

    Time frame: 12 months after the first round of PvSeroTAT or 12 months after the first round of blood sampling in the control clusters.

  5. Decrease of mean cluster prevalence of PCR detectable P. vivax blood-stage infections at month 18 after the first round of PvSeroTAT or 18 months after the first round of blood sampling in the control clusters, compared to baseline.

    Time frame: 18 months after the first round of PvSeroTAT or 18 months after the first round of blood sampling in the control clusters.

  6. Incidence of clinical cases of P. vivax and P. falciparum malaria during the 6 months after the first round of PvSeroTAT or during the 6 months after the first round of blood sampling in the control clusters.

    Time frame: 6 months after the first round of PvSeroTAT or 6 months after the first round of blood sampling in the control clusters.

  7. Incidence of clinical cases of P. vivax and P. falciparum malaria during the 12 months after the first round of PvSeroTAT or during the 12 months after the first round of blood sampling in the control clusters.

    Time frame: 12 months after the first round of PvSeroTAT or 12 months after the first round of blood sampling in the control clusters.

  8. Incidence of clinical cases of P. vivax and P. falciparum malaria during the 18 months after the first round of PvSeroTAT or during the 18 months after the first round of blood sampling in the control clusters.

    Time frame: 18 months after the first round of PvSeroTAT or 18 months after the first round of blood sampling in the control clusters.

  9. Hemoglobin level at day 3

    Time frame: Day 3

  10. Hemoglobin level at day 7

    Time frame: Day 7

  11. Decrease in Hemoglobin between baseline and day 3 (absolute and proportional)

    Time frame: Day 3

  12. Decrease in Hemoglobin between baseline and day 7 (absolute and proportional)

    Time frame: Day 7

  13. Incidence of potential signs of clinically relevant Haemolysis

    25% drop in hemoglobin or hemoglobin\<7gram/dL or macroscopic haemoglobinuria or the need for a blood transfusion

    Time frame: 7 days

  14. Incidence of Serious Adverse Events

    Time frame: 18 months after the first round of PvSeroTAT or 18 months after the first round of blood sampling in the control clusters.

  15. Coverage of serological tests for P. vivax antibodies as proportion of number of individuals per cluster

    Time frame: Day 0 of month 0 or month 6

  16. Proportion of eligible individuals that refuses participation in the study

    Time frame: Day 0 of month 0 or month 6

  17. Proportion of participants with positive P. vivax serology that refuses P. vivax treatment

    Time frame: Day 1 of drug administration

  18. Proportion of serological positive individuals that start primaquine treatment

    Time frame: Day 1 of drug administration

  19. Proportion of study participants that complete the 14-day or 7-day course of primaquine treatment.

    Time frame: Day of start of treatment until day 7 of treatment

  20. Proportion of individuals that vomits at least once within 1 hour after treatment

    Time frame: Day of start of treatment until day 7 of treatment

  21. Proportion of individuals that vomits twice within 1 hour after treatment.

    Time frame: Day of start of treatment until day 7 of treatment

06

Study locations

1 of 2 sites recruiting
  • Armauer Hansen Research Institute
    Addis Ababa, Ethiopia
    Not yet recruiting
  • Institut Pasteur de Madagascar
    Antananarivo, Madagascar
    Recruiting
07

References and documents

Individual participant data

Plan to share: Yes — Anonymised demographic data (e.g. age and sex). P. vivax serology results. Clinical parameters such as hemoglobin levels and clinical symptoms. Results of PCR assays for Plasmodium vivax and Plasmodium falciparum.

Supporting information: Study protocol, Sap

08

Registry details

Key details

Study ID
NCT06923592
Lead sponsor
London School of Hygiene and Tropical Medicine
Collaborators
Institut Pasteur, Institut Pasteur de Madagascar, Armauer Hansen Research Institute, Ethiopia
Responsible party
Sponsor
First posted
Apr 11, 2025
Start date
May 12, 2025
Primary completion
Apr 28, 2027 (estimated)
Completion
Apr 28, 2027 (estimated)
Last update
Sep 18, 2026

Study contacts

Rob W van der Pluijm
Contact
rvanderp@pasteur.fr
0033145688000
Chris Drakeley
principal investigator · London School of Hygiene and Tropical Medicine
Michael T White
principal investigator · Institut Pasteur
Rindra Randremanana
principal investigator · Institut Pasteur de Madagascar
Fitsum G Tadesse
principal investigator · Armauer Hansen Research Institute, Ethiopia

Oversight

Data monitoring committee
No
FDA-regulated drug
No
FDA-regulated device
No
View the source record on ClinicalTrials.gov ↗

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