TY - JOUR
T1 - Pfhrp2 -Deleted Plasmodium falciparum Parasites in the Democratic Republic of the Congo
T2 - A National Cross-sectional Survey
AU - Parr, Jonathan B.
AU - Verity, Robert
AU - Doctor, Stephanie M.
AU - Janko, Mark
AU - Carey-Ewend, Kelly
AU - Turman, Breanna J.
AU - Keeler, Corinna
AU - Slater, Hannah C.
AU - Whitesell, Amy N.
AU - Mwandagalirwa, Kashamuka
AU - Ghani, Azra C.
AU - Likwela, Joris L.
AU - Tshefu, Antoinette K.
AU - Emch, Michael
AU - Juliano, Jonathan J.
AU - Meshnick, Steven R.
N1 - Publisher Copyright:
© The Author 2016. Published by Oxford University Press for the Infectious Diseases Society of America. All rights reserved. For permissions, e-mail [email protected].
PY - 2017/7/1
Y1 - 2017/7/1
N2 - Background. Rapid diagnostic tests (RDTs) account for more than two-thirds of malaria diagnoses in Africa. Deletions of the Plasmodium falciparum hrp2 (pfhrp2) gene cause false-negative RDT results and have never been investigated on a national level. Spread of pfhrp2-deleted P. falciparum mutants, resistant to detection by HRP2-based RDTs, would represent a serious threat to malaria elimination efforts. Methods. Using a nationally representative cross-sectional study of 7,137 children under five years of age from the Democratic Republic of Congo (DRC), we tested 783 subjects with RDT-/PCR+ results using PCR assays to detect and confirm deletions of the pfhrp2 gene. Spatial and population genetic analyses were employed to examine the distribution and evolution of these parasites. Results. We identified 149 pfhrp2-deleted parasites, representing 6.4% of all P. falciparum infections country-wide (95% confidence interval 5.1-8.0%). Bayesian spatial analyses identified statistically significant clustering of pfhrp2 deletions near Kinshasa and Kivu. Population genetic analysis revealed significant genetic differentiation between wild-type and pfhrp2-deleted parasite populations (G ST =.046, p ≤.00001). Conclusions. Pfhrp2-deleted P. falciparum is a common cause of RDT-/PCR+ malaria among asymptomatic children in the DRC and appears to be clustered within select communities. Surveillance for these deletions is needed, and alternatives to HRP2-specific RDTs may be necessary.
AB - Background. Rapid diagnostic tests (RDTs) account for more than two-thirds of malaria diagnoses in Africa. Deletions of the Plasmodium falciparum hrp2 (pfhrp2) gene cause false-negative RDT results and have never been investigated on a national level. Spread of pfhrp2-deleted P. falciparum mutants, resistant to detection by HRP2-based RDTs, would represent a serious threat to malaria elimination efforts. Methods. Using a nationally representative cross-sectional study of 7,137 children under five years of age from the Democratic Republic of Congo (DRC), we tested 783 subjects with RDT-/PCR+ results using PCR assays to detect and confirm deletions of the pfhrp2 gene. Spatial and population genetic analyses were employed to examine the distribution and evolution of these parasites. Results. We identified 149 pfhrp2-deleted parasites, representing 6.4% of all P. falciparum infections country-wide (95% confidence interval 5.1-8.0%). Bayesian spatial analyses identified statistically significant clustering of pfhrp2 deletions near Kinshasa and Kivu. Population genetic analysis revealed significant genetic differentiation between wild-type and pfhrp2-deleted parasite populations (G ST =.046, p ≤.00001). Conclusions. Pfhrp2-deleted P. falciparum is a common cause of RDT-/PCR+ malaria among asymptomatic children in the DRC and appears to be clustered within select communities. Surveillance for these deletions is needed, and alternatives to HRP2-specific RDTs may be necessary.
KW - deletion
KW - diagnostic resistance
KW - false-negative
KW - histidine-rich protein 2
KW - hrp2
KW - hrp3
KW - malaria.
KW - pfhrp3
KW - rapid diagnostic tests
KW - RDT
UR - https://www.scopus.com/pages/publications/85024499320
U2 - 10.1093/infdis/jiw538
DO - 10.1093/infdis/jiw538
M3 - Article
C2 - 28177502
AN - SCOPUS:85024499320
SN - 0022-1899
VL - 216
SP - 36
EP - 44
JO - Journal of Infectious Diseases
JF - Journal of Infectious Diseases
IS - 1
ER -