Drug resistance. Population transcriptomics of human malaria parasites reveals the mechanism of artemisinin resistance.
Artemisinin resistance in Plasmodium falciparum threatens global efforts to control and eliminate malaria. Polymorphisms in the kelch domain-carrying protein K13 are associated with artemisinin resistance, but the underlying molecular mechanisms are unknown. We analyzed the in vivo transcriptomes of...
Hoofdauteurs: | Mok, S, Ashley, E, Ferreira, P, Zhu, L, Lin, Z, Yeo, T, Chotivanich, K, Imwong, M, Pukrittayakamee, S, Dhorda, M, Nguon, C, Lim, P, Amaratunga, C, Suon, S, Hien, T, Htut, Y, Faiz, M, Onyamboko, M, Mayxay, M, Newton, P, Tripura, R, Woodrow, C, Miotto, O, Kwiatkowski, D, Nosten, F |
---|---|
Formaat: | Journal article |
Taal: | English |
Gepubliceerd in: |
2015
|
Gelijkaardige items
-
Population transcriptomics of human malaria parasites reveals the mechanism of artemisinin resistance
door: Mok, S., et al.
Gepubliceerd in: (2016) -
Spread of artemisinin resistance in Plasmodium falciparum malaria.
door: Ashley, E, et al.
Gepubliceerd in: (2014) -
Genetic architecture of artemisinin-resistant Plasmodium falciparum
door: Miotto, O, et al.
Gepubliceerd in: (2015) -
Host immunity and the assessment of emerging artemisinin resistance in a multinational cohort
door: Ataide, R, et al.
Gepubliceerd in: (2017) -
The mechanism of artemisinin resistance of Plasmodium falciparum malaria parasites originates in their initial transcriptional response
door: Zhu, L, et al.
Gepubliceerd in: (2021)