4.4 Article

A portfolio of geographically distinct laboratory-adapted Plasmodium falciparum clones with consistent infection rates in Anopheles mosquitoes

期刊

MALARIA JOURNAL
卷 20, 期 1, 页码 -

出版社

BMC
DOI: 10.1186/s12936-021-03912-x

关键词

Malaria; Transmission; Parasite culture; Culture adaptation; Cloning; Clinical isolates; Anopheles; Gametocyte; Oocysts

资金

  1. INFRAVEC, an international and interdisciplinary research infrastructure project - European Commission Horizon 2020 Research Infrastructure Program (INFRAIA)
  2. European Research Council (ERC) [864180]
  3. European Research Council (ERC) [864180] Funding Source: European Research Council (ERC)

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This study aimed to identify new culture-adapted transmissible P. falciparum isolates from different geographical locations. Out of 21 isolates tested, nine fulfilled selection criteria and could be transmitted to Anopheles mosquitoes, providing a valuable addition to the malaria research tool box, particularly for studying malaria transmission.
Background The ability to culture Plasmodium falciparum continuously in vitro has enabled stable access to asexual and sexual parasites for malaria research. The portfolio of isolates has remained limited and research is still largely based on NF54 and its derived clone 3D7. Since 1978, isolates were collected and cryopreserved at Radboudumc from patients presenting at the hospital. Here, procedures are described for culture adaptation of asexual parasites, cloning and production of sexual stage parasites responsible for transmission (gametocytes) and production of oocysts in Anopheles mosquitoes. This study aimed to identify new culture-adapted transmissible P. falciparum isolates, originating from distinct geographical locations. Methods Out of a collection of 121 P. falciparum isolates stored in liquid nitrogen, 21 from different geographical origin were selected for initial testing. Isolates were evaluated for their ability to be asexually cultured in vitro, their gametocyte production capacity, and consistent generation of oocysts. Results Out of 21 isolates tested, twelve were excluded from further analysis due to lack of mature gametocyte production (n = 1) or generation of satisfactory numbers of oocysts in mosquitoes (n = 11). Nine isolates fulfilled selection criteria and were cloned by limiting dilution and retested. After cloning, one isolate was excluded for not showing transmission. The remaining eight isolates transmitted to Anopheles stephensi or Anopheles coluzzii mosquitoes and were categorized into two groups with a reproducible mean oocyst infection intensity above (n = 5) or below five (n = 3). Conclusions These new P. falciparum culture-adapted isolates with reproducible transmission to Anopheles mosquitoes are a valuable addition to the malaria research tool box. They can aid in the development of malaria interventions and will be particularly useful for those studying malaria transmission.

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