Multiple parasite lineages with different proliferation rates or fitness may coexist within a clinical malaria isolate, resulting in complex growth interactions and variations in phenotype. To elucidate the dynamics of parasite growth in multiclonal isolates, we measured growth rates (GRs) of three Plasmodium falciparum Cambodian isolates, including IPC_3445 (MRA-1236), IPC_5202 (MRA-1240), IPC_6403 (MRA-1285), and parasite lineages previously cloned from each of these isolates by limiting dilution. Following synchronization, in vitro cultures of each parasite line were maintained over four consecutive asexual cycles (192Â h), with thin smears prepared at each 48-h cycle to estimate GR and fold change in parasitemia (FCP). Cell cycle time (CCT), the duration it takes for ring-stage parasites to develop into mature schizonts, was measured by monitoring the development of 0-3-h post-invasion rings for up to 52Â h post-incubation. Laboratory lines 3D7 (MRA-102) and Dd2 (MRA-150) were used as controls. Significant differences in GR, FCP, and CCT were observed between parasite isolates and clonal lineages from each isolate. The parasite lines studied here have well-defined growth phenotypes and will facilitate basic malaria research and development of novel malaria interventions. These lines are available to malaria researchers through the MR4 collection of NIAID's BEI Resources Program.
Dynamics of parasite growth in genetically diverse Plasmodium falciparum isolates.
遗传多样性疟原虫分离株中寄生虫生长的动态变化
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作者:Nkhoma Standwell C, Ahmed Amel O A, Porier Danielle, Rashid Sujatha, Bradford Rebecca, Molestina Robert E, Stedman Timothy T
| 期刊: | Molecular and Biochemical Parasitology | 影响因子: | 1.500 |
| 时间: | 2023 | 起止号: | 2023 Jun;254:111552 |
| doi: | 10.1016/j.molbiopara.2023.111552 | ||
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