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Gil, J. P.

Publications and source records attributed to Gil, J. P..

2 recordsLinked to original sources

Emergence of Artemisinin-based Combination Therapy Resistance Markers in Plasmodium falciparum from the Brazilian Tri-Border Region of the Guiana Shield

Plasmodium falciparum malaria remains a public health concern in the Brazilian Amazon, particularly among mobile and remote populations. Antimalarial drug resistance threatens elimination efforts, particularly in the Guiana Shield, which has historically been linked to the spread of resistant parasites. We analyzed 99 P. falciparum isolates collected in Roraima State, northern Brazil (2016-2020), using targeted deep sequencing. Variants were assessed in pfcrt, pfmdr1, and pfk13, and copy number variation in pfpm2 and pfpm3, including detection of the pfpm2/3 hybrid. High coverage enabled the detection of both dominant and minority alleles. Among the 99 isolates, the pfmdr1-NFD haplotype was found in 6% (6/99, all likely originating from Venezuela), pfcrt-C350R in 7% (7/99), and pfpm2 and pfpm3 amplifications in 5% (5/94) and 6% (6/97), respectively, and the pfpm2/3 hybrid in 4% (4/99). No validated or candidate pfk13 mutations associated with artemisinin partial resistance were detected. This study provides the first report of the pfpm2/3 hybrid and the pfmdr1-NFD haplotype in Brazil, and confirms the presence of pfcrt-C350R in isolates from the tri-border area. These variants, associated with reduced susceptibility to lumefantrine and piperaquine, suggest that parasites in northern Brazil already carry resistance markers that are prevalent in neighboring countries. These results highlight the need for continued genomic surveillance to detect early warning signals, guide treatment policies, and contain the spread of parasites with reduced susceptibility to ACT partner drugs.

microbiology↗

Uncovering the genetic diversity of the malaria parasite antigen MSP2 across Sub-Saharan Africa

Genetic diversity in Plasmodium falciparum poses a significant challenge to malaria control and elimination. This is particularly important for developing fully efficacious vaccines, which should include valuable blood stage antigens. Several antigen candidates are highly diverse and require further understanding. We surveyed the genetic diversity of the highly polymorphic merozoite surface protein 2 (MSP2) in 2761 P. falciparum isolates collected across Sub-Saharan Africa. Using PCR-based genotyping and long-read sequencing, we identified extensive diversity among msp2 size variants and sequences. Some size variants were more prevalent than others across different geographical regions, transmission intensities, and time points. These variants comprised multiple unique sequences, of which several were geographically and temporally widespread. Our study reveals greater msp2 sequence diversity than previously known, while also identifying interesting similarities in sequence and gene length across Sub-Saharan Africa. These findings support the further exploration of common msp2 variants in relation to parasite virulence and vaccine development.

microbiology↗