Amy K Bei
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Explore the profile of Amy K Bei including associated specialties, affiliations and a list of published articles.
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63
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1238
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Recent Articles
1.
Wade A, Sene S, Caspar E, Diallo F, Platon L, Thiebaut L, et al.
J Antimicrob Chemother
. 2025 Jan;
80(3):828-839.
PMID: 39846779
Background: Since 2006, artemisinin-based combination therapies (ACTs) have been introduced in Senegal in response to chloroquine resistance (CQ-R) and have shown high efficacy against Plasmodium falciparum. However, the detection of...
2.
Sene S, Pouye M, Martins R, Diallo F, Mangou K, Bei A, et al.
Front Parasitol
. 2025 Jan;
2():1076759.
PMID: 39816817
The emergence of artemisinin partial resistance (ART-r) in malaria parasites has substantially compromised the efficacy of antimalarial treatments across southeast Asia (SE Asia). The spread of ART-r within the African...
3.
Ba A, Thiam L, Pouye M, Guo Y, Patel S, Sene S, et al.
medRxiv
. 2024 Nov;
PMID: 39484257
The cysteine-rich protective antigen (PfCyRPA) is a promising target as a next-generation blood-stage malaria vaccine and together with PCRCR complex members, the reticulocyte binding-like homologous protein 5 (PfRh5) and the...
4.
Lapidus S, Goheen M, Sy M, Deme A, Ndiaye I, Diedhiou Y, et al.
J Infect Dis
. 2024 Oct;
PMID: 39475423
Background: Measuring malaria transmission intensity using the traditional entomological inoculation rate is difficult. Antibody responses to mosquito salivary proteins like SG6 have been used as biomarkers of exposure to Anopheles...
5.
Thiam L, McHugh K, Ba A, Li R, Guo Y, Pouye M, et al.
NPJ Vaccines
. 2024 Oct;
9(1):198.
PMID: 39448626
Vaccines to the Plasmodium falciparum reticulocyte binding-like protein homologue 5 (PfRH5) target the blood-stage of the parasite life cycle. PfRH5 has the potential to trigger the production of strain-transcendent antibodies...
6.
Nahid D, Coffey K, Bei A, Cordy R
PLoS Pathog
. 2024 Sep;
20(9):e1012514.
PMID: 39298535
Plasmodium falciparum undergoes sequestration within deep tissues of the human body, spanning multiple organ systems with differing oxygen (O2) concentrations. The parasite is exposed to an even greater range of...
7.
Peno C, Lin T, Hislop M, Yolda-Carr D, Farjado K, York A, et al.
Microbiol Spectr
. 2024 Jul;
12(9):e0059124.
PMID: 39028185
Molecular methods have improved the sensitivity of the detection of pneumococcal carriage in saliva. However, they typically require sample culture enrichment and nucleic acid extraction prior to performing the detection...
8.
Ndiaye Y, Wong W, Thwing J, Schaffner S, Brenneman K, Tine A, et al.
Malar J
. 2024 Jul;
23(1):205.
PMID: 38982475
Background: Drug resistance in Plasmodium falciparum is a major threat to malaria control efforts. Pathogen genomic surveillance could be invaluable for monitoring current and emerging parasite drug resistance. Methods: Data...
9.
Lapidus S, Goheen M, Sy M, Deme A, Ndiaye I, Diedhiou Y, et al.
medRxiv
. 2024 May;
PMID: 38712295
Background: Measuring malaria transmission intensity using the traditional entomological inoculation rate is difficult. Antibody responses to mosquito salivary proteins such as SG6 have previously been used as biomarkers of exposure...
10.
Ndiaye Y, Wong W, Thwing J, Schaffner S, Tine A, Diallo M, et al.
medRxiv
. 2023 May;
PMID: 37163114
Drug resistance in is a major threat to malaria control efforts. We analyzed data from two decades (2000-2020) of continuous molecular surveillance of parasite strains in Senegal to determine how...