Publications by authors named "D Ngamije"

Article Synopsis
  • - This study analyzes 203 whole genome sequences of SARS-CoV-2 from Rwanda between May 2020 and February 2021, revealing a shift towards the A.23.1 sub-lineage, which is now the dominant strain.
  • - The research also identified the first cases of the concerning B.1.1.7 and B.1.351 variants among travelers arriving at Kigali International Airport.
  • - It emphasizes the significant role of neighboring countries in introducing new cases to Rwanda and calls for ongoing genomic surveillance and regional cooperation to effectively tackle COVID-19.
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Background: Partial artemisinin resistance is suspected if delayed parasite clearance (ie, persistence of parasitaemia on day 3 after treatment initiation) is observed. Validated markers of artemisinin partial resistance in southeast Asia, Plasmodium falciparum kelch13 (Pfkelch13) R561H and P574L, have been reported in Rwanda but no association with parasite clearance has been observed. We aimed to establish the efficacy of artemether-lumefantrine and genetic characterisation of Pfkelch13 alleles and their association with treatment outcomes.

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The arrival of coronavirus disease 2019 (COVID-19) on the African continent resulted in a range of lockdown measures that curtailed the spread of the infection but caused economic hardship. African countries now face difficult choices regarding easing of lockdowns and sustaining effective public health control measures and surveillance. Pandemic control will require efficient community screening, testing, and contact tracing; behavioral change interventions; adequate resources; and well-supported, community-based teams of trained, protected personnel.

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Article Synopsis
  • Artemisinin resistance, marked by delayed clearance of P. falciparum after treatment, has been prevalent in Southeast Asia but hasn't been observed in Africa until now.
  • A study in Rwanda identified the Pfkelch13 R561H mutation in 7.4% of patients, suggesting it may be linked to artemisinin resistance.
  • This finding indicates the emergence of this resistance mechanism in Africa, which could threaten the effectiveness of current antimalarial treatments.
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