Logo Lanfrica
  • Home
  • Atlas
  • Insights
  • Docs
  • Sign in

© 2026 Lanfrica. All rights reserved. All copyrights of the resources shown on the Lanfrica website belong to the original copyright holders, unless explicitly stated otherwise.

Targeted Next Generation Sequencing for malaria research in Africa: current status and outlook

Domain:

healthcare

Record type:

paper
Creator:
PlaAniEdwAlf
Publisher:
Spr
Host:
Abstract Targeted Next Generation Sequencing (TNGS) is an efficient and economical Next Generation Sequencing (NGS) platform and the preferred choice when specific genomic regions are of interest. So far, only institutions located in middle and high-income countries have developed and implemented the technology, however, the efficiency and cost savings, as opposed to more traditional sequencing methodologies (e.g. Sanger sequencing) make the approach potentially well suited for resource-constrained regions as well. In April 2018, scientists from the Plasmodium Diversity Network Africa (PDNA) and collaborators met during the 7th Pan African Multilateral Initiative of Malaria (MIM) conference held in Dakar, Senegal to explore the feasibility of applying TNGS to genetic studies and malaria surveillance in Africa. The group of scientists reviewed the current experience with TNGS platforms in sub-Saharan Africa (SSA) and identified potential roles the technology might play to accelerate malaria research, scientific discoveries and improved public health in SSA. Research funding, infrastructure and human resources were highlighted as challenges that will have to be mitigated to enable African scientists to drive the implementation of TNGS in SSA. Current roles of important stakeholders and strategies to strengthen existing networks to effectively harness this powerful technology for malaria research of public health importance were discussed.

Visit

doi.org

Licenses

http://creativecommons.org/licenses/by/4.0/http://creativecommons.org/licenses/by/4.0/

Similar

Genetic characterization of suspected MODY patients in Tunisia by targeted next-generation sequencingTargeted next generation sequencing provides insight for the genetic alterations in liquid biopsy of Egyptian brain tumor patientsField evaluation of nanopore targeted next-generation sequencing to predict drug-resistant tuberculosis from native sputum in South Africa and Zambia.Identification of novel mutations by targeted next-generation sequencing in Moroccan families clinically diagnosed with a neuromuscular disorderAdvanced Strategies for Alignment-based Real-time Analysis and Data Protection in Next-Generation Sequencing Fortschrittliche Strategien für alignierungs-basierte Echtzeit-Analyse und Datenschutz in Next-Generation SequencingAdditional file 3 of Targeted next-generation sequencing identifies novel variants in candidate genes for Parkinson’s disease in Black South African and Nigerian patients

Genetic characterization of suspected MODY patients in Tunisia by targeted next-generation sequencing

International audience AIMS: Maturity Onset Diabetes of the Young (MODY) is a monogen

Targeted next generation sequencing provides insight for the genetic alterations in liquid biopsy of Egyptian brain tumor patients

Abstract Background Glioblastoma (GBM) is the commonest primary

Field evaluation of nanopore targeted next-generation sequencing to predict drug-resistant tuberculosis from native sputum in South Africa and Zambia.

Rapid and comprehensive drug susceptibility testing (DST) is essential for diagnosing and treating d

Identification of novel mutations by targeted next-generation sequencing in Moroccan families clinically diagnosed with a neuromuscular disorder

The identification of underlying genes of genetic conditions has expanded greatly in the past decade

Advanced Strategies for Alignment-based Real-time Analysis and Data Protection in Next-Generation Sequencing Fortschrittliche Strategien für alignierungs-basierte Echtzeit-Analyse und Datenschutz in Next-Generation Sequencing

Next-generation sequencing (NGS), in particular Illumina sequencing, is the current stateof- the-art

Additional file 3 of Targeted next-generation sequencing identifies novel variants in candidate genes for Parkinson’s disease in Black South African and Nigerian patients

Additional file 3: Table S3. Intron regions covered as part of the exon targets.