Sciences numériquesLes sciences numériques (traduction de l'anglais computational sciences), autrement dénommées calcul scientifique ou informatique scientifique, ont pour objet la construction de modèles mathématiques et de méthodes d'analyse quantitative, en se basant sur l'utilisation des sciences du numérique, pour analyser et résoudre des problèmes scientifiques. Cette approche scientifique basée sur un recours massif aux modélisations informatiques et mathématiques et à la simulation se décline en : médecine numérique, biologie numérique, archéologie numérique, mécanique numérique, par exemple.
Séquençage de l'ADNcadre|Résultat du séquençage par la méthode de Sanger. L'ordre de chaque bande indique la position d'un nucléotide A,T,C ou G Le séquençage de l'ADN consiste à déterminer l'ordre d'enchaînement des nucléotides pour un fragment d’ADN donné. La séquence d’ADN contient l’information nécessaire aux êtres vivants pour survivre et se reproduire. Déterminer cette séquence est donc utile aussi bien pour les recherches visant à savoir comment vivent les organismes que pour des sujets appliqués.
Massive parallel sequencingMassive parallel sequencing or massively parallel sequencing is any of several high-throughput approaches to DNA sequencing using the concept of massively parallel processing; it is also called next-generation sequencing (NGS) or second-generation sequencing. Some of these technologies emerged between 1993 and 1998 and have been commercially available since 2005. These technologies use miniaturized and parallelized platforms for sequencing of 1 million to 43 billion short reads (50 to 400 bases each) per instrument run.
Plasmodium vivaxPlasmodium vivax est la cause la plus fréquente de la fièvre tierce bénigne, l'une des formes du paludisme encore appelé malaria. Cette maladie est moins virulente que le P. falciparum, et souvent considérée comme bénigne. Elle est néanmoins débilitante et parfois mortelle, et économiquement coûteuse (coût estimé entre 1,4 et 4 milliards de dollars américains par an) dans de nombreux pays tropicaux et tempérés hors d'Afrique.
History of malariaThe history of malaria extends from its prehistoric origin as a zoonotic disease in the primates of Africa through to the 21st century. A widespread and potentially lethal human infectious disease, at its peak malaria infested every continent except Antarctica. Its prevention and treatment have been targeted in science and medicine for hundreds of years. Since the discovery of the Plasmodium parasites which cause it, research attention has focused on their biology as well as that of the mosquitoes which transmit the parasites.
Antimalarial medicationAntimalarial medications or simply antimalarials are a type of antiparasitic chemical agent, often naturally derived, that can be used to treat or to prevent malaria, in the latter case, most often aiming at two susceptible target groups, young children and pregnant women. As of 2018, modern treatments, including for severe malaria, continued to depend on therapies deriving historically from quinine and artesunate, both parenteral (injectable) drugs, expanding from there into the many classes of available modern drugs.
Exome sequencingExome sequencing, also known as whole exome sequencing (WES), is a genomic technique for sequencing all of the protein-coding regions of genes in a genome (known as the exome). It consists of two steps: the first step is to select only the subset of DNA that encodes proteins. These regions are known as exons—humans have about 180,000 exons, constituting about 1% of the human genome, or approximately 30 million base pairs. The second step is to sequence the exonic DNA using any high-throughput DNA sequencing technology.
Sanger sequencingSanger sequencing is a method of DNA sequencing that involves electrophoresis and is based on the random incorporation of chain-terminating dideoxynucleotides by DNA polymerase during in vitro DNA replication. After first being developed by Frederick Sanger and colleagues in 1977, it became the most widely used sequencing method for approximately 40 years. It was first commercialized by Applied Biosystems in 1986. More recently, higher volume Sanger sequencing has been replaced by next generation sequencing methods, especially for large-scale, automated genome analyses.
Réseau métaboliqueUn réseau métabolique est l'ensemble des processus métaboliques et physiques qui déterminent les propriétés physiologiques et biochimiques d'une cellule. Par conséquent, ces réseaux comprennent les réactions chimiques du métabolisme, les voies métaboliques, ainsi que les interactions régulatrices qui guident ces réactions. Avec le séquençage complet des génomes, il est maintenant possible de reconstituer le réseau de réactions biochimiques dans de nombreux organismes, des bactéries aux humains.
Whole genome sequencingWhole genome sequencing (WGS), also known as full genome sequencing, complete genome sequencing, or entire genome sequencing, is the process of determining the entirety, or nearly the entirety, of the DNA sequence of an organism's genome at a single time. This entails sequencing all of an organism's chromosomal DNA as well as DNA contained in the mitochondria and, for plants, in the chloroplast. Whole genome sequencing has largely been used as a research tool, but was being introduced to clinics in 2014.