Drug discoveryIn the fields of medicine, biotechnology and pharmacology, drug discovery is the process by which new candidate medications are discovered. Historically, drugs were discovered by identifying the active ingredient from traditional remedies or by serendipitous discovery, as with penicillin. More recently, chemical libraries of synthetic small molecules, natural products or extracts were screened in intact cells or whole organisms to identify substances that had a desirable therapeutic effect in a process known as classical pharmacology.
Conception de médicamentLa conception de médicament, plus précisément conception de substance pharmacologiquement active plus connue sous sa dénomination anglaise Drug design est l'ensemble des processus nécessaires à l'élaboration d'un médicament. Dans l'industrie pharmaceutique, ces processus peuvent-être subdivisés et répartis en quatre phases ou étapes : La phase de recherche La phase de développement La phase clinique La phase de mise sur le marché Remarque : Les phases de recherche et développement sont communément dénommées R&D.
Cible thérapeutiqueUne cible thérapeutique est un élément quelconque d'un organisme auquel se fixe prioritairement une entité modifiant son comportement, tel qu'un ligand endogène, un médicament ou une drogue. Un exemple de cible thérapeutique courante sont les protéines et les acides nucléiques. La définition dépend du contexte et peut référer à la cible d'un médicament, la cible d'une hormone (comme l'insuline), ou la cible de stimulus externe. Le principe est que la cible est "touchée" par un signal et qu'ainsi sa fonction et son attitude sont changées.
Lead compoundA lead compound (ˈliːd, i.e. a "leading" compound, not to be confused with various compounds of the metallic element lead) in drug discovery is a chemical compound that has pharmacological or biological activity likely to be therapeutically useful, but may nevertheless have suboptimal structure that requires modification to fit better to the target; lead drugs offer the prospect of being followed by back-up compounds. Its chemical structure serves as a starting point for chemical modifications in order to improve potency, selectivity, or pharmacokinetic parameters.
Fragment-based lead discoveryFragment-based lead discovery (FBLD) also known as fragment-based drug discovery (FBDD) is a method used for finding lead compounds as part of the drug discovery process. Fragments are small organic molecules which are small in size and low in molecular weight. It is based on identifying small chemical fragments, which may bind only weakly to the biological target, and then growing them or combining them to produce a lead with a higher affinity. FBLD can be compared with high-throughput screening (HTS).
Hit to leadHit to lead (H2L) also known as lead generation is a stage in early drug discovery where small molecule hits from a high throughput screen (HTS) are evaluated and undergo limited optimization to identify promising lead compounds. These lead compounds undergo more extensive optimization in a subsequent step of drug discovery called lead optimization (LO).
High-content screeningHigh-content screening (HCS), also known as high-content analysis (HCA) or cellomics, is a method that is used in biological research and drug discovery to identify substances such as small molecules, peptides, or RNAi that alter the phenotype of a cell in a desired manner. Hence high content screening is a type of phenotypic screen conducted in cells involving the analysis of whole cells or components of cells with simultaneous readout of several parameters.
Knock-out (génétique)vignette|La souris de gauche a un gène de croissance des poils bloqué, tandis que la souris de droite est une souris normale. En biologie moléculaire, le knock-out (knockout ou KO), en français « invalidation génique », est l'inactivation totale d'un gène. Ce terme fut initialement utilisé pour décrire la création de souris transgéniques chez qui un gène est invalidé par recombinaison homologue : les souris knock-out. Depuis, il est principalement utilisé chez les espèces modèles mammifères telles que la souris, le rat ou les lignées cellulaires humaines.
Cycle cellulairevignette|335x335px|Cycle cellulaire d'une cellule eucaryote (car présence de la mitose) Le cycle cellulaire est l'ensemble des étapes qui constituent et délimitent la vie d'une cellule. Ce cycle est composé de plusieurs phases de croissance dans lesquelles la cellule grossit et duplique son matériel génétique (interphase) et d'une phase où celle-ci se divise (mitose) pour donner naissance à deux cellules filles identiques (dans le cas de la mitose). Les cellules filles reproduiront ce cycle, et ainsi de suite.
Phenotypic screeningPhenotypic screening is a type of screening used in biological research and drug discovery to identify substances such as small molecules, peptides, or RNAi that alter the phenotype of a cell or an organism in a desired manner. Phenotypic screening must be followed up with identification (sometimes referred to as target deconvolution) and validation, often through the use of chemoproteomics, to identify the mechanisms through which a phenotypic hit works. Phenotypic screening historically has been the basis for the discovery of new drugs.