Le Centre d'échange pour la prévention des risques biotechnologiques (BCH) est une plate-forme en ligne d'échange d'informations sur les organismes vivants modifiés (OVM) et un outil clé pour faciliter la mise en œuvre du Protocole de Cartagena sur la prévention des risques biotechnologiques.

Annonces


08 juin 2026
 
BCH Activity Spotlight: Panama

Recognizing Parties with recent record publications or updates, 17 - 23 August

13 nov. 2025
 
Congratulations to all countries that submitted their Fifth National Report by the deadline!

If you have not yet done so, please submit as soon as possible!

03 juin 2026
 
Biosafety Clearing-House and Risk Assessment Training Workshop, 17-18 October 2026 - Yerevan, Armenia

Registration deadline: 1 September 2026. Financial support requests: 15 July 2026

Parties au Cartagena Protocol

JavaScript chart by amCharts 3.21.6
Clause de non-responsabilité
Loading...

Enregistrements nationaux


Publié récemment
24 août 2026Secretaría de Agricultura y Desarrollo Rural (SADER)

La Secretaría de Agricultura y Desarrollo Rural tiene las atribuciones que establece la Ley de Bioseguridad de Organismos Genéticamente Modificados respecto a los OVMs que son especies agrícolas, ganaderas, pesqueras, acuícolas; OVMs que son insumos fitozoosanitarios y de nutrición animal y vegetal, así como microorganismos con finos productivos agrícolas, pecuarios, acuícolas y fitozoosanitarios.

21 août 2026Resolución AG 0572-2013 Por la cual se crea el Comité Sectorial de Bioseguridad Ambiental para los Organismos Genéticamente Modificados

Capacity-Building, Competent National Authorities and National Focal Points, Confidential Information, Contained use, Handling, transport, packaging and identification, Illegal transboundary movements, Information Sharing, Intentional introduction into the environment (AIA), Liability and redress, Public awareness and participation, Risk assessment and management, Socio-economic considerations, Transboundary movement (import/export), Transit, Unintentional transboundary movements and emergency measures

Fichiers de référence


Publié récemment
18 août 2026VECTORMUNE® FP-MG+AE - VECTORMUNE® FP-MG + AE

Ceva Saúde Animal Ltda(CEVA) | Production of medical or pharmaceutical compounds (human or animal) (Vaccines)

Living Modified Organismbch-lmo-scbd-300747-1
11 août 2026Gene Drive Monitor (Publication Date: Jan 2023)

The database includes: (i) Laboratory research and modelling on gene drives as reported in the academic literature and other sources such as press releases from funders and universities; (ii) Proposals for gene drives as identified from the natural sciences literature; (iii) Proposals deriving from other academic literature (such as literature relating to policy or ethics) are included at the discretion of the researchers, for example if such proposals designate novel targets; and (iv) The database covers gene drives and the closely related field of ‘sex ratio distorters’. ‘Horizontal Environmental Genetic Alteration Agents’ (HEGAAs) based on modified viruses may be included in the future pending further research and development. The database functions as a live literature review. Reports and publications are also periodically published through the database.

11 août 2026Gene Drive Development in Insect Targets: A Horizon Scanning Survey (Publication Date: Jun 2026)

Summary: Screening and analysis of the scientific literature up to 31 December 2023 showed: (i) Gene drives were developed or proposed in 43 insect species1. Additionally, gene drives were proposed for 5 general taxonomic groups of insects: (ii) Of these 48 insect species or groups the majority are agricultural pests, 28 in total, while 17 are vectors of human disease, in particular malaria. The agricultural pests include 6 livestock pests or livestock disease vectors, which partially overlap with human disease vectors; (iii) The majority of gene drive proposals were based on eradication/suppression approaches. Only a very few projects were aiming to modify characteristics of insects in the wild; (iv) By the end of 2023 no project was close to producing a usable and proven ‘product’. But some were closer to potential field trials, pending on regulation, risk assessment and further (technical) developments; (v) CRISPR-based homing gene drives were shown to function with reasonable efficiency in several members of the order Diptera (true flies), especially within the mosquito genera Anopheles and Aedes, and within the genus Drosophila. However, it is notable that within another member of the Diptera, the mosquito Culex quinquefasciatus, a homing gene drive was only shown to operate at very low efficiency; and (vi) It is unclear how applicable homing CRISPR gene drives will be in insects outside of the Diptera. In nondipteran insects there was only one example of a such a gene drive showing any level of functionality: a very low efficiency system constructed in the diamondback moth (Plutella xylostella). As of 1 June 2026 there have been few significant changes since the end of 2023. The majority of newly reported gene drive systems have been in Anopheles mosquitoes, with two also developed in Aedes mosquitoes. Gene drive development is also continuing in fruit fly targets: two more systems have been reported targeting spotted winged drosophila (Drosophila suzukii) and a gene drive has now been developed in the mediterranean fruit fly (Certatitis capitata).

11 août 2026Gene Drive Development in Non-Insect Targets – including Vertebrates, Snails, Fungi and Plants: A Horizon Scanning Survey up to end 2023 (Publication Date: Apr 2026)

Summary: Screening and analysis of the scientific literature for gene drive development in non-insect targets up to 31 December 2023,1 showed: (i) There are 46 current or proposed non-insect targets; (ii) Proposals span a wide range of species and taxonomic groups: from mammals and fish to snails, arachnids, fungi and plants; (iii) In the vast majority of cases the aim is to suppress or eradicate the target; (iv) Compared to gene drive systems in insects, the systems in other taxonomic groups are further away from releases into the environment; (v) A significant amount of research has focused on developing gene drives in mice, so far with limited success, though efforts are ongoing; (vi) Development of gene drives in mice is seen by many as a pathway to applying the technology in other mammals; and (vii) There appear to be significant obstacles in applying homing CRISPR gene drive technology in new species and taxonomic groups.