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  • Le Swiss 3RCC finance des projets innovants offrant un potentiel d’avancement dans le domaine des principes des 3R. Nos opportunités de financement sont présentées ci-dessous ; suivez le programme spécifique qui vous intéresse pour obtenir plus d’informations et connaître la procédure de candidature.

    Opportunités de financement

    Les programmes de financement disponibles pour le cycle de financement en cours (2025-2028) sont encore en phase de planification et sont donc susceptibles d’être modifiés. Le règlement de financement du Swiss 3RCC est disponible ici.

    3Rs DOCTORATE PROGRAMME

    The Swiss 3R Competence Centre announces its 2025 3Rs Doctorate Grant scheme, supporting innovative PhD research that advances the replacement, reduction, and refinement of animal use in scientific procedures. This competitive grant scheme follows a two-stage application process and aims to develop a new generation of researchers with strong 3Rs principles.

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    KNOWLEDGE TRANSFER GRANT

    One of the challenges facing the implementation of 3Rs approaches is often the initial learning curve that other labs face in changing their standard procedures. There is an understandable concern that a potentially high initial investment may not be...

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    3Rs SUPPORT GRANT

    Supporting ongoing research activities relevant to the 3Rs. Increasing 3Rs implementation, education and/or communication. Grants here are generally expected to be maximum CHF 20’000.- and as such function to enhance or implement 3Rs activities. This scheme replaces the previous Refinement Grant, without the strict focus and potential 3Rs-classification issues we’ve encountered. Next call likely to be 2026, or late 2025.

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    PROJETS FINANCÉS

    Breeding genetically modified mice for research often produces large numbers of surplus animals - those whose genotypes are unsuitable for either experiments or further breeding. When crossing heterozygous animals to produce specific genotypes, Mendelian inheritance means that a significant proportion of offspring will not carry the desired genetic combination. For complex breeding schemes involving multiple genetic modifications, this problem multiplies substantially.
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    Algorithmic Breeding Planning
    The home lab (Rubin Lab, DBMR; University of Bern) focuses on in vitro models to investigate lineage plasticity and metastasis and has most recently developed a novel organoid-based model to examine tumour-host interactions and the metastatic niche utilising spatially resolved cerebral organoids.
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    An in vitro metastatic niche model of brain metastasis
    Our lab develops organs-on-chip (OOC) models, focusing on the lungs, liver and gut. We are creating vascularized tissues-on-chip (patent filed) that better mimic the tissue microenvironment, enabling interaction studies between the vascular systems and their surroundings.
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    Generation of vascularized liver spheroid on-chip model for in-vitro infectious disease studies
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