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The BiPhoMag project aims to develop advanced bioorthogonal reactions using multifunctional hybrid nanorobots for precise control in biological systems. By leveraging visible light and magnetic fields, it seeks to create new tools for therapeutic applications and molecular manipulation.
Bioorthogonal chemistry enables the manipulation of biological systems without interfering with native processes and has revolutionized medicine and chemical biology.
However, current bioorthogonal transformations remain restricted to a narrow range of stoichiometric, bond-cleaving reactions.
There is therefore an unmet need for catalytic, bond-forming, and stimuli-responsive processes capable of inducing amplified and controllable biological effects.BiPhoMag project aims to address this challen…
UNIVERSIDADE DE SANTIAGO DE COMPOSTELA
UNIVERSIDAD DE SANTIAGO DE COMPOSTELA
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