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The LUMIBOR project seeks to advance drug design by utilizing boron hybridization to create new chemical synthesis methods. It aims to develop light-driven processes that can produce innovative organoboron molecules for therapeutic applications.
With a steadily growing, aging population, there is significant strain on the pharmaceutical sector to produce state of the art therapeutics for societal needs whilst respecting the finite resources provided by the environment.
Prominent advances in drug design are reliant on chemical synthesis platforms allowing the efficient exploration of chemical space to discover next generation functional molecules.
As a result, innovation is currently limited by the practical implementation of enabling me…
MAX-PLANCK-GESELLSCHAFT ZUR FORDERUNG DER WISSENSCHAFTEN EV
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