Science · 2018 · 608 citations · 16 references
Combinatorial ChemistryRobotic SystemsEngineeringBioroboticsChemical Programming LanguageRobotic AgentIntelligent RoboticsOrganic ChemistryChemistryModular Robotic SystemMolecular ComputingMedicinal ChemistryComplex Organic CompoundsRobot LearningDesignComplex MoleculesComputer ScienceBiomolecular EngineeringEvolutionary RoboticsNatural SciencesAutomationRational Drug DesignSynthetic BiologyProgram SynthesisRoboticsDrug Discovery
The synthesis of complex organic compounds is largely a manual process that is often incompletely documented. To address these shortcomings, we developed an abstraction that maps commonly reported methodological instructions into discrete steps amenable to automation. These unit operations were implemented in a modular robotic platform by using a chemical programming language that formalizes and controls the assembly of the molecules. We validated the concept by directing the automated system to synthesize three pharmaceutical compounds, diphenhydramine hydrochloride, rufinamide, and sildenafil, without any human intervention. Yields and purities of products and intermediates were comparable to or better than those achieved manually. The syntheses are captured as digital code that can be published, versioned, and transferred flexibly between platforms with no modification, thereby greatly enhancing reproducibility and reliable access to complex molecules.
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On-demand continuous-flow production of pharmaceuticals in a compact, reconfigurable system
Andrea Adamo, Rachel L. Beingessner, Mohsen Behnam et al. · Science · 2016 · 923 citations
Synthesis of many different types of organic small molecules using one automated process
Junqi Li, Steven G. Ballmer, Eric P. Gillis et al. · Science · 2015 · 553 citations · Full text