Synthesis of an H3 Antagonist via Sequential One-Pot Additions of a Magnesium Ate Complex and an Amine to a 1,4-Ketoester followed by Carbonyl-Directed Fluoride Addition

We describe the development of an efficient and scalable process for the preparation of fluorocyclobutane-containing H3 antagonist, 1. The synthesis was accomplished by the chemoselective addition of a magnesium ate complex and an amine to a 1,4-ketoester in a one-pot sequence, followed by a diaster...

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Veröffentlicht in:Organic process research & development 2012-08, Vol.16 (8), p.1393-1403
Hauptverfasser: Hawkins, Joel M, Dubé, Pascal, Maloney, Mark T, Wei, Lulin, Ewing, Marcus, Chesnut, Stephen M, Denette, Joshua R, Lillie, Brett M, Vaidyanathan, Rajappa
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Sprache:eng
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Zusammenfassung:We describe the development of an efficient and scalable process for the preparation of fluorocyclobutane-containing H3 antagonist, 1. The synthesis was accomplished by the chemoselective addition of a magnesium ate complex and an amine to a 1,4-ketoester in a one-pot sequence, followed by a diastereoselective carbonyl-directed fluorination. The chemoselective addition of the magnesium ate complex to the ketoester benefited from tight stoichiometric control, short addition times, and lower reaction temperatures, and thus was amenable to rapid mixing and excellent heat transfer in a flow reactor.
ISSN:1083-6160
1520-586X
DOI:10.1021/op300093j