Practical Asymmetric Synthesis of a Bicyclic Pyrrolidinol

The “butterfly-shaped” bicyclic pyrrolidinol ((2R,7aS)-2-fluorotetrahydro-1H-pyrrolizin-7a­(5H)-yl)-methanol (1) is a key building block for drug candidates, and its practical chemical synthesis remains elusive. As such, an asymmetric synthesis for ((2R,7aS)-2-fluorotetrahydro-1H-pyrrolizin-7a­(5H)-...

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Veröffentlicht in:Organic process research & development 2022-10, Vol.26 (10), p.2839-2846
Hauptverfasser: Guo, Wenxing, Gharbaoui, Tawfik, Lizza, Joseph R., Meng, Fanfan, Wang, Yuanxian, Xin, Maoshu, Chen, Yuanpeng, Li, Jing, Chen, Cheng-yi
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Sprache:eng
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Zusammenfassung:The “butterfly-shaped” bicyclic pyrrolidinol ((2R,7aS)-2-fluorotetrahydro-1H-pyrrolizin-7a­(5H)-yl)-methanol (1) is a key building block for drug candidates, and its practical chemical synthesis remains elusive. As such, an asymmetric synthesis for ((2R,7aS)-2-fluorotetrahydro-1H-pyrrolizin-7a­(5H)-yl)-methanol (1) that is amenable for scale-up has been developed. The newly optimized process utilizes readily available N-Boc-trans-4-hydroxy-l-proline methyl ester (8) to establish the challenging stereogenic center bearing the fluoride. Subsequent diastereoselective α-alkylation was achieved by leveraging Seebach’s self-regeneration of stereochemistry (SRS) methodology, which has been exploited for the synthesis of proline derivatives. Finally, intramolecular cyclization/deprotection cascade and carbonyl reduction afford the bicyclic pyrrolidinol 1 in nine linear steps from compound 8. This process significantly reduces the overall production sequence and allows the preparation of product 1 on a multikilo scale with a 40% overall yield and perfect control of chirality (>99% ee and de).
ISSN:1083-6160
1520-586X
DOI:10.1021/acs.oprd.2c00200