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Efficient Synthesis of the A-Ring Phosphine Oxide Building Block Useful for 1α,25-Dihydroxy Vitamin D3 and Analogues
The 1α-hydroxy A-ring phosphine oxide 1, a useful building block for vitamin D analogues, was synthesized from (S)-carvone in nine synthetic operations and a single chromatographic purification in 25% overall yield. The synthesis features two novel efficient synthetic transformations: the Criegee r...
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Published in: | Journal of organic chemistry 2002-03, Vol.67 (5), p.1580-1587 |
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container_end_page | 1587 |
container_issue | 5 |
container_start_page | 1580 |
container_title | Journal of organic chemistry |
container_volume | 67 |
creator | Daniewski, Andrzej R Garofalo, Lisa M Hutchings, Stanley D Kabat, Marek M Liu, Wen Okabe, Masami Radinov, Roumen Yiannikouros, George P |
description | The 1α-hydroxy A-ring phosphine oxide 1, a useful building block for vitamin D analogues, was synthesized from (S)-carvone in nine synthetic operations and a single chromatographic purification in 25% overall yield. The synthesis features two novel efficient synthetic transformations: the Criegee rearrangement of α-methoxy hydroperoxyacetate 10 in methanol to obtain directly the desired secondary 3β-alcohol 11 and the highly chemo- and stereoselective isomerization of dieneoxide ester (E)- 7 to the 1α-allylic alcohol with an exocyclic double bond (E)- 8. Further insight into the selectivity control of the latter rearrangement was obtained from the reactions of (Z)-epimeric substrates. The new synthetic approach leading to the 1α-hydroxy epimers complements our previously reported synthesis of the corresponding 1β-epimers, thus producing all stereoisomers of these versatile building blocks efficiently from carvone. |
doi_str_mv | 10.1021/jo0161577 |
format | article |
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The synthesis features two novel efficient synthetic transformations: the Criegee rearrangement of α-methoxy hydroperoxyacetate 10 in methanol to obtain directly the desired secondary 3β-alcohol 11 and the highly chemo- and stereoselective isomerization of dieneoxide ester (E)- 7 to the 1α-allylic alcohol with an exocyclic double bond (E)- 8. Further insight into the selectivity control of the latter rearrangement was obtained from the reactions of (Z)-epimeric substrates. 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Org. Chem</addtitle><description>The 1α-hydroxy A-ring phosphine oxide 1, a useful building block for vitamin D analogues, was synthesized from (S)-carvone in nine synthetic operations and a single chromatographic purification in 25% overall yield. The synthesis features two novel efficient synthetic transformations: the Criegee rearrangement of α-methoxy hydroperoxyacetate 10 in methanol to obtain directly the desired secondary 3β-alcohol 11 and the highly chemo- and stereoselective isomerization of dieneoxide ester (E)- 7 to the 1α-allylic alcohol with an exocyclic double bond (E)- 8. Further insight into the selectivity control of the latter rearrangement was obtained from the reactions of (Z)-epimeric substrates. 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Org. Chem</addtitle><date>2002-03-08</date><risdate>2002</risdate><volume>67</volume><issue>5</issue><spage>1580</spage><epage>1587</epage><pages>1580-1587</pages><issn>0022-3263</issn><eissn>1520-6904</eissn><coden>JOCEAH</coden><abstract>The 1α-hydroxy A-ring phosphine oxide 1, a useful building block for vitamin D analogues, was synthesized from (S)-carvone in nine synthetic operations and a single chromatographic purification in 25% overall yield. The synthesis features two novel efficient synthetic transformations: the Criegee rearrangement of α-methoxy hydroperoxyacetate 10 in methanol to obtain directly the desired secondary 3β-alcohol 11 and the highly chemo- and stereoselective isomerization of dieneoxide ester (E)- 7 to the 1α-allylic alcohol with an exocyclic double bond (E)- 8. Further insight into the selectivity control of the latter rearrangement was obtained from the reactions of (Z)-epimeric substrates. The new synthetic approach leading to the 1α-hydroxy epimers complements our previously reported synthesis of the corresponding 1β-epimers, thus producing all stereoisomers of these versatile building blocks efficiently from carvone.</abstract><cop>Washington, DC</cop><pub>American Chemical Society</pub><doi>10.1021/jo0161577</doi><tpages>8</tpages></addata></record> |
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source | American Chemical Society:Jisc Collections:American Chemical Society Read & Publish Agreement 2022-2024 (Reading list) |
subjects | Alicyclic compounds Alicyclic compounds, terpenoids, prostaglandins, steroids Chemistry Exact sciences and technology Organic chemistry Preparations and properties |
title | Efficient Synthesis of the A-Ring Phosphine Oxide Building Block Useful for 1α,25-Dihydroxy Vitamin D3 and Analogues |
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