Author: Fraga, Ramón; Len, Kateryna; Lutzing, Regis; Laverny, Gilles; Loureiro, Julian; Maestro, Miguel A.; Rochel, Natacha; Rodriguezâ€Borges, Enrique; Mouriño, Antonio
Title: Design, Synthesis, Evaluation and Structure of Allenic 1α,25â€Dihydroxyvitamin D(3) Analogs with Locked Mobility at Câ€17 Cord-id: hcn107nj Document date: 2021_8_11
ID: hcn107nj
Snippet: Vitamin D receptor ligands have potential for the treatment of hyperproliferative diseases and disorders related to the immune system. However, hypercalcemic effects limit their therapeutical uses and call for the development of tissueâ€selective new analogs. We have designed and synthesized the first examples of 1α,25â€dihydroxyvitamin D(3) analogs bearing an allenic unit attached to the D ring to restrict the sideâ€chain conformational mobility. The triene system was constructed by a Pd(0)
Document: Vitamin D receptor ligands have potential for the treatment of hyperproliferative diseases and disorders related to the immune system. However, hypercalcemic effects limit their therapeutical uses and call for the development of tissueâ€selective new analogs. We have designed and synthesized the first examples of 1α,25â€dihydroxyvitamin D(3) analogs bearing an allenic unit attached to the D ring to restrict the sideâ€chain conformational mobility. The triene system was constructed by a Pd(0)â€mediated cyclization/Suzukiâ€Miyaura crossâ€coupling process in the presence of an allenic side chain. The allenic moiety was built through an orthoesterâ€Claisen rearrangement of a propargylic alcohol. The biological activity and structure of (22S)â€1α,25â€dihydroxyâ€17,20â€dienâ€24â€homoâ€21â€norâ€vitamin D(3) bound to binding domain of the vitamin D receptor, provide information concerning sideâ€chain conformational requirements for biological activity.
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