The Synthesis and Biological Evaluation of D-Ring-Modified Vitamin D Analogues
The vitamin D<sub>3</sub> structure consists of the A-ring, a linker originating from the B-ring, C-ring, D-ring, and side-chain moieties. Each unit has its unique role in expressing the biological activities of vitamin D<sub>3</sub>. Many efforts have been made to date to as...
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MDPI AG
2021
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oai:doaj.org-article:a15807f742d24082a14ed00150e7ff8a2021-11-25T16:53:15ZThe Synthesis and Biological Evaluation of D-Ring-Modified Vitamin D Analogues10.3390/biom111116392218-273Xhttps://doaj.org/article/a15807f742d24082a14ed00150e7ff8a2021-11-01T00:00:00Zhttps://www.mdpi.com/2218-273X/11/11/1639https://doaj.org/toc/2218-273XThe vitamin D<sub>3</sub> structure consists of the A-ring, a linker originating from the B-ring, C-ring, D-ring, and side-chain moieties. Each unit has its unique role in expressing the biological activities of vitamin D<sub>3</sub>. Many efforts have been made to date to assess the possible clinical use of vitamin D. Some organic chemists focused on the D-ring structure of vitamin D and synthesized D-ring-modified vitamin D analogues, and their biological activities were studied. This review summarizes the synthetic methodologies of D-ring-modified vitamin D analogues, except for <i>seco</i>-D, and their preliminary biological profiles.Fumihiro KawagoeSayuri MototaniAtsushi KittakaMDPI AGarticlevitamin D<sub>3</sub>synthesisD-ring modificationstructure-activity relationshipMicrobiologyQR1-502ENBiomolecules, Vol 11, Iss 1639, p 1639 (2021) |
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DOAJ |
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DOAJ |
| language |
EN |
| topic |
vitamin D<sub>3</sub> synthesis D-ring modification structure-activity relationship Microbiology QR1-502 |
| spellingShingle |
vitamin D<sub>3</sub> synthesis D-ring modification structure-activity relationship Microbiology QR1-502 Fumihiro Kawagoe Sayuri Mototani Atsushi Kittaka The Synthesis and Biological Evaluation of D-Ring-Modified Vitamin D Analogues |
| description |
The vitamin D<sub>3</sub> structure consists of the A-ring, a linker originating from the B-ring, C-ring, D-ring, and side-chain moieties. Each unit has its unique role in expressing the biological activities of vitamin D<sub>3</sub>. Many efforts have been made to date to assess the possible clinical use of vitamin D. Some organic chemists focused on the D-ring structure of vitamin D and synthesized D-ring-modified vitamin D analogues, and their biological activities were studied. This review summarizes the synthetic methodologies of D-ring-modified vitamin D analogues, except for <i>seco</i>-D, and their preliminary biological profiles. |
| format |
article |
| author |
Fumihiro Kawagoe Sayuri Mototani Atsushi Kittaka |
| author_facet |
Fumihiro Kawagoe Sayuri Mototani Atsushi Kittaka |
| author_sort |
Fumihiro Kawagoe |
| title |
The Synthesis and Biological Evaluation of D-Ring-Modified Vitamin D Analogues |
| title_short |
The Synthesis and Biological Evaluation of D-Ring-Modified Vitamin D Analogues |
| title_full |
The Synthesis and Biological Evaluation of D-Ring-Modified Vitamin D Analogues |
| title_fullStr |
The Synthesis and Biological Evaluation of D-Ring-Modified Vitamin D Analogues |
| title_full_unstemmed |
The Synthesis and Biological Evaluation of D-Ring-Modified Vitamin D Analogues |
| title_sort |
synthesis and biological evaluation of d-ring-modified vitamin d analogues |
| publisher |
MDPI AG |
| publishDate |
2021 |
| url |
https://doaj.org/article/a15807f742d24082a14ed00150e7ff8a |
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| _version_ |
1718412913621860352 |