Synthesis of Gemini analogs of 19-norcalcitriol and their platinum(II) complexes
Language English Country United States Media print-electronic
Document type Journal Article, Research Support, Non-U.S. Gov't
PubMed
32361296
DOI
10.1016/j.bioorg.2020.103883
PII: S0045-2068(20)30798-7
Knihovny.cz E-resources
- Keywords
- 19-Norcalcitriol, Drug delivery systems, Gemini compounds, Platinum(II) complexes, Vitamin D receptor, Wittig-Horner reaction,
- MeSH
- Calcitriol analogs & derivatives chemical synthesis pharmacology MeSH
- Humans MeSH
- Cell Line, Tumor MeSH
- Neoplasms drug therapy metabolism MeSH
- Organoplatinum Compounds chemical synthesis chemistry pharmacology MeSH
- Cell Proliferation drug effects MeSH
- Antineoplastic Agents chemical synthesis chemistry pharmacology MeSH
- Drug Design MeSH
- Receptors, Calcitriol metabolism MeSH
- Molecular Docking Simulation MeSH
- Chemistry Techniques, Synthetic MeSH
- Vitamins chemical synthesis chemistry pharmacology MeSH
- Check Tag
- Humans MeSH
- Publication type
- Journal Article MeSH
- Research Support, Non-U.S. Gov't MeSH
- Names of Substances
- Calcitriol MeSH
- Organoplatinum Compounds MeSH
- Antineoplastic Agents MeSH
- Receptors, Calcitriol MeSH
- Vitamins MeSH
Hormonally active vitamin D3 metabolite, calcitriol, plays an important role in calcium-phosphate homeostasis, immune system actions and cell differentiation. Although anticancer activity of calcitriol is well documented and thousands of its analogs have been synthesized, none has been approved as a potential drug against cancer. Therefore, we attempted to introduce the cytotoxic effect to the calcitriol molecule by its linking to cisplatin. Herein, we present the synthesis of vitamin D compounds, designed on the basis of molecular modeling and docking experiments to the vitamin D receptor, and characterized by the presence of significantly different two side chains attached to C-20. In this study, a new synthetic approach to Gemini analogs was developed. Preparation of the target 19-norcalcitriol compounds involved separate syntheses of several building blocks (the A-ring, C/D-rings and side-chain fragments). The convergent synthetic strategy was used to combine these components by the different coupling processes, the crucial one being Wittig-Horner reaction of the Grundmann ketone analog with the known 2-methylene A-ring phosphine oxide. Due to the nature of the constructed steroidal side chains (bidentate ligands), which allowed coordination of metal ions, the first conjugate-type platinum(II) complexes of the vitamin D analogs were also successfully prepared and characterized. The target vitamin D compounds, displaying significant affinity for a vitamin D receptor, were assessed in vitro for their anti-proliferative activities towards several cell lines.
Department of Biotechnology University of Wroclaw Joliot Curie 14a 50 383 Wroclaw Poland
Department of Chemistry University of Warsaw Pasteura 1 02 093 Warsaw Poland
References provided by Crossref.org