Synthesis, isolation and characterisation of β-sitosterol and β-sitosterol oxide derivatives
Florence O. McCarthy, Jay Chopra, Alan Ford, Sean A. Hogan, Joe P. Kerry, Nora Mary O’Brien, Eileen Ryan, Anita R. Maguire
Abstract
Florence O. McCarthy, Jay Chopra, Alan Ford, Sean A. Hogan, Joe P. Kerry, Nora Mary O’Brien, Eileen Ryan, Anita R. Maguire
Abstract
Beta-sitosterol is the most prevalent plant cholesterol derivative (phytosterol) and can undergo similar oxidation to cholesterol, leading to beta-sitosterol oxides. The biological impact of phytosterol oxides has only been evaluated in a phytosterol blend (usually of beta-sitosterol, campesterol, stigmasterol and dihydrobrassicasterol). The lack of pure phytosterols, including beta-sitosterol, hinders the collection of significant toxicity data on the individual beta-sitosterol oxides. An efficient synthetic route to multi-gram quantities of pure beta-sitosterol is described here, together with the first syntheses and characterisation of pure beta-sitosterol oxides.
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Beta-sitosterol is the most prevalent plant cholesterol derivative (phytosterol) and can undergo similar oxidation to cholesterol, leading to beta-sitosterol oxides. The biological impact of phytosterol oxides has only been evaluated in a phytosterol blend (usually of beta-sitosterol, campesterol, stigmasterol and dihydrobrassicasterol). The lack of pure phytosterols, including beta-sitosterol, hinders the collection of significant toxicity data on the individual beta-sitosterol oxides. An efficient synthetic route to multi-gram quantities of pure beta-sitosterol is described here, together with the first syntheses and characterisation of pure beta-sitosterol oxides.
Key concepts: Phytosterol, Stigmasterol, Campesterol, Chemistry, Derivative (finance), Cholesterol, Oxide, Organic chemistry