199393-58-3Relevant academic research and scientific papers
Synthesis and Antiproliferative Activity of Prenylated Chalcone Mannich Base Derivatives
Han, Pei-Pei,Liu, Ke-Xiong,Su, Liang,Wang, Qiu-An
, p. 425 - 431 (2021/05/29)
Prenylated chalcones xanthohumol (1) and 2′-hydroxy-3,4,4′-trimethoxy-6′-O-prenyl chalcone (2) were synthesized through the Claisen–Schmidt condensation, O-prenylation, and Claisen rearrangement and deprotection respectively, using phloroglucinol and appropriate benzaldehydes as starting materials. Based on the Mannich reaction of prenylated chalcone 1 or 2 with various secondary amines and formaldehyde in acid alcohol solvent, 10 novel prenylated chalcone Mannich base derivatives 3a–3e and 4a–4e were synthesized. Furthermore, all synthetic compounds were evaluated for antiproliferative activities in vitro against four human cancer cell lines (Aspc-1, SUN-5, HepG-2, and HCT-116) by MTT assay. The results showed that most of them exhibit moderate to good antiproliferative activities against the four human cancer cells with IC50 values of 2.52 to 47.67 μM.
Natural and non-natural prenylated chalcones: Synthesis, cytotoxicity and anti-oxidative activity
Vogel, Susanne,Ohmayer, Susanne,Brunner, Gabi,Heilmann, Joerg
, p. 4286 - 4293 (2008/12/20)
A general strategy for the synthesis of 3′-prenylated chalcones was established and a series of prenylated hydroxychalcones, including the hop (Humulus lupulus L.) secondary metabolites xanthohumol (1), desmethylxanthohumol (2), xanthogalenol (3), and 4-methylxanthohumol (4) were synthesized. The influence of the A-ring hydroxylation pattern on the cytotoxic activity of the prenylated chalcones was investigated in a HeLa cell line and revealed that non-natural prenylated chalcones, like 2′,3,4′,5-tetrahydroxy-6′-methoxy-3′-prenylchalcone (9, IC50 3.2 ± 0.4 μM) as well as the phase 1 metabolite of xanthohumol (1), 3-hydroxyxanthohumol (8, IC50 2.5 ± 0.5 μM), were more active in comparison to 1 (IC50 9.4 ± 1.4 μM). A comparison of the cytotoxic activity of xanthohumol (1) and 3-hydroxyxanthohumol (8) with the non-prenylated analogs helichrysetin (12, IC50 5.2 ± 0.8) and 3-hydroxyhelichrysetin (13, IC50 14.8 ± 2.1) showed that the prenyl side chain at C-3′ has an influence on the cytotoxicity against HeLa cells only for the dihydroxylated derivative. This offers interesting synthetic possibilities for the development of more potent compounds. The ORAC activity of the synthesized compounds was also investigated and revealed the highest activity for compounds 12, 4′-methylxanthohumol (4), and desmethylxanthohumol (2), with 4.4 ± 0.6, 3.8 ± 0.4, and 3.8 ± 0.5 Trolox equivalents, respectively.
A facile synthesis of 6-C-prenylflavanones
Bu,Zhao,Li
, p. 1246 - 1248 (2007/10/03)
The first total synthesis of two natural 6-C-prenylflavanones, (±)-6-C-prenyleriodoctyol (1) and 6-C-prenylnaringenin (2), using the acetophenone derivative 6 as the key intermediate is described. This new efficient synthetic approach was mainly based on
