Published December 3, 2018 | Version v.1
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Novel O-methyl goniofufurone and 7-epigoniofufurone derivatives: synthesis, in vitro cytotoxicity and SAR analysis

  • 1. Department of Chemistry, Biochemistry and Environmental Protection, Faculty ofSciences, University of Novi Sad, Trg Dositeja Obradovića 3, 21000 Novi Sad,Serbia.
  • 2. Oncology Institute of Vojvodina, Faculty of Medicine, University of Novi Sad, Put Dr Goldmana 4, 21204 Sremska Kamenica, Serbia
  • 3. Institute for Oncology and Radiology of Serbia, Pasterova 14, 11000 Belgrade, Serbia
  • 4. Oncology Institute of Vojvodina , Faculty of Medicine , University of Novi Sad , Put Dr Goldmana 4 , 21204 Sremska Kamenica , Serbia
  • 5. Department of Chemistry, Biochemistry and Environmental Protection, Faculty of Sciences, University of Novi Sad, Trg Dositeja Obradovića 3, 21000 Novi Sad,Serbia. ; Serbian Academy of Sciences and Arts , Knez Mihailova 35 , 11000 Belgrade , Serbia

Description

Novel goniofufurone (1) and 7-epi-goniofufurone (2) derivatives bearing a methoxy group at the C-5 and/or C-7 positions were prepared and their in vitro antitumour activity against some human tumour cell lines was evaluated. Some of the analogues displayed powerful antiproliferative effects against the studied tumour cells, but almost all of them were non-cytotoxic toward the normal cells (MRC-5). A SAR study reveals that the introduction of a methoxy group at the C-7 position may increase the antiproliferative effects of the analogues. The most active compounds are 7-O-methyl derivatives of goniofufurone (3) and 7-epi-(+)-goniofufurone (6), which exhibited 1177- and 451-fold higher potencies than the leads 1 and 2 toward the MDA-MB 231 cell line. At the same time, compound 3 is almost 1.5-fold more active than the commercial drug doxorubicin (DOX) against the same cell line. Flow cytometry data confirmed that the cytotoxic effects of these analogues are mediated by apoptosis, additionally revealing that these molecules induced changes in the K562 cell cycle distribution.

Notes

This work is also supported by a research project from the Serbian Academy of Sciences and Arts (Grant No. F-130).

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Is identical to
PMC6335996 (pmcid)
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rsc.li/medchemcomm (Handle)

Funding

Synthesis and biological testing of new mimics or derivatives of selected cytotoxic lactones, antitumor agent tiazofurin and natural naphthenic acids 172006
Ministry of Education, Science and Technological Development