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Recent advances on antimony(III/V) compounds with potential activity against tumor cells

期刊

JOURNAL OF INORGANIC BIOCHEMISTRY
卷 153, 期 -, 页码 293-305

出版社

ELSEVIER SCIENCE INC
DOI: 10.1016/j.jinorgbio.2015.06.006

关键词

Metallotherapeutics; Bioinorganic Chemistry; Antimony compounds; Antitumor activity; GUSAR

资金

  1. National Scholarships Foundation of Greece (IKY)
  2. COST Action [CM1105]

向作者/读者索取更多资源

Antimony one of the heavier pnictogens, has been in medical use against microbes and parasites as well. Antimony-based drugs have been prescribed against leishmaniasis since the parasitic transmission of the tropical disease was understood in the beginning of the 20th century. The activity of arsenic against visceral leishmaniasis led to the synthesis of an array of arsenic-containing parasitic agents, among them the less toxic pentavalent antimonials: Stibosan, Neostibosan, and Ureastibamine. Other antimony drugs followed: sodium stibogluconate (Pentostam) and melglumine antimoniate (Glucantim or Glucantime); both continue to be in use today despite their toxic side effects and increasing loss in potency due to the growing resistance of the parasite against antimony. Antimony compounds and their therapeutic potentials are under consideration from many research groups, while a number of early reviews recording advances of antimony biomedical applications are also available. However, there are only few reports on the screening for antitumor potential of antimony compounds. This review focuses upon results obtained on the anti-proliferative activity of antimony compounds in the past years. This survey shows that antimony(III/V) complexes containing various types of ligands such as thiones, thiosemicarbazones, dithiocarbamates, carboxylic acids, or ketones, nitrogen donor ligands, exhibit selectivity against a variety of cancer cells. The role of the ligand type of the complex is elucidated within this review. The complexes and their biological activity are already reported elsewhere. However quantitative structure-activity relationship (QSAR) modeling studies have been carried out and they are reported for the first time here. (C) 2015 Elsevier Inc. All rights reserved.

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