4.6 Article

Comparative stability, cytotoxicity and anti-leishmanial activity of analogous organometallic Sb(V) and Bi(V) acetato complexes: Sb confirms potential while Bi fails the test

Journal

JOURNAL OF INORGANIC BIOCHEMISTRY
Volume 189, Issue -, Pages 151-162

Publisher

ELSEVIER SCIENCE INC
DOI: 10.1016/j.jinorgbio.2018.08.015

Keywords

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Funding

  1. Australian Research Council [DP170103624]
  2. Monash University

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A series of sixteen triphenyl Bi(V) and Sb(V) acetato complexes of general formula [MPh3(O2CCR)(2)] and one oxido-bridge antimony complex [(SbPh3(O2C-O-C(= O)Me))(2)O], have been synthesised and characterised, thirteen of which are novel. The solid-state structures of fifteen of the complexes have been successfully authenticated by single crystal X-ray diffraction. All structures, excluding the oxido-bridge antimony complex, adopt a typical trigonal bipyramidal confirmation with the phenyl rings in a propeller-like orientation in the equatorial plane. Fourteen of the complexes were screened for their anti-leishmanial activity and cytotoxicity towards mammalian cells. The Bi(V) complexes were found to be unstable in DMEM culture media and to be severely toxic towards mammalian cells, with IC50 values in the range 11.4 mu M-19.8 mu M. In contrast, the Sb(V) complexes demonstrated a high degree of stability and selectivity, with IC50 values 6.18-19.1 mu M for the promastigote assay, and of 73.8-<= 100 mu M for the human fibroblasts. Assessment of the Sb(V) complexes against the clinically relevant amastigote form of these parasites at 10 mu M showed all but the oxido-bridged complex to be effective, with % infection values ranging from 7.0 +/- 1.7-40.5 +/- 2.0.

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