4.6 Article

Lethal synergism between organic and inorganic wood preservatives via formation of an unusual lipophilic ternary complex

Journal

TOXICOLOGY AND APPLIED PHARMACOLOGY
Volume 266, Issue 3, Pages 335-344

Publisher

ACADEMIC PRESS INC ELSEVIER SCIENCE
DOI: 10.1016/j.taap.2012.11.013

Keywords

Pentachlorophenol; Copper-1,10-phenanthroline complex; Synergistic cytotoxicity; Lipophilic ternary complex; Copper uptake; Apoptosis; Mitochondrial functions; Reactive oxygen species

Funding

  1. Project 973 [2008CB418106]
  2. Hundred-Talent Project, CAS
  3. NSF China Outstanding Youth Award [20925724]
  4. NSFC grants [20907070, 20877081, 20890112, 20921063, 21207139, 21237005]
  5. NIH [ES11497, RR01008, ES00210]

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We have shown previously that exposing bacteria to wood preservatives pentachlorophenol (PCP) and copper-containing compounds together causes synergistic toxicity. However, it is not clear whether these findings also hold true in mammalian cells; and if so, what is the underlying molecular mechanism? Here we show that PCP and a model copper complex bis-(1,10-phenanthroline) cupric (Cu(OP)(2)), could also induce synergistic cytotoxicity in human liver cells. By the single crystal X-ray diffraction and atomic absorption spectroscopy assay, the synergism was found to be mainly due to the formation of a lipophilic ternary complex with unusual structural and composition characteristics and subsequent enhanced cellular copper uptake, which markedly promoted cellular reactive oxygen species (ROS) production, leading to apoptosis by decreasing mitochondrial membrane potential, increasing pro-apoptotic protein expression, releasing cytochrome c from mitochondria and activating caspase-3, and -9. Analogous results were observed with other polychlorinated phenols (PCPs) and Cu(OP)(2). Synergistic cytotoxicity could be induced by PCP/Cu(OP)(2) via formation of an unusual lipophilic complex in HepG2 cells. The formation of ternary complexes with similar lipophilic character could be of relevance as a general mechanism of toxicity, which should be taken into consideration especially when evaluating the toxicity of environmental pollutants found at currently-considered non- or sub-toxic concentrations. (C) 2012 Elsevier Inc. All rights reserved.

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