4.5 Article

Calcium release induced by 2-pyridinecarboxaldehyde thiosemicarbazone and its copper complex contributes to tumor cell death

Journal

ONCOLOGY REPORTS
Volume 37, Issue 3, Pages 1662-1670

Publisher

SPANDIDOS PUBL LTD
DOI: 10.3892/or.2017.5395

Keywords

2-pyridinecarboxaldehyde thiosemicarbazone; cell cycle arrest; ROS; endoplasmic reticulum stress; calcium mobilization

Categories

Funding

  1. Natural Science Foundation of China [21571153]
  2. Henan Science and Technology Agency [114300510012, 132102310250, 152300410118]
  3. Henan Educational Administration [15A416009]

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Thiosemicarbazones display significant antitumor activity and their copper complexes also exhibit enhanced biological activities in most situations, but the underlying mechanism is poorly understood. Therefore, investigation of the mechanism involved in the change upon chelation is required to extend our understanding of the effects of thiosemicarbazones. In the present study, the inhibitory effect of 2-pyridinecarboxaldehyde thiosemicarbazone (PCT) and its copper complex (PCT-Cu) on cell proliferation was investigated. The copper chelate exhibited a 3-to 10-fold increase in antitumor activity (with an IC50 <5 mu M). The results showed that both PCT and PCT-Cu induced reactive oxygen species (ROS) generation in vitro and in vivo, caused cellular DNA fragmentation, depolarization of the mitochondrial membrane and cell cycle arrest. Western blotting showed that both PCT and PCT-Cu induced apoptosis. Upregulation of GRP78 in HepG2 cells following treatment with the agents indicated that endoplasmic reticulum (ER) stress occurred. Furthermore calcium release was revealed in this study, suggesting that PCT and PCT-Cu disturbed calcium homeostasis. It was noted that PCT-Cu sensitized thapsigargin-stimulated calcium release from the ER, which was correlated with the ROS level they induced, implying that the antitumor activity of PCT and PCT-Cu partly stemmed from calcium mobilization, a situation that was reported in few studies. Our findings may significantly contribute to the understanding of the anti-proliferative effect of the derivatives of thiosemicarbazones along with their antitumor mechanism.

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