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Effect of Methoxychlor on Ca2+ Movement and Viability in MDCK Renal Tubular Cells

  • He Hsiung Cheng
  • , Yi Chau Lu
  • , Ti Lu
  • , Jin Shiung Cheng
  • , Guang Yuan Mar
  • , Yi Chien Fang
  • , Kuo Liang Chai
  • , Chung Ren Jan*
  • *Corresponding author for this work
  • Show-Chwan Memorial Hospital Taiwan
  • Veterans General Hospital-Kaohsiung Taiwan
  • Yongkang Veterans Hospital
  • Taichung Armed Forces General Hospital

Research output: Contribution to journalJournal Article peer-review

2 Scopus citations

Abstract

The effect of the insecticide methoxychlor on the physiology of renal tubular cells is unknown. This study aimed to explore the effect of methoxychlor on cytosolic Ca2+ concentrations ([Ca2+]i) in MDCK renal tubular cells using the Ca2+-sensitive fluorescent dye fura-2. Methoxychlor at 5-20 μM increased [Ca2+]i in a concentration-dependent manner. The signal was reduced by 80% by removing extracellular Ca2+. Methoxychlor-induced Ca2+ entry was not affected by nifedipine and SK&F96365 but was inhibited by econazole and protein kinase C modulators. In Ca2+-free medium, treatment with the endoplasmic reticulum Ca2+ pump inhibitor thapsigargin or 2,5-di-tert-butylhydroquinone (BHQ) partly inhibited methoxychlor-induced [Ca2+]i rise. Incubation with methoxychlor also inhibited thapsigargin- or BHQ-induced [Ca2+]i rise. Inhibition of phospholipase C with U73122 nearly abolished methoxychlor-induced [Ca2+]i rise. At 5-15 μM, methoxychlor slightly increased cell viability, whereas at 20 μM, it decreased viability. The cytotoxic effect of methoxychlor was not reversed by chelating cytosolic Ca2+ with 1,2-bis(2-aminophenoxy)ethane-N,N,N,N-tetraacetic acid/AM (BAPTA/AM). Annexin V-FITC data suggest that 10 μM methoxychlor inhibited apoptosis, while 20 μM methoxychlor enhanced apoptosis. Methoxychlor (10 and 20 μM) increased the production of reactive oxygen species. Together, in renal tubular cells, methoxychlor induced [Ca2+]i rise by inducing phospholipase C-dependent Ca2+ release from multiple stores and Ca2+ entry via protein kinase C- and econazole-sensitive channels. Methoxychlor slightly enhanced or inhibited cell viability in a concentration-dependent, Ca2+-independent manner. Methoxychlor induced cell death that may involve apoptosis via mitochondrial pathways.

Original languageEnglish
Pages (from-to)224-231
Number of pages8
JournalBasic and Clinical Pharmacology and Toxicology
Volume111
Issue number4
DOIs
StatePublished - 10 2012
Externally publishedYes

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