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Diphenhydramine inhibits voltage-gated proton channels (Hv1) and induces acidification in leukemic Jurkat T cells- New insights into the pro-apoptotic effects of antihistaminic drugs

  • Agustín Asuaje
  • , Pedro Martín
  • , Nicolás Enrique
  • , Leandro Agustín Díaz Zegarra
  • , Paola Smaldini
  • , Guillermo Docena
  • , Verónica Milesi

Research output: Contribution to journalArticlepeer-review

10 Scopus citations

Abstract

An established characteristic of neoplastic cells is their metabolic reprogramming, known as the Warburg effect, with greater reliance on energetically less efficient pathways (such as glycolysis and pentose phosphate shunt) compared with oxidative phosphorylation. This results in an overproduction of acidic species that must be extruded to maintain intracellular homeostasis. We recently described that blocking the proton currents in leukemic cells mediated by Hv1 ion channels triggers a marked intracellular acidification and apoptosis induction. Moreover, histamine H1-receptor antagonists were found to induce apoptosis in tumoral cells but the mechanism is still unclear. By using Jurkat T cells, we now show how diphenhydramine inhibits Hv1 mediated currents, inducing a drop in intracellular pH and cellular viability. This provides evidence of a new target structure responsible of the known pro-apoptotic action of antihistaminic drugs.

Original languageEnglish
Pages (from-to)58-64
Number of pages7
JournalChannels
Volume12
Issue number1
DOIs
StatePublished - 1 Jan 2018
Externally publishedYes

Keywords

  • HVCN1
  • antihistaminic
  • apoptosis
  • cancer
  • diphenhydramine
  • intracellular pH
  • leukemia
  • proton channels

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