• Title of article

    Potassium channels: New targets in cancer therapy

  • Author/Authors

    Felipe، نويسنده , , Antonio de Vicente ، نويسنده , , Rubén and Villalonga، نويسنده , , Nْria and Roura-Ferrer، نويسنده , , Meritxell and Martيnez-Mلrmol، نويسنده , , Ramَn and Solé، نويسنده , , Laura and Ferreres، نويسنده , , Joan C. and Condom، نويسنده , , Enric، نويسنده ,

  • Issue Information
    روزنامه با شماره پیاپی سال 2006
  • Pages
    11
  • From page
    375
  • To page
    385
  • Abstract
    Background: Potassium channels (KCh) are the most diverse and ubiquitous class of ion channels. KCh control membrane potential and contribute to nerve and cardiac action potentials and neurotransmitter release. KCh are also involved in insulin release, differentiation, activation, proliferation, apoptosis, and several other physiological functions. The aim of this review is to provide an updated overview of the KCh role during the cell growth. Their potential use as pharmacological targets in cancer therapies is also discussed. Methods: We searched PubMed (up to 2005) and identified relevant articles. Reprints were mainly obtained by on line subscription. Additional sources were identified through cross-referencing and obtained from Library services. Results: KCh are responsible for some neurological and cardiovascular diseases and for a new medical discipline, channelopathies. Their role in congenital deafness, multiple sclerosis, episodic ataxia, LQT syndrome and diabetes has been proven. Furthermore, a large body of information suggests that KCh play a role in the cell cycle progression, and it is now accepted that cells require KCh to proliferate. Thus, KCh expression has been studied in a number of tumours and cancer cells. Conclusions: Cancer is far from being considered a channelopathy. However, it seems appropriate to take into account the involvement of KCh in cancer progression and pathology when developing new strategies for cancer therapy.
  • Keywords
    Potassium channels , Gene Therapy , Molecular-targeted therapies , cell cycle control , Channelopathies , Therapeutic Targets , tumor markers , Pharmacological targets , Cancer progression , Cancer detection , Transduction pathways , membrane proteins , Cell Proliferation , cancer
  • Journal title
    Cancer Detection and Prevention
  • Serial Year
    2006
  • Journal title
    Cancer Detection and Prevention
  • Record number

    1834810