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scopus(3)
Cytoskeletal interactions determine the electrophysiological properties of human EAG potassium channels
ArticleAbstract: The electrophysiological properties of ether à go-go (EAG) potassium channels are modified during thPalabras claves:cell cycle, CHO cells, Cytoskeleton, Ether à go-go, ion channels, Microtubules, Patch clampAutores:Javier Camacho, Pardo L.A., Sánchez A., Stühmer W.Fuentes:scopusCell cycle-related changes in the conducting properties of r-eag K<sup>+</sup> channels
ArticleAbstract: Release from arrest in G2 phase of the cell cycle causes profound changes in rat ether-a-go-go (r-eaPalabras claves:cell cycle, CHO cells, electrophysiology, Potassium channels, XENOPUS LAEVISAutores:Brüggemann A., Javier Camacho, Pardo L.A., Stühmer W.Fuentes:scopusEag1 potassium channels as markers of cervical dysplasia
ArticleAbstract: Human ether à-go-go 1 (Eag1) potassium channels are potential tumor markers and therapeutic targetsPalabras claves:Cervical Cancer, estrogens, Human ether à-go-go 1, Potassium channels, tumor markersAutores:Aguilar-Guadarrama R., Gamboa-Dominguez A., Garcia-Villa E., Gariglio P., Hernández-gallegos E., Hinojosa L.M., Javier Camacho, Martínez-Benítez B., Montante-Montes D., Ortiz C.S., Pardo L.A., Ramírez A., Saqui-Salces M., Solís-Pancoatl M., Stühmer W.Fuentes:scopus