JOSE RAMON
LOPEZ LOPEZ
CATEDRATICOS DE UNIVERSIDAD
MARIA DEL PILAR
CIDAD VELASCO
PROFESORES TITULARES DE UNIVERSIDAD
Publicaciones en las que colabora con MARIA DEL PILAR CIDAD VELASCO (24)
2023
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Characterization of endogenous Kv1.3 channel isoforms in T cells
Journal of Cellular Physiology, Vol. 238, Núm. 5, pp. 976-991
2021
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Voltage-dependent conformational changes of Kv1.3 channels activate cell proliferation
Journal of Cellular Physiology, Vol. 236, Núm. 6, pp. 4330-4347
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miR-126 contributes to the epigenetic signature of diabetic vascular smooth muscle and enhances antirestenosis effects of Kv1.3 blockers
Molecular Metabolism, Vol. 53
2020
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Elastin-like recombinamer-based devices releasing Kv1.3 blockers for the prevention of intimal hyperplasia: An in vitro and in vivo study
Acta Biomaterialia, Vol. 115, pp. 264-274
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Kv1.3 blockade inhibits proliferation of vascular smooth muscle cells in vitro and intimal hyperplasia in vivo
Translational Research, Vol. 224, pp. 40-54
2019
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Myocardin-Dependent Kv1.5 Channel Expression Prevents Phenotypic Modulation of Human Vessels in Organ Culture
Arteriosclerosis, Thrombosis, and Vascular Biology, Vol. 39, Núm. 12, pp. E273-E286
2018
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Kv channels and vascular smooth muscle cell proliferation
Microcirculation, Vol. 25, Núm. 1
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Phenotypic modulation of cultured primary human aortic vascular smooth muscle cells by uremic serum
Frontiers in Physiology, Vol. 9, Núm. FEB
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The secret life of ion channels: Kv1.3 potassium channels and proliferation
American Journal of Physiology - Cell Physiology, Vol. 314, Núm. 1, pp. C27-C40
2017
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Differences in TRPC3 and TRPC6 channels assembly in mesenteric vascular smooth muscle cells in essential hypertension
Journal of Physiology, Vol. 595, Núm. 5, pp. 1497-1513
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Proliferative role of Kv11 channels in murine arteries
Frontiers in Physiology, Vol. 8, Núm. JUL
2016
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Molecular determinants of Kv1.3 potassium channels-induced proliferation
Journal of Biological Chemistry, Vol. 291, Núm. 7, pp. 3569-3580
2015
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Erratum to: K+ Channels Expression in Hypertension After Arterial Injury, and Effect of Selective Kv1.3 Blockade with PAP-1 on Intimal Hyperplasia Formation [Cardiovascular Drugs and Therapy, 28, (2014), 501-511, DOI:10.1007/s10557-014-6554-5]
Cardiovascular Drugs and Therapy
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Kv1.3 channels modulate human vascular smooth muscle cells proliferation independently of mTOR signaling pathway
Pflugers Archiv European Journal of Physiology, Vol. 467, Núm. 8, pp. 1711-1722
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Tungstate-targeting of bkαβ 1 channels tunes erk phosphorylation and cell proliferation in human vascular smooth muscle e0118148
PLoS ONE, Vol. 10, Núm. 2
2014
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K+ Channels Expression in Hypertension After Arterial Injury, and Effect of Selective Kv1.3 Blockade with PAP-1 on Intimal Hyperplasia Formation
Cardiovascular Drugs and Therapy, Vol. 28, Núm. 6, pp. 501-511
2013
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Down-regulation of CaV1.2 channels during hypertension: How fewer CaV1.2 channels allow more Ca2+ into hypertensive arterial smooth muscle
Journal of Physiology, Vol. 591, Núm. 24, pp. 6175-6191
2012
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High blood pressure associates with the remodelling of inward rectifier K+ channels in mice mesenteric vascular smooth muscle cells
Journal of Physiology, Vol. 590, Núm. 23, pp. 6075-6091
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Kv1.3 channels can modulate cell proliferation during phenotypic switch by an ion-flux independent mechanism
Arteriosclerosis, Thrombosis, and Vascular Biology, Vol. 32, Núm. 5, pp. 1299-1307
2010
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Cell cycle-dependent expression of Kv3.4 channels modulates proliferation of human uterine artery smooth muscle cells
Cardiovascular Research, Vol. 86, Núm. 3, pp. 383-391