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Luis F. Santana

Arc of the United States ·
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Area of research
Molecular Biology · Cardiology and Cardiovascular Medicine
Research interest
Research interests include Ion channel regulation and function, Cardiac electrophysiology and arrhythmias, Neuroscience and Neuropharmacology Research, and Neuroscience and Neural Engineering.
h-index
58
citations
12,232
works
226
NIH funding
primary concept
email

Recent publications

A toolbox of nanobodies developed and validated for use as intrabodies and nanoscale immunolabels in mammalian brain neurons
eLife 2019cited by 64position: middledoi
A New Mutation in FIG4 Causes a Severe Form of CMT4J Involving TRPV4 in the Pathogenic Cascade
Journal of Neuropathology & Experimental Neurology 2017cited by 12position: middledoi
Loss of AKAP150 promotes pathological remodelling and heart failure propensity by disrupting calcium cycling and contractile reserve
Cardiovascular Research 2016cited by 50position: middledoi
A mitotic kinase scaffold depleted in testicular seminomas impacts spindle orientation in germ line stem cells
eLife 2015cited by 51position: middledoi
AKAP150 participates in calcineurin/NFAT activation during the down-regulation of voltage-gated K+ currents in ventricular myocytes following myocardial infarction
Cellular Signalling 2015cited by 29position: middledoi
AKAP150-dependent cooperative TRPV4 channel gating is central to endothelium-dependent vasodilation and is disrupted in hypertension
Science Signaling 2014cited by 180position: middledoi
Microtubule-Mediated Defects in Junctophilin-2 Trafficking Contribute to Myocyte Transverse-Tubule Remodeling and Ca <sup>2+</sup> Handling Dysfunction in Heart Failure
Circulation 2014cited by 143position: middledoi
Local control of TRPV4 channels by AKAP150-targeted PKC in arterial smooth muscle
The Journal of General Physiology 2014cited by 109position: lastdoi
Local control of TRPV4 channels by AKAP150-targeted PKC in arterial smooth muscle
The Journal of Cell Biology 2014cited by 2position: lastdoi
AKAP150 Contributes to Enhanced Vascular Tone by Facilitating Large-Conductance Ca <sup>2+</sup> -Activated K <sup>+</sup> Channel Remodeling in Hyperglycemia and Diabetes Mellitus
Circulation Research 2013cited by 105position: middledoi
Anchored phosphatases modulate glucose homeostasis
The EMBO Journal 2012cited by 76position: middledoi

Grants

NSF Minority Postdoctoral Research Fellowship for FY 1998
NSF9807400$80,0001998–2000PIRePORTER

Frequent collaborators

John D. Scott · Prisma Health8 papers (2012–2016)Manuel F. Navedo · University of California System5 papers (2012–2015)Can Yuan · South China Normal University3 papers (2014–2014)Mark T. Nelson · University of Manchester3 papers (2014–2014)Lorene K. Langeberg · University of Washington3 papers (2012–2015)Simon A. Hinke · Johnson & Johnson (United States)3 papers (2012–2015)Patrick J. Nygren · University of Washington3 papers (2012–2015)Jose Mercado · Kineta (United States)2 papers (2014–2014)Rachael Baylie · University of Vermont2 papers (2014–2014)Joseph E. Brayden · University of Vermont2 papers (2014–2014)Madeline Nieves‐Cintrón · University of California System2 papers (2013–2015)Mark L. Dell’Acqua · University of Colorado Anschutz Medical Campus2 papers (2013–2015)Paula Bucko · University of Washington1 papers (2015–2015)Linda Wordeman · Seattle University1 papers (2015–2015)Claudia M. Moreno · Howard Hughes Medical Institute1 papers (2019–2019)Jing Li · Shanghai Jiao Tong University1 papers (2016–2016)Lei Li · National University of Singapore1 papers (2016–2016)Yi Chen · Guangzhou University of Chinese Medicine1 papers (2016–2016)Geng Tian · University of Georgia1 papers (2012–2012)Thomas Dalsgaard · University of Vermont1 papers (2014–2014)
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