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Annual Review of Physiology|October 27, 2020
Voltage-Gated Calcium Channels in Nonexcitable TissuesGeoffrey S Pitt, Maiko Matsui, Chike CaoJCI Insight|February 1, 2022
Increased Ca2+ influx through CaV1.2 drives aortic valve calcificationMaiko Matsui, Rihab Bouchareb, Mara Storto, et al.Cardiovascular Research|December 2, 2006
Calmodulin and CaMKII as molecular switches for cardiac ion channelsGeoffrey S PittFASEB Journal : Official Publication of the Federation of American Societies for Experimental Biology|June 1, 2023
Increased Ca<sup>2+</sup> signaling through Ca<sub>V</sub> 1.2 induces tendon hypertrophy with increased collagen fibrillogenesis and biomechanical propertiesHaiyin Li, Antonion Korcari, David Ciufo, et al.Bone|May 24, 2019
The Ca<sub>V</sub>1.2 L-type calcium channel regulates bone homeostasis in the middle and inner earChike Cao, Aaron B Oswald, Brian A Fabella, et al.Biorxiv : the Preprint Server for Biology|February 7, 2023
Increased Ca <sup>2+</sup> signaling through Ca <sub>V</sub> 1.2 induces tendon hypertrophy with increased collagen fibrillogenesis and biomechanical propertiesHaiyin Li, Antonion Korcari, David Ciufo, et al.Biorxiv : the Preprint Server for Biology|April 1, 2025
The Na <sub>V</sub> 1.5 auxiliary subunit FGF13 modulates channels by regulating membrane cholesterol independent of channel bindingAravind Gade, Mattia Malvezzi, Lala Tanmoy Das, et al.The Journal of Clinical Investigation|August 12, 2025
The NaV1.5 auxiliary subunit FGF13 modulates channels by regulating membrane cholesterol independent of channel bindingAravind R Gade, Mattia Malvezzi, Lala Tanmoy Das, et al.The Journal of General Physiology|November 1, 2006
Dose-dependent and isoform-specific modulation of Ca2+ channels by RGK GTPasesLillian Seu, Geoffrey S PittBiorxiv : the Preprint Server for Biology|May 4, 2026
Germline-mediated ubiquitous recombination in ScxCre male mice: implications for tendon researchHaiyin Li, Chike CaoPageof 12