Publications

Found 185 results
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2025
Malvezzi M, Zhang H, Towers P, Lyden DC, Marx SO, Pitt GS.  2025.  FGF13 is not secreted from mouse neurons.. JCI Insight.
Das LTanmoy, Malvezzi M, Gade A, Matsui M, McKay M, Wei EQ, Zelich MJ, Mazdisnian K, Kushner J, Chen B-X et al..  2025.  FGF13 regulates cardiomyocyte impulse propagation via Cx43 trafficking independent of voltage-gated sodium channels.. bioRxiv.
Han Y, Leng D, Zhang T, Ge J, Fang Y, Lu T, Dong X, Nair MS, de Silva N, Han Z et al..  2025.  A Human Immuno-Lung Organoid Model to Study Macrophage-Mediated Lung Cell Senescence Upon SARS-CoV-2 Infection.. Adv Sci (Weinh). 12(36):e03932.
Lin S, Gade AR, Wang H-G, Niemeyer JE, Galante A, DiStefano I, Towers P, Nunez J, Matsui M, Schwartz TH et al..  2025.  Interneuron FGF13 regulates seizure susceptibility via a sodium channel-independent mechanism.. Elife. 13
Much C, Rajkumar SM, Chen L, Cohen JM, Gade AR, Pitt GS, Long Y.  2025.  Macromolecular interactions dictate Polycomb-mediated epigenetic repression.. bioRxiv.
Gade AR, Malvezzi M, Das LTanmoy, Matsui M, Ma C-IJ, Mazdisnian K, Marx SO, Maxfield FR, Pitt GS.  2025.  The NaV1.5 auxiliary subunit FGF13 modulates channels by regulating membrane cholesterol independent of channel binding.. J Clin Invest.
Lei CLok, Clark AP, Clerx M, Wei S, Bloothooft M, de Boer TP, Christini DJ, Krogh-Madsen T, Mirams GR.  2025.  Resolving Artifacts in Voltage-Clamp Experiments with Computational Modeling: An Application to Fast Sodium Current Recordings.. Adv Sci (Weinh). 12(30):e00691.
Gilani A, Stein BD, Hoffmann A, de Lima RPereira, Ha EE, Homan EA, Ma L, Rubio-Navarro A, Wun TTha Ra, Carrascal GJose Ayala et al..  2025.  Secretory kinase FAM20C triggers adipocyte dysfunction inciting insulin resistance and inflammation in obesity.. J Clin Invest.
Zhang F, Evans T.  2025.  Stage-specific DNA methylation dynamics in mammalian heart development.. Epigenomics. :1-13.
Rubinelli L, Manzo OLaura, Sungho J, Del Gaudio I, Bareja R, Marino A, Palikhe S, Di Mauro V, Bucci M, Falcone DJ et al..  2025.  Suppression of endothelial ceramide de novo biosynthesis by Nogo-B contributes to cardiometabolic diseases.. Nat Commun. 16(1):1968.