Seidinger A, Roberts R, Bai Y, Muller M, Pfeil E, Matthey M
EMBO Mol Med. 2024; 16(8):1930-1956.
PMID: 38977926
PMC: 11319782.
DOI: 10.1038/s44321-024-00096-0.
Dai Z, Chen Y, Hsieh S, Yeh J, Hsu J, Wu B
Pharmaceuticals (Basel). 2024; 17(4).
PMID: 38675401
PMC: 11053947.
DOI: 10.3390/ph17040440.
Zhang N, Qiu Q, Chen Y, Sun Z, Lu G, Wang L
Nan Fang Yi Ke Da Xue Xue Bao. 2023; 43(9):1606-1612.
PMID: 37814876
PMC: 10563098.
DOI: 10.12122/j.issn.1673-4254.2023.09.19.
Zolty R
J Exp Pharmacol. 2021; 13:817-857.
PMID: 34429666
PMC: 8380049.
DOI: 10.2147/JEP.S236743.
Mukherjee D, Konduri G
Compr Physiol. 2021; 11(3):2135-2190.
PMID: 34190343
PMC: 8289457.
DOI: 10.1002/cphy.c200023.
Chronic Obstructive Pulmonary Disease and the Cardiovascular System: Vascular Repair and Regeneration as a Therapeutic Target.
Karnati S, Seimetz M, Kleefeldt F, Sonawane A, Madhusudhan T, Bachhuka A
Front Cardiovasc Med. 2021; 8:649512.
PMID: 33912600
PMC: 8072123.
DOI: 10.3389/fcvm.2021.649512.
The Role and Regulation of Pulmonary Artery Smooth Muscle Cells in Pulmonary Hypertension.
He S, Zhu T, Fang Z
Int J Hypertens. 2020; 2020:1478291.
PMID: 32850144
PMC: 7441461.
DOI: 10.1155/2020/1478291.
Cellular Pathways Promoting Pulmonary Vascular Remodeling by Hypoxia.
Shimoda L
Physiology (Bethesda). 2020; 35(4):222-233.
PMID: 32490752
PMC: 7474258.
DOI: 10.1152/physiol.00039.2019.
Transcriptomic changes triggered by ouabain in rat cerebellum granule cells: Role of α3- and α1-Na+,K+-ATPase-mediated signaling.
Smolyaninova L, Shiyan A, Kapilevich L, Lopachev A, Fedorova T, Klementieva T
PLoS One. 2019; 14(9):e0222767.
PMID: 31557202
PMC: 6762055.
DOI: 10.1371/journal.pone.0222767.
Repurposing Medications for Treatment of Pulmonary Arterial Hypertension: What's Old Is New Again.
Prins K, Thenappan T, Weir E, Kalra R, Pritzker M, Archer S
J Am Heart Assoc. 2018; 8(1):e011343.
PMID: 30590974
PMC: 6405714.
DOI: 10.1161/JAHA.118.011343.
Overview of the Microenvironment of Vasculature in Vascular Tone Regulation.
Loh Y, Tan C, Chng Y, Yeap Z, Ng C, Yam M
Int J Mol Sci. 2018; 19(1).
PMID: 29301280
PMC: 5796069.
DOI: 10.3390/ijms19010120.
Role of Transient Receptor Potential Channels in Heart Transplantation: A Potential Novel Therapeutic Target for Cardiac Allograft Vasculopathy.
Ma S, Jiang Y, Huang W, Li X, Li S
Med Sci Monit. 2017; 23:2340-2347.
PMID: 28516902
PMC: 5444344.
DOI: 10.12659/msm.901920.
Na⁺,K⁺-Dependent and -Independent Signaling Triggered by Cardiotonic Steroids: Facts and Artifacts.
Orlov S, Klimanova E, Tverskoi A, Vladychenskaya E, Smolyaninova L, Lopina O
Molecules. 2017; 22(4).
PMID: 28420099
PMC: 6153942.
DOI: 10.3390/molecules22040635.
Emerging Metabolic Therapies in Pulmonary Arterial Hypertension.
Harvey L, Chan S
J Clin Med. 2017; 6(4).
PMID: 28375184
PMC: 5406775.
DOI: 10.3390/jcm6040043.
Importance of Altered Levels of SERCA, IPR, and RyR in Vascular Smooth Muscle Cell.
Pallippadan Johny J, Plank M, David T
Biophys J. 2017; 112(2):265-287.
PMID: 28122214
PMC: 5266201.
DOI: 10.1016/j.bpj.2016.11.3206.
Pulmonary vascular and ventricular dysfunction in the susceptible patient (2015 Grover Conference series).
Maron B, Machado R, Shimoda L
Pulm Circ. 2017; 6(4):426-438.
PMID: 28090285
PMC: 5210067.
DOI: 10.1086/688315.
The Action of Smooth Muscle Cell Potassium Channels in the Pathology of Pulmonary Arterial Hypertension.
Hayabuchi Y
Pediatr Cardiol. 2016; 38(1):1-14.
PMID: 27826710
DOI: 10.1007/s00246-016-1491-7.
Lung Circulation.
Suresh K, Shimoda L
Compr Physiol. 2016; 6(2):897-943.
PMID: 27065170
PMC: 7432532.
DOI: 10.1002/cphy.c140049.
TLR3-/4-Priming Differentially Promotes Ca(2+) Signaling and Cytokine Expression and Ca(2+)-Dependently Augments Cytokine Release in hMSCs.
Park K, Kim S, Das A, Yang S, Jung K, Kim M
Sci Rep. 2016; 6:23103.
PMID: 26980664
PMC: 4793222.
DOI: 10.1038/srep23103.
TRPM8: a potential target for cancer treatment.
Liu Z, Wu H, Wei Z, Wang X, Shen P, Wang S
J Cancer Res Clin Oncol. 2016; 142(9):1871-81.
PMID: 26803314
DOI: 10.1007/s00432-015-2112-1.