TRPC6
305 literature references associated to TRPC6
1
Wang Q
et al.
Local coupling of TRPC6 to ANO1/TMEM16A channels in smooth muscle cells amplifies vasoconstriction in cerebral arteries.
Am. J. Physiol., Cell Physiol.,
2016
May
4
, (ajpcell.00092.2016).
2
Sawamura S
et al.
Screening of Transient Receptor Potential Canonical Channel Activators Identifies Novel Neurotrophic Piperazine Compounds.
Mol. Pharmacol.,
2016
Mar
, 89 (348-63).
3
Yao XM
et al.
Astragaloside IV prevents high glucose-induced podocyte apoptosis via downregulation of TRPC6.
Mol Med Rep,
2016
Jun
, 13 (5149-56).
4
Sexton JE
et al.
The contribution of TRPC1, TRPC3, TRPC5 and TRPC6 to touch and hearing.
Neurosci. Lett.,
2016
Jan
1
, 610 (36-42).
5
Urban N
et al.
Identification and Validation of Larixyl Acetate as a Potent TRPC6 Inhibitor.
Mol. Pharmacol.,
2016
Jan
, 89 (197-213).
6
Riehle M
et al.
TRPC6 G757D Loss-of-Function Mutation Associates with FSGS.
J. Am. Soc. Nephrol.,
2016
Feb
18
, ().
7
Meijer L
et al.
Modulating Innate and Adaptive Immunity by (R)-Roscovitine: Potential Therapeutic Opportunity in Cystic Fibrosis.
J Innate Immun,
2016
, 8 (330-49).
8
Wu X
et al.
Hair-Cell Mechanotransduction Persists in TRP Channel Knockout Mice.
PLoS ONE,
2016
, 11 (e0155577).
9
Liu Z
et al.
Developmental changes in the expression and function of TRPC6 channels related the F-actin organization during differentiation in podocytes.
Cell Calcium,
2015
Sep
3
, ().
10
Ambrus L
et al.
Inhibition of TRPC6 by protein kinase C isoforms in cultured human podocytes.
J. Cell. Mol. Med.,
2015
Sep
25
, ().
11
Weber EW
et al.
TRPC6 is the endothelial calcium channel that regulates leukocyte transendothelial migration during the inflammatory response.
J. Exp. Med.,
2015
Sep
21
, ().
12
Li S
et al.
Crucial role of TRPC6 in maintaining the stability of HIF-1α in glioma cells under hypoxia.
J. Cell. Sci.,
2015
Sep
1
, 128 (3317-29).
13
Ilatovskaya DV
et al.
TRPC6 channel as an emerging determinant of the podocyte injury susceptibility in kidney diseases.
Am. J. Physiol. Renal Physiol.,
2015
Sep
1
, 309 (F393-7).
14
Bullich G
et al.
Targeted next-generation sequencing in steroid-resistant nephrotic syndrome: mutations in multiple glomerular genes may influence disease severity.
Eur. J. Hum. Genet.,
2015
Sep
, 23 (1192-9).
15
Szabó T
et al.
Regulation of TRPC6 ion channels in podocytes - Implications for focal segmental glomerulosclerosis and acquired forms of proteinuric diseases.
Acta Physiol Hung,
2015
Sep
, 102 (241-51).
16
Smith KA
et al.
Notch Activation of Ca(2+) Signaling in the Development of Hypoxic Pulmonary Vasoconstriction and Pulmonary Hypertension.
Am. J. Respir. Cell Mol. Biol.,
2015
Sep
, 53 (355-67).
17
Sozucan Y
et al.
TRP genes family expression in colorectal cancer.
Exp. Oncol.,
2015
Sep
, 37 (208-12).
18
Lopez E
et al.
FKBP25 and FKBP38 regulate non-capacitative calcium entry through TRPC6.
Biochim. Biophys. Acta,
2015
Oct
, 1853 (2684-96).
19
Kim EY
et al.
Syndecan-4 ectodomain evokes mobilization of podocyte TRPC6 channels and their associated pathways: An essential role for integrin signaling.
Biochim. Biophys. Acta,
2015
Oct
, 1853 (2610-20).
20
Riazanski V
et al.
TRPC6 channel translocation into phagosomal membrane augments phagosomal function.
Proc. Natl. Acad. Sci. U.S.A.,
2015
Nov
24
, 112 (E6486-95).
21
Wu J
et al.
MicroRNA-30 family members regulate calcium/calcineurin signaling in podocytes.
J. Clin. Invest.,
2015
Nov
2
, 125 (4091-106).
22
Ramirez GA
et al.
TRPC6 gene variants and neuropsychiatric lupus.
J. Neuroimmunol.,
2015
Nov
15
, 288 (21-4).
23
Lopez E
et al.
Relationship between calcium mobilization and platelet α- and δ-granule secretion. A role for TRPC6 in thrombin-evoked δ-granule exocytosis.
Arch. Biochem. Biophys.,
2015
Nov
1
, 585 (75-81).
24
Joshi BB
et al.
In silico analysis of functional nsSNPs in human TRPC6 gene associated with steroid resistant nephrotic syndrome.
Gene,
2015
Nov
1
, 572 (8-16).
25
Liu Y
et al.
The change of spatial cognition ability in depression rat model and the possible association with down-regulated protein expression of TRPC6.
Behav. Brain Res.,
2015
Nov
1
, 294 (186-93).
26
Chauvet S
et al.
The Na+/K+-ATPase and the amyloid-beta peptide aβ1-40 control the cellular distribution, abundance and activity of TRPC6 channels.
Biochim. Biophys. Acta,
2015
Nov
, 1853 (2957-65).
27
Zhao B
et al.
The role of TRPC6 in oxidative stress-induced podocyte ischemic injury.
Biochem. Biophys. Res. Commun.,
2015
May
29
, 461 (413-20).
28
Lin XH
et al.
Upregulation of TRPC1/6 may be involved in arterial remodeling in rat.
J. Surg. Res.,
2015
May
1
, 195 (334-43).
29
Wang L
et al.
Gq signaling causes glomerular injury by activating TRPC6.
J. Clin. Invest.,
2015
May
, 125 (1913-26).
30
Lu XY
et al.
Acute ethanol induces apoptosis by stimulating TRPC6 via elevation of superoxide in oxygenated podocytes.
Biochim. Biophys. Acta,
2015
May
, 1853 (965-74).
31
Tabeling C
et al.
CFTR and sphingolipids mediate hypoxic pulmonary vasoconstriction.
Proc. Natl. Acad. Sci. U.S.A.,
2015
Mar
31
, 112 (E1614-23).
32
De Clercq K
et al.
Functional expression of transient receptor potential channels in human endometrial stromal cells during the luteal phase of the menstrual cycle.
Hum. Reprod.,
2015
Mar
27
, ().
33
Pandit MM
et al.
Flow regulation of endothelin-1 production in the inner medullary collecting duct.
Am. J. Physiol. Renal Physiol.,
2015
Mar
15
, 308 (F541-52).
34
Wu QY
et al.
Activation of calcium-sensing receptor increases TRPC3/6 expression in T lymphocyte in sepsis.
Mol. Immunol.,
2015
Mar
, 64 (18-25).
35
Wang Y
et al.
Peroxisome proliferator-activated receptor γ inhibits pulmonary hypertension targeting store-operated calcium entry.
J. Mol. Med.,
2015
Mar
, 93 (327-42).
36
Kurahara LH
et al.
Intestinal myofibroblast TRPC6 channel may contribute to stenotic fibrosis in Crohn's disease.
Inflamm. Bowel Dis.,
2015
Mar
, 21 (496-506).
37
Yang K
et al.
Noggin inhibits hypoxia-induced proliferation by targeting store-operated calcium entry and transient receptor potential cation channels.
Am. J. Physiol., Cell Physiol.,
2015
Jun
1
, 308 (C869-78).
38
Kalwa H
et al.
Phospholipase C epsilon (PLCε) induced TRPC6 activation: a common but redundant mechanism in primary podocytes.
J. Cell. Physiol.,
2015
Jun
, 230 (1389-99).
39
Nakamura T
et al.
Prevention of PKG1α oxidation augments cardioprotection in the stressed heart.
J. Clin. Invest.,
2015
Jun
, 125 (2468-72).
40
Shengyou Y
et al.
Influence of tacrolimus on podocyte injury inducted by angiotensin II.
J Renin Angiotensin Aldosterone Syst,
2015
Jun
, 16 (260-6).
41
Forst AL
et al.
Podocyte Purinergic P2X4 Channels Are Mechanotransducers That Mediate Cytoskeletal Disorganization.
J. Am. Soc. Nephrol.,
2015
Jul
9
, ().
42
Abkhezr M
et al.
Pleiotropic signaling evoked by tumor necrosis factor in podocytes.
Am. J. Physiol. Renal Physiol.,
2015
Jul
15
, 309 (F98-108).
43
Wang J
et al.
Hypoxia inducible factor-1-dependent up-regulation of BMP4 mediates hypoxia-induced increase of TRPC expression in PASMCs.
Cardiovasc. Res.,
2015
Jul
1
, 107 (108-18).
44
Maier T
et al.
Discovery and pharmacological characterization of a novel potent inhibitor of diacylglycerol-sensitive TRPC cation channels.
Br. J. Pharmacol.,
2015
Jul
, 172 (3650-60).
45
Vachel L
et al.
The low PLC-δ1 expression in cystic fibrosis bronchial epithelial cells induces upregulation of TRPV6 channel activity.
Cell Calcium,
2015
Jan
, 57 (38-48).
46
Zhang X
et al.
The novel role of TRPC6 in vitamin D ameliorating podocyte injury in STZ-induced diabetic rats.
Mol. Cell. Biochem.,
2015
Jan
, 399 (155-65).
47
Veit F
et al.
Hypoxia-dependent reactive oxygen species signaling in the pulmonary circulation: focus on ion channels.
Antioxid. Redox Signal.,
2015
Feb
20
, 22 (537-52).
48
Pfister S
et al.
Novel role of cystic fibrosis transmembrane conductance regulator in maintaining adult mouse olfactory neuronal homeostasis.
J. Comp. Neurol.,
2015
Feb
15
, 523 (406-30).
49
Alptekin M
et al.
Gene expressions of TRP channels in glioblastoma multiforme and relation with survival.
Tumour Biol.,
2015
Dec
, 36 (9209-13).
50
Iyer SC
et al.
Receptor channel TRPC6 orchestrate the activation of human hepatic stellate cell under hypoxia condition.
Exp. Cell Res.,
2015
Aug
1
, 336 (66-75).
51
Zou ZQ
et al.
Down-regulation of SENCR promotes smooth muscle cells proliferation and migration in db/db mice through up-regulation of FoxO1 and TRPC6.
Biomed. Pharmacother.,
2015
Aug
, 74 (35-41).
52
Zúñiga-García V
et al.
Differential Expression of Ion Channels and Transporters During Hepatocellular Carcinoma Development.
Dig. Dis. Sci.,
2015
Apr
5
, ().
53
Fernandez RA
et al.
Upregulated expression of STIM2, TRPC6, and Orai2 contributes to the transition of pulmonary arterial smooth muscle cells from a contractile to proliferative phenotype.
Am. J. Physiol., Cell Physiol.,
2015
Apr
15
, 308 (C581-93).
54
Selli C
et al.
Silencing of TRPC1 regulates store-operated calcium entry and proliferation in Huh7 hepatocellular carcinoma cells.
Biomed. Pharmacother.,
2015
Apr
, 71 (194-200).
55
Tabur S
et al.
Role of the transient receptor potential (TRP) channel gene expressions and TRP melastatin (TRPM) channel gene polymorphisms in obesity-related metabolic syndrome.
Eur Rev Med Pharmacol Sci,
2015
Apr
, 19 (1388-97).
56
Vemana HP
et al.
A critical role for the transient receptor potential channel type 6 in human platelet activation.
PLoS ONE,
2015
, 10 (e0125764).
57
Choi HJ
et al.
Astrocytes in the optic nerve head express putative mechanosensitive channels.
Mol. Vis.,
2015
, 21 (749-66).
58
Kong F
et al.
Alpha1-Adrenergic Receptor Activation Stimulates Calcium Entry and Proliferation via TRPC6 Channels in Cultured Human Mesangial Cells.
Cell. Physiol. Biochem.,
2015
, 36 (1928-38).
59
Chen YM
et al.
Focal segmental glomerulosclerosis: molecular genetics and targeted therapies.
BMC Nephrol,
2015
, 16 (101).
60
Peng G
et al.
Chronic Hypoxia Increases Intracellular Ca(2+) Concentration via Enhanced Ca(2+) Entry Through Receptor-Operated Ca(2+) Channels in Pulmonary Venous Smooth Muscle Cells.
Circ. J.,
2015
, 79 (2058-68).
61
Zhang Y
et al.
MicroRNA-26a prevents endothelial cell apoptosis by directly targeting TRPC6 in the setting of atherosclerosis.
Sci Rep,
2015
, 5 (9401).
62
Pousada G
et al.
Molecular and clinical analysis of TRPC6 and AGTR1 genes in patients with pulmonary arterial hypertension.
Orphanet J Rare Dis,
2015
, 10 (1).
63
Berna-Erro A
et al.
The canonical transient receptor potential 6 (TRPC6) channel is sensitive to extracellular pH in mouse platelets.
Blood Cells Mol. Dis.,
2014 Feb-Mar
, 52 (108-15).
64
Zeng C
et al.
Upregulation and Diverse Roles of TRPC3 and TRPC6 in Synaptic Reorganization of the Mossy Fiber Pathway in Temporal Lobe Epilepsy.
Mol. Neurobiol.,
2014
Sep
12
, ().
65
Hill-Eubanks DC
et al.
Vascular TRP channels: performing under pressure and going with the flow.
Physiology (Bethesda),
2014
Sep
, 29 (343-60).
66
Takada H
et al.
Mechanosensitive ATP release from hemichannels and Ca²⁺ influx through TRPC6 accelerate wound closure in keratinocytes.
J. Cell. Sci.,
2014
Oct
1
, 127 (4159-71).
67
Albarrán L
et al.
STIM1 regulates TRPC6 heteromultimerization and subcellular location.
Biochem. J.,
2014
Nov
1
, 463 (373-81).
68
Richter JM
et al.
Clemizole hydrochloride is a novel and potent inhibitor of transient receptor potential channel TRPC5.
Mol. Pharmacol.,
2014
Nov
, 86 (514-21).
69
Schleifenbaum J
et al.
Stretch-Activation of Angiotensin II Type 1a Receptors Contributes to the Myogenic Response of Mouse Mesenteric and Renal Arteries.
Circ. Res.,
2014
May
16
, ().
70
Rosenbaum MA
et al.
Hypercholesterolemia inhibits re-endothelialization of arterial injuries by TRPC channel activation.
J. Vasc. Surg.,
2014
May
10
, ().
71
Roshanravan H
et al.
ATP acting through P2Y receptors causes activation of podocyte TRPC6 channels: role of podocin and reactive oxygen species.
Am. J. Physiol. Renal Physiol.,
2014
May
1
, 306 (F1088-97).
72
Wilson C
et al.
A mutation in TRPC6 channels abolishes their activation by hypoosmotic stretch but does not affect activation by diacylglycerol or G protein signaling cascades.
Am. J. Physiol. Renal Physiol.,
2014
May
1
, 306 (F1018-25).
73
Song X
et al.
Lovastatin inhibits human B lymphoma cell proliferation by reducing intracellular ROS and TRPC6 expression.
Biochim. Biophys. Acta,
2014
May
, 1843 (894-901).
74
Lee KP
et al.
Molecular determinants mediating gating of Transient Receptor Potential Canonical (TRPC) channels by stromal interaction molecule 1 (STIM1).
J. Biol. Chem.,
2014
Mar
7
, 289 (6372-82).
75
Ilatovskaya DV
et al.
Angiotensin II has acute effects on TRPC6 channels in podocytes of freshly isolated glomeruli.
Kidney Int.,
2014
Mar
19
, ().
76
Tran VT
et al.
Mechanotransduction channels of the trabecular meshwork.
Curr. Eye Res.,
2014
Mar
, 39 (291-303).
77
Lei L
et al.
The role of mechanical tension on lipid raft dependent PDGF-induced TRPC6 activation.
Biomaterials,
2014
Mar
, 35 (2868-77).
78
Hall G
et al.
Phosphodiesterase 5 inhibition ameliorates angiontensin II-induced podocyte dysmotility via the protein kinase G-mediated downregulation of TRPC6 activity.
Am. J. Physiol. Renal Physiol.,
2014
Jun
15
, 306 (F1442-50).
79
Sonneveld R
et al.
Glucose specifically regulates TRPC6 expression in the podocyte in an AngII-dependent manner.
Am. J. Pathol.,
2014
Jun
, 184 (1715-26).
80
McPate M
et al.
The Development of Automated Patch Clamp Assays for Canonical Transient Receptor Potential Channels TRPC3, 6, and 7.
Assay Drug Dev Technol,
2014
Jun
, 12 (282-92).
81
Thilo F
et al.
High glucose modifies transient receptor potential canonical type 6 channels via increased oxidative stress and syndecan-4 in human podocytes.
Biochem. Biophys. Res. Commun.,
2014
Jul
18
, 450 (312-7).
82
Sung HH
et al.
Increased expression of TRPC4 channels associated with erectile dysfunction in diabetes.
Andrology,
2014
Jul
, 2 (550-8).
83
Ding Y
et al.
The biological actions of 11,12-epoxyeicosatrienoic acid in endothelial cells are specific to the R/S-enantiomer and require the G(s) protein.
J. Pharmacol. Exp. Ther.,
2014
Jul
, 350 (14-21).
84
Sun L
et al.
Astragaloside IV prevents damage to human mesangial cells through the inhibition of the NADPH oxidase/ROS/Akt/NF‑κB pathway under high glucose conditions.
Int. J. Mol. Med.,
2014
Jul
, 34 (167-76).
85
Chevallet M
et al.
Functional consequences of the over-expression of TRPC6 channels in HEK cells: impact on the homeostasis of zinc.
Metallomics,
2014
Jul
, 6 (1269-76).
86
Seo K
et al.
Combined TRPC3 and TRPC6 blockade by selective small-molecule or genetic deletion inhibits pathological cardiac hypertrophy.
Proc. Natl. Acad. Sci. U.S.A.,
2014
Jan
28
, 111 (1551-6).
87
Su B
et al.
Brain-derived neurotrophic factor (BDNF)-induced mitochondrial motility arrest and presynaptic docking contribute to BDNF-enhanced synaptic transmission.
J. Biol. Chem.,
2014
Jan
17
, 289 (1213-26).
88
Zhang LW
et al.
[Recent advances in the research on mechanisms underlying podocyte-specific gene mutation-related steroid-resistant nephrotic syndrome].
Zhongguo Dang Dai Er Ke Za Zhi,
2014
Jan
, 16 (99- following 102).
89
Jiang Y
et al.
Expression and localization of TRPC proteins in rat ventricular myocytes at various developmental stages.
Cell Tissue Res.,
2014
Jan
, 355 (201-12).
90
Yao C
et al.
Neuroprotection by (-)-epigallocatechin-3-gallate in a rat model of stroke is mediated through inhibition of endoplasmic reticulum stress.
Mol Med Rep,
2014
Jan
, 9 (69-76).
91
Wang D
et al.
Effects of TRPC6 on invasibility of low-differentiated prostate cancer cells.
Asian Pac J Trop Med,
2014
Jan
, 7 (44-7).
92
Xia Y
et al.
Classical transient receptor potential 1 and 6 contribute to hypoxic pulmonary hypertension through differential regulation of pulmonary vascular functions.
Hypertension,
2014
Jan
, 63 (173-80).
93
Seo K
et al.
Hyperactive adverse mechanical stress responses in dystrophic heart are coupled to transient receptor potential canonical 6 and blocked by cGMP-protein kinase G modulation.
Circ. Res.,
2014
Feb
28
, 114 (823-32).
94
Wang J
et al.
Effects of chronic exposure to cigarette smoke on canonical transient receptor potential expression in rat pulmonary arterial smooth muscle.
Am. J. Physiol., Cell Physiol.,
2014
Feb
15
, 306 (C364-73).
95
Itsuki K
et al.
PLC-mediated PI(4,5)P2 hydrolysis regulates activation and inactivation of TRPC6/7 channels.
J. Gen. Physiol.,
2014
Feb
, 143 (183-201).
96
Saliba Y
et al.
Evidence of a Role for Fibroblast Transient Receptor Potential Canonical 3 Ca2+ Channel in Renal Fibrosis.
J. Am. Soc. Nephrol.,
2014
Dec
5
, ().
97
Ichikawa J
et al.
TRPC6 regulates cell cycle progression by modulating membrane potential in bone marrow stromal cells.
Br. J. Pharmacol.,
2014
Dec
, 171 (5280-94).
98
Kwon M
et al.
Single-cell RT-PCR and immunocytochemical detection of mechanosensitive transient receptor potential channels in acutely isolated rat odontoblasts.
Arch. Oral Biol.,
2014
Dec
, 59 (1266-71).
99
Zhang J
et al.
IL-17A contributes to brain ischemia reperfusion injury through calpain-TRPC6 pathway in mice.
Neuroscience,
2014
Aug
22
, 274 (419-28).
100
Song S
et al.
Flow shear stress enhances intracellular Ca2+ signaling in pulmonary artery smooth muscle cells from patients with pulmonary arterial hypertension.
Am. J. Physiol., Cell Physiol.,
2014
Aug
15
, 307 (C373-83).
101
Abkhezr M
et al.
Angiotensin II and canonical transient receptor potential-6 activation stimulate release of a signal transducer and activator of transcription 3-activating factor from mouse podocytes.
Mol. Pharmacol.,
2014
Aug
, 86 (150-8).
102
Schurek EM
et al.
A disease-causing mutation illuminates the protein membrane topology of the kidney-expressed prohibitin homology (PHB) domain protein podocin.
J. Biol. Chem.,
2014
Apr
18
, 289 (11262-71).
103
Chen W
et al.
Orai1-induced store-operated Ca(2+) entry enhances phospholipase activity and modulates canonical transient receptor potential channel 6 function in murine platelets.
J. Thromb. Haemost.,
2014
Apr
, 12 (528-39).
104
Albarrán L
et al.
TRPC6 participates in the regulation of cytosolic basal calcium concentration in murine resting platelets.
Biochim. Biophys. Acta,
2014
Apr
, 1843 (789-96).
105
Anderson M
et al.
Angiotensin II activation of TRPC6 channels in rat podocytes requires generation of reactive oxygen species.
J. Cell. Physiol.,
2014
Apr
, 229 (434-42).
106
Zhang X
et al.
Transient receptor potential canonical 7: a diacylglycerol-activated non-selective cation channel.
Handb Exp Pharmacol,
2014
, 222 (189-204).
107
Montecinos-Oliva C
et al.
Effects of tetrahydrohyperforin in mouse hippocampal slices: neuroprotection, long-term potentiation and TRPC channels.
Curr. Med. Chem.,
2014
, 21 (3494-506).
108
Ong HL
et al.
Physiological functions and regulation of TRPC channels.
Handb Exp Pharmacol,
2014
, 223 (1005-34).
109
Dietrich A
et al.
TRPC6: physiological function and pathophysiological relevance.
Handb Exp Pharmacol,
2014
, 222 (157-88).
111
Chigurupati S
et al.
Functional and structural analysis of mice TRPC6 with human analogue through homology modelling.
Int J Bioinform Res Appl,
2014
, 10 (206-16).
112
Gonzales AL
et al.
A PLCγ1-dependent, force-sensitive signaling network in the myogenic constriction of cerebral arteries.
Sci Signal,
2014
, 7 (ra49).
113
Meng K
et al.
Calcium sensing receptor modulates extracellular calcium entry and proliferation via TRPC3/6 channels in cultured human mesangial cells.
PLoS ONE,
2014
, 9 (e98777).
115
Shimizu S
et al.
TRPs as chemosensors (ROS, RNS, RCS, gasotransmitters).
Handb Exp Pharmacol,
2014
, 223 (767-94).
116
Ding F
et al.
Mammalian target of rapamycin complex 2 signaling pathway regulates transient receptor potential cation channel 6 in podocytes.
PLoS ONE,
2014
, 9 (e112972).
117
Sell TS
et al.
Protonophore properties of hyperforin are essential for its pharmacological activity.
Sci Rep,
2014
, 4 (7500).
118
Hofstra JM
et al.
TRPC6 single nucleotide polymorphisms and progression of idiopathic membranous nephropathy.
PLoS ONE,
2014
, 9 (e102065).
119
Xu L
et al.
Chronic hypoxia increases TRPC6 expression and basal intracellular Ca2+ concentration in rat distal pulmonary venous smooth muscle.
PLoS ONE,
2014
, 9 (e112007).
121
Thodeti CK
et al.
A TRP to cardiac fibroblast differentiation.
Channels (Austin),
2013 May-Jun
, 7 (211-4).
122
Washburn DG
et al.
The discovery of potent blockers of the canonical transient receptor channels, TRPC3 and TRPC6, based on an anilino-thiazole pharmacophore.
Bioorg. Med. Chem. Lett.,
2013
Sep
1
, 23 (4979-84).
123
Han H
et al.
Novel role of NOD2 in mediating Ca2+ signaling: evidence from NOD2-regulated podocyte TRPC6 channels in hyperhomocysteinemia.
Hypertension,
2013
Sep
, 62 (506-11).
124
Chen W
et al.
Atrial natriuretic peptide-mediated inhibition of microcirculatory endothelial Ca2+ and permeability response to histamine involves cGMP-dependent protein kinase I and TRPC6 channels.
Arterioscler. Thromb. Vasc. Biol.,
2013
Sep
, 33 (2121-9).
125
Liu X
et al.
Recombinant human erythropoietin pretreatment alleviates renal glomerular injury induced by cardiopulmonary bypass by reducing transient receptor potential channel 6-nuclear factor of activated T-cells pathway activation.
J. Thorac. Cardiovasc. Surg.,
2013
Sep
, 146 (681-7).
126
Ikeda K
et al.
Roles of transient receptor potential canonical (TRPC) channels and reverse-mode Na+/Ca2+ exchanger on cell proliferation in human cardiac fibroblasts: effects of transforming growth factor β1.
Cell Calcium,
2013
Sep
, 54 (213-25).
127
Hayes HL
et al.
Pdx-1 activates islet α- and β-cell proliferation via a mechanism regulated by transient receptor potential cation channels 3 and 6 and extracellular signal-regulated kinases 1 and 2.
Mol. Cell. Biol.,
2013
Oct
, 33 (4017-29).
128
Kim EY
et al.
NOX2 interacts with podocyte TRPC6 channels and contributes to their activation by diacylglycerol: essential role of podocin in formation of this complex.
Am. J. Physiol., Cell Physiol.,
2013
Nov
1
, 305 (C960-71).
129
Loga F
et al.
The role of cGMP/cGKI signalling and Trpc channels in regulation of vascular tone.
Cardiovasc. Res.,
2013
Nov
1
, 100 (280-7).
130
Kuang XY
et al.
254C>G: a TRPC6 promoter variation associated with enhanced transcription and steroid-resistant nephrotic syndrome in Chinese children.
Pediatr. Res.,
2013
Nov
, 74 (511-6).
131
Toth P
et al.
Age-related autoregulatory dysfunction and cerebromicrovascular injury in mice with angiotensin II-induced hypertension.
J. Cereb. Blood Flow Metab.,
2013
Nov
, 33 (1732-42).
132
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