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Receptor (Ryanodine)
LE WE PMID CA
Receptor (Ryanodine)2456Rezeptoren (Ryanodin)

Amphiphysin

Blood vessels (Vasoconstriction)

CADPR

Caffeine ttRyR

Calcium (Endoplasmic reticulum)

Calcium (Intracellular)

Calcium (Nucleus)

Calcium (sarcoplasmic reticulum)

Calcium (Spark)

Calsequestrin

Caspase12

Catecholaminergic polymorphic ventricular tachycardia

Dantrolene ttRyR1 ttRyR3

Dysferlin

Epilepsy (Excitotoxicity)

ERS UFR (Apoptosis)

ERS UFR (Diseases)

HC067047 ttTRPV4

Heart (Arrhythmia)

Heart (Tachycardia BASKET)

Histidine rich Ca2 plus binding protein

Inositol trisphosphate

Ischemia reperfusion

Junctin

Junctophilin

Mitsugumin

Muscle (Physiology)

Myotubularin

NADP

Polychlorinated biphenyls PCB

Receptor (Dihydropyridine)

Receptor (Inositol trisphosphate)

Receptor (Ryanodine)

Receptor (RyR2)

Ryanodine ttRyR

Sarcoplasmic reticulum

T tubulus

Triadin

TRPV4

Xestospongin C ttIP3R

2002  
1
The cardiac ryanodine receptor (calcium release channel): emerging role in heart failure and arrhythmia pathogenesis.
[12445877] Cardiovasc Res 56(3): 359-72 (2002)
1997  
2
The pharmacology of ryanodine and related compounds.
[9085309] Pharmacol Rev 49(1): 53-98 (1997)
1997  
3
The sarcoplasmic reticulum Ca2+ channel/ryanodine receptor: modulation by endogenous effectors, drugs and disease states.
[9085308] Pharmacol Rev 49(1): 1-51 (1997)
2008  
4
Ryanodine receptor as a new therapeutic target of heart failure and lethal arrhythmia.
[18362417] Circ J 72(4): 509-14 (2008)
2003  
5
Treatment of heart failure through stabilization of the cardiac ryanodine receptor.
[12551857] Circulation 107(3): 378-80 (2003)
2009  
6
From the ryanodine receptor to cardiac arrhythmias.
[19667488] Circ J 73(9): 1561-7 (2009)
2007  
7
Regulation of ryanodine receptors in the heart.
[17932330] Circ Res 101(8): 746-9 (2007)
2010  
8
Calmodulin: a gatekeeper for ryanodine receptor function in the myocardium.
[20587508] Cardiovasc Res 87(4): 587-8 (2010)
2005  
9
Catecholaminergic polymorphic ventricular tachycardia: recent mechanistic insights.
[15913575] Cardiovasc Res 67(3): 379-87 (2005)
2008  
10
Disruption of calcium homeostasis and arrhythmogenesis induced by mutations in the cardiac ryanodine receptor and calsequestrin.
[18006488] Cardiovasc Res 77(2): 293-301 (2008)
2008  
11
Does nitric oxide modulate cardiac ryanodine receptor function? Implications for excitation-contraction coupling.
[18006480] Cardiovasc Res 77(2): 256-64 (2008)
2008  
12
Modulation of ryanodine receptor by luminal calcium and accessory proteins in health and cardiac disease.
[18006456] Cardiovasc Res 77(2): 245-55 (2008)
2004  
13
New aspects of nuclear calcium signalling.
[15226390] J Cell Sci 117(Pt 15): 3087-94 (2004)
2009  
14
Minor sarcoplasmic reticulum membrane components that modulate excitation-contraction coupling in striated muscles.
[19403606] J Physiol 587(Pt 13): 3071-9 (2009)
2009  
15
Junctin and the histidine-rich Ca2+ binding protein: potential roles in heart failure and arrhythmogenesis.
[19403607] J Physiol 587(Pt 13): 3125-33 (2009)
2002  
16
Ryanodine receptor calcium release channels.
[12270947] Physiol Rev 82(4): 893-922 (2002)
2010  
17
Minding the calcium store: Ryanodine receptor activation as a convergent mechanism of PCB toxicity.
[19931307] Pharmacol Ther 125(2): 260-85 (2010)
2009  
18
Ryanodine receptor-mediated arrhythmias and sudden cardiac death.
[19345240] Pharmacol Ther 123(2): 151-77 (2009)
2012  
19
Ablation of junctin or triadin is associated with increased cardiac injury following ischaemia/reperfusion.
[22411973] Cardiovasc Res 94(2): 333-41 (2012)
2010  
20
Intracellular Ca2+ release through ryanodine receptors contributes to AMPA receptor-mediated mitochondrial dysfunction and ER stress in oligodendrocytes.
[21364659] Cell Death Dis 1(): e54 (2010)
2012  
21
Implication of the ryanodine receptor in TRPV4-induced calcium response in pulmonary arterial smooth muscle cells from normoxic and chronically hypoxic rats.
[22962011] Am J Physiol Lung Cell Mol Physiol (): (2012)
2005  
22
TRPV4 forms a novel Ca2+ signaling complex with ryanodine receptors and BKCa channels.
[16269659] Circ Res 97(12): 1270-9 (2005)
2011  
23
T-tubule biogenesis and triad formation in skeletal muscle and implication in human diseases.
[21797990] Skelet Muscle 1(1): 26 (2011)
2011  
24
PMC   
25
Isoproterenol increases the fraction of spark-dependent RyR-mediated leak in ventricular myocytes.
[23473480] Biophys J 104(5):976-85 (2013)
PMC   
26
Posttranslational modifications of cardiac ryanodine receptors: Ca(2+) signaling and EC-coupling.
[22960642] Biochim Biophys Acta 1833(4):866-75 (2013)
PMC   
27
Synchrony of cardiomyocyte Ca(2+) release is controlled by T-tubule organization, SR Ca(2+) content, and ryanodine receptor Ca(2+) sensitivity.
[23601316] Biophys J 104(8):1685-97 (2013)
PMC   
28
Modeling CaMKII-mediated regulation of L-type Ca(2+) channels and ryanodine receptors in the heart.
[24772082] Front Pharmacol 5():60 (2014)

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All Medline data shown were primarily retrieved from MEDLINE®/PubMed®, a database of the U.S. National Library of Medicine.


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