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Cell volume
LE WE PMID CA
Cell volume7272Zellvolumen

4F2 LAT

AQP4 Aquaporin4

AQP5

ASCT2

ASIC1

Cell volume

CFTR ABCC7

Chondrocyte

CLCN2 ClC2

CNS (Astrocyte)

Cystic fibrosis

Cytochrome P450 epoxygenase

Cytoskeleton

EAAT1

EAAT2

EAAT3

EAAT4

EAAT5

Epoxyeicosatrienoic acid EET

Glucocorticoids

GluR6

GLUT1

GSK3

Heart (Hypertrophy)

Ion channel (Anion)

Ion channel (BASKET)

Ion channel (Sodium ENaC)

Ion channel (VRAC volume regulated anion channel)

KCNQ1

KCNQ2

KCNQ3

KCNQ4

KCNQ5

Kir1 1 ROMK

Kv1 1

Kv1 2

Kv1 3

Kv1 4

Kv1 5

Maxi K

Mechanotransduction

Megalencephalic leukoencephalopathy with subcortical cysts

Membrane potential

Mineralocorticoids

MLC1

mTORC2

NaDC

NaPiIIb

NCC

Nedd4 2

Neuron (BASKET)

NHE3

NKCC1

NKCC2

Osmolytes

Osmosensor

OSR1

PepT2

pH (Intracellular)

Phospholipase A2

Phosphomannomutase 2 PMM2

Salivary gland (Physiology)

SCN5A

SGK1

SLC2A4 GLUT4

SLC5A1 SGLT1

SMIT

SN1

SPAK

Transporter (Sodium potassium and chloride)

TRPM3

TRPV4

TRPV5

TRPV6

VSOAC

WNK

2004  
1
2004  
2
In the beginning, there was the cell: cellular homeostasis.
[15545341] Adv Physiol Educ 28(1-4): 135-8 (2004)
2005  
3
SRC family kinases in cell volume regulation.
[15692147] Am J Physiol Cell Physiol 288(3): C483-93 (2005)
2009  
4
Sensors, transducers, and effectors that regulate cell size and shape.
[19004817] J Biol Chem 284(11): 6595-9 (2009)
2010  
5
Significance of SGK1 in the regulation of neuronal function.
[20530112] J Physiol 588(Pt 18): 3349-54 (2010)
2010  
6
Kinase regulation of Na+-K+-2Cl- cotransport in primary afferent neurons.
[20498230] J Physiol 588(Pt 18): 3365-73 (2010)
2010  
7
Receptor regulation of osmolyte homeostasis in neural cells.
[20498228] J Physiol 588(Pt 18): 3355-64 (2010)
2011  
8
New molecular mechanisms for cardiovascular disease: cardiac hypertrophy and cell-volume regulation.
[21757844] J Pharmacol Sci 116(4): 343-9 (2011)
2011  
9
The role of the membrane potential in chondrocyte volume regulation.
[21328349] J Cell Physiol 226(11): 2979-86 (2011)
2007  
10
TRP Ion Channel Function in Sensory Transduction and Cellular Signaling Cascades
[21204498] (): (2007)
2002  
11
Maxi K+ channel mediates regulatory volume decrease response in a human bronchial epithelial cell line.
[12388065] Am J Physiol Cell Physiol 283(6): C1705-14 (2002)
2006  
12
A role for AQP5 in activation of TRPV4 by hypotonicity: concerted involvement of AQP5 and TRPV4 in regulation of cell volume recovery.
[16571723] J Biol Chem 281(22): 15485-95 (2006)
2004  
13
Swelling-activated Ca2+ entry via TRPV4 channel is defective in cystic fibrosis airway epithelia.
[15489228] J Biol Chem 279(52): 54062-8 (2004)
2011  
14
Cell volume regulation in chondrocytes.
[22179000] Cell Physiol Biochem 28(6): 1111-22 (2011)
2009  
15
Functional interaction of the cation channel transient receptor potential vanilloid 4 (TRPV4) and actin in volume regulation.
[19027987] Eur J Cell Biol 88(3): 141-52 (2009)
2010  
16
Intracellular Ca2+ responses and cell volume regulation upon cholinergic and purinergic stimulation in an immortalized salivary cell line.
[20572856] Eur J Oral Sci 118(3): 237-44 (2010)
2012  
17
Megalencephalic leukoencephalopathy with subcortical cysts protein 1 functionally cooperates with the TRPV4 cation channel to activate the response of astrocytes to osmotic stress: dysregulation by pathological mutations.
[22328087] Hum Mol Genet 21(10): 2166-80 (2012)
2005  
18
TRPV4 exhibits a functional role in cell-volume regulation.
[15923656] J Cell Sci 118(Pt 11): 2435-40 (2005)
2011  
19
An aquaporin-4/transient receptor potential vanilloid 4 (AQP4/TRPV4) complex is essential for cell-volume control in astrocytes.
[21262839] Proc Natl Acad Sci U S A 108(6): 2563-8 (2011)
2004  
20
Cell swelling, heat, and chemical agonists use distinct pathways for the activation of the cation channel TRPV4.
[14691263] Proc Natl Acad Sci U S A 101(1): 396-401 (2004)
2007  
21
Mechanisms and significance of cell volume regulation.
[17921474] J Am Coll Nutr 26(5 Suppl): 613S-623S (2007)

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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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