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Merck

C4654

Cytidine

BioReagent, suitable for cell culture, powder, ≥99%

Sinónimos:

Cytosine β-D-riboside, Cytosine-1-β-D-ribofuranoside

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Fórmula empírica (notación de Hill):
C9H13N3O5
Número CAS:
Peso molecular:
243.22
UNSPSC Code:
12352207
NACRES:
NA.75
PubChem Substance ID:
EC Number:
200-610-9
Beilstein/REAXYS Number:
89173
MDL number:
Assay:
≥99%
Biological source:
synthetic
Form:
powder
Solubility:
H2O: 50 mg/mL
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biological source

synthetic

Quality Level

product line

BioReagent

assay

≥99%

form

powder

technique(s)

cell culture | mammalian: suitable

mp

210-220 °C (dec.) (lit.)

solubility

H2O: 50 mg/mL

SMILES string

NC1=NC(=O)N(C=C1)[C@@H]2O[C@H](CO)[C@@H](O)[C@H]2O

InChI

1S/C9H13N3O5/c10-5-1-2-12(9(16)11-5)8-7(15)6(14)4(3-13)17-8/h1-2,4,6-8,13-15H,3H2,(H2,10,11,16)/t4-,6-,7-,8-/m1/s1

InChI key

UHDGCWIWMRVCDJ-XVFCMESISA-N

Gene Information

mouse ... Uck1(22245)

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General description

Cytidine is a nucleoside molecule. It is formed when cytosine is attached to a ribose ring through a β-N1-glycosidic bond.

Application

Cytidine has been used as a component to prepare ribonucleoside stock solution to assess its effects on the anaerobic growth of several Bacillus mojavensis strains.
Cytidine has been used as a non-essential aminoacid component of minimal essential medium (MEM) to analyse interspecies somatic cell nucleus transfer (iSCNT)-derived blastocysts. It has also been used as a supplement in the culture medium of HeLa cells, to study the effects of cytidine addition on rods and rings (RR) induced by glutamine deprivation.

Clase de almacenamiento

11 - Combustible Solids

flash_point_f

Not applicable

flash_point_c

Not applicable

ppe

Eyeshields, Gloves, type N95 (US)


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eLife, 7 (2018-08-14)
Ribosome degradation through the autophagy-lysosome pathway is crucial for cell survival during nutrient starvation, but whether it occurs under normal growth conditions and contributes to animal physiology remains unaddressed. In this study, we identified RNST-2, a C. elegans T2 family
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Neurobiology of aging, 34(9), 2091-2099 (2013-04-16)
Epigenetic dysregulation of gene expression is thought to be critically involved in the pathophysiology of Alzheimer's disease (AD). Recent studies indicate that DNA methylation and DNA hydroxymethylation are 2 important epigenetic mechanisms that regulate gene expression in the aging brain.

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