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About This Item
Empirical Formula (Hill Notation):
C5D3H6NO2
CAS Number:
Molecular Weight:
118.15
UNSPSC Code:
12352209
PubChem Substance ID:
MDL number:
Isotopic purity:
98 atom % D
Assay:
97%
Mass shift:
M+3
Form:
solid
Note: This product can be packaged on demand. For information on pricing, availability and packaging of custom sizes, please contact Stable Isotopes Customer Service
isotopic purity
98 atom % D
assay
97%
form
solid
technique(s)
bio NMR: suitable
mass shift
M+3
SMILES string
[2H]C1([2H])CC[C@]([2H])(C(O)=O)N1
InChI
1S/C5H9NO2/c7-5(8)4-2-1-3-6-4/h4,6H,1-3H2,(H,7,8)/t4-/m1/s1/i3D2,4D
InChI key
ONIBWKKTOPOVIA-LTDLRDEHSA-N
Packaging
This product may be available from bulk stock and can be packaged on demand. For information on pricing, availability and packaging, please contact Stable Isotopes Customer Service.
1 of 1
This Item | |||
|---|---|---|---|
| technique(s) bio NMR: suitable | technique(s) bio NMR: suitable | technique(s) bio NMR: suitable | technique(s) bio NMR: suitable |
| isotopic purity 98 atom % D | isotopic purity 99 atom % 13C, 98 atom % 15N, 98 atom % D | isotopic purity 99 atom % 13C, 98 atom % 15N, 98 atom % D | isotopic purity 98 atom % D |
| assay 97% | assay 95% (CP) | assay 95% (CP) | assay 97% (CP) |
| mass shift M+3 | mass shift M+13 | mass shift M+7 | mass shift M+4 |
| form solid | form solid | form solid | form solid |
Storage Class
11 - Combustible Solids
wgk
WGK 1
flash_point_f
Not applicable
flash_point_c
Not applicable
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Rika Shiota et al.
Analytical sciences : the international journal of the Japan Society for Analytical Chemistry, 33(6), 719-722 (2017-06-13)
An analytical method was developed and validated for the measurement of hydroxyproline (Hyp) levels in mouse kidney by high-performance liquid chromatography with tandem mass spectrometric detection (LC/MS/MS) using an analytical column specially designed for the LC/MS/MS analysis for intact amino
Holly Newton et al.
Nature communications, 11(1), 4653-4653 (2020-09-18)
Cancer cells demand excess nutrients to support their proliferation, but how tumours exploit extracellular amino acids during systemic metabolic perturbations remain incompletely understood. Here, we use a Drosophila model of high-sugar diet (HSD)-enhanced tumourigenesis to uncover a systemic host-tumour metabolic



