(S)-4C3HPG
(S)-4C3HPG ((S)-4-Carboxy-3-hydroxyphenylglycine) is an antagonist of metabotropic glutamate receptor 1a (mGluR 1a) and an agonist of GluR2. (S)-4C3HPG has the anticonvulsant activity and protects against audiogenic seizures in DBA/2 mice.
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- CAS No.: 85148-82-9
- Formule: C9H9NO5
- Masse moléculaire:211.17
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Stockage:
Please store the product under the recommended conditions in the Certificate of Analysis.
Activité biologique
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Cell Line
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Type | Value | Description | References |
|---|---|---|---|---|
| HEK293 | EC50 |
>100 μM
Compound: 21
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Stimulation of [3H]phosphatidylinositol accumulation by rat Metabotropic glutamate receptor 4 co-expressed with Gqi9 protein in HEK 293 cells; Inactive
Stimulation of [3H]phosphatidylinositol accumulation by rat Metabotropic glutamate receptor 4 co-expressed with Gqi9 protein in HEK 293 cells; Inactive
|
[PMID: 15801843] |
| HEK293 | IC50 |
40 μM
Compound: 34
|
Inhibitory activity against Metabotropic glutamate receptor 1 in the rat LLC-PK1/HEK 293 cells
Inhibitory activity against Metabotropic glutamate receptor 1 in the rat LLC-PK1/HEK 293 cells
|
[PMID: 10229625] |
Chemical Information
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CAS No. 85148-82-9
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Masse moléculaire 211.17
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Formule C9H9NO5
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SMILES
OC1=C(C(O)=O)C=CC([C@H](N)C(O)=O)=C1
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Synonyms
(S)-4-Carboxy-3-hydroxyphenylglycine
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Livraison
Room temperature in continental US; may vary elsewhere.
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Stockage
Please store the product under the recommended conditions in the Certificate of Analysis.
Pureté et documentation
Références
[1]. C Thomsen, et al. (S)-4-carboxy-3-hydroxyphenylglycine, an antagonist of metabotropic glutamate receptor (mGluR) 1a and an agonist of mGluR2, protects against audiogenic seizures in DBA/2 mice. J Neurochem. 1994 Jun;62(6):2492-5. [Content Brief]
[2]. Thomsen C, et al. (S)-4-carboxy-3-hydroxyphenylglycine, an antagonist of metabotropic glutamate receptor (mGluR) 1a and an agonist of mGluR2, protects against audiogenic seizures in DBA/2 mice. J Neurochem. 1994 Jun;62(6):2492-5. [Content Brief]
Calculators
Concentration (start) × Volume (start) = Concentration (final) × Volume (final)