LX 1606 Hippurate

Catalog No.: A10542
Hydroxylase Inhibitor
LX 1606 hippurate is an orally bioavailable, small-molecule, tryptophan hydroxylase (TPH) inhibitor with potential antiserotonergic activity.
Grouped product items
Product Name Price Stock Qty
LX 1606 Hippurate 5mg
Special Price $50.40 Regular Price $63.00
In stock
LX 1606 Hippurate 10mg
Special Price $85.60 Regular Price $107.00
In stock
LX 1606 Hippurate 50mg
Special Price $252.00 Regular Price $315.00
In stock
LX 1606 Hippurate 100mg
Special Price $856.80 Regular Price $1,071.00
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LX 1606 Hippurate 10mM * 1mL in DMSO
Special Price $216.00 Regular Price $270.00
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Biological Activity
Discription LX 1606 hippurate is an orally bioavailable, small-molecule, tryptophan hydroxylase (TPH) inhibitor with potential antiserotonergic activity.
Product Information
Catalog Num A10542
Formula C36H35ClF3N7O6
Molecular Weight 754.2
CAS Number 1137608-69-5
SMILES CCOC(=O)[C@H](CC1=CC=C(C=C1)C2=CC(=NC(=N2)N)O[C@H](C3=C(C=C(C=C3)Cl)N4C=CC(=N4)C)C(F)(F)F)N.C1=CC=C(C=C1)C(=O)NCC(=O)O
Synonyms Telotristat etiprate, LX 1032
Storage

Store lyophilized at -20ºC, keep desiccated.
In lyophilized form, the chemical is stable for 36 months.
In solution, store at -20ºC and use within 3 months to prevent loss of potency. Aliquot to avoid multiple freeze/thaw cycles.

Solubility
In vitro DMSO 93 mg/mL (123.31 mM)
Water Insoluble
Ethanol Insoluble
* <1 mg/ml means slightly soluble or insoluble.
* Please note that Adooq tests the solubility of all compounds in-house, and the actual solubility may differ slightly from published values. This is normal and is due to slight batch-to-batch variations.
Preparing Stock Solutions
Concentration / Solvent Volume / Mass 1 mg 5 mg 10 mg
0.1 mM 13.26 mL 66.3 mL 132.59 mL
0.5 mM 2.65 mL 13.26 mL 26.52 mL
1 mM 1.33 mL 6.63 mL 13.26 mL
5 mM 0.27 mL 1.33 mL 2.65 mL
Useful Calculator

This calculator helps you calculate mass of compound based on solution concentration, volume and molecular weight in a specific solution using the formula:

Mass (mg) = Concentration (mM) × Volume (mL) × Molecular Weight (g/mol)

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This equation is commonly abbreviated as: C1V1 = C2V2

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