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Formula | C19H19N5OS |
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Molecular Weight | 365.45 | CAS No. | 681136-29-8 | ||||
Solubility (25°C)* | In vitro | DMSO | 36 mg/mL (98.5 mM) | ||||
Water | Insoluble | ||||||
Ethanol | Insoluble | ||||||
In vivo (Add solvents to the product individually and in order) |
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* <1 mg/ml means slightly soluble or insoluble. * Please note that Selleck 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. * Room temperature shipping (Stability testing shows this product can be shipped without any cooling measures.) |
Description | JNJ-1661010 (Takeda-25) is a potent and selective FAAH inhibitor with IC50 of 10 nM (rat) and 12 nM (human), exhibits >100-fold selectivity for FAAH-1 when compared to FAAH-2. | ||||
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Targets |
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In vitro | FAAH preincubated with JNJ-1661010 suggests a slow reversibility of the interaction between the JNJ-1661010 and the active site, which is accelerated at higher temperatures. [1] JNJ-1661010 is a covalent, mechanism-based substrate inhibitor as examined by LC-ESI-MS. JNJ-1661010 docks with the phenylthiadiazole in the hydrophobic tunnel and the phenylurea in the hydrophilic pocket of FAAH. [2] | ||||
In vivo | JNJ-1661010 (20 mg/kg i.p.) inhibits FAAH by at least 85% for up to 4 h after dosing, resulting accumulation of lipid ethanolamides in rat brain. JNJ-1661010 dose-dependently reverses the tactile allodynia with a maximum efficacy of approximately 90% at 30 min postdose in both Mild Thermal Injury (MTI) mice and rat model. JNJ-1661010 (20 mg/kg) reverses tactile allodynia by 60.8% at 30 min in rat spinal nerve ligation injury model. JNJ-1661010 (50 mg/kg i.p.) shows a significant attenuation of the hyperalgesia at 30 min postdose in rat carrageenan model of inflammatory pain. [1] Rats dosed with JNJ-1661010 (20 mg/kg i.p.) has a plasma Cmax of 26.9 μM at the Tmax of 0.75 h and a Cmax in the brain of 6.04 μM at the Tmax of 2 h. JNJ-1661010 (20 mg/kg i.p.) inhibits brain FAAH and elevates AEA level in brain tissue in rat. [2] |
Animal Study:[1] |
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