FAAH

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Fatty-acid amide hydrolase 1 (EC 3.5.1.99) (Anandamide amidohydrolase 1) (Fatty acid ester hydrolase) (EC 3.1.1.-) (Oleamide hydrolase 1) [FAAH1]

Publications[править]

Endocannabinoid genetic variation enhances vulnerability to THC reward in adolescent female mice.


Pharmacological convergence reveals a lipid pathway that regulates C. elegans lifespan.


Stimulation of brain glucose uptake by cannabinoid CB2 receptors and its therapeutic potential in Alzheimer's disease.


Sustained Endocannabinoid Signaling Compromises Decidual Function and Promotes Inflammation-induced Preterm Birth.


Decreased anxiety in juvenile rats following exposure to low levels of chlorpyrifos during development.


Enhanced microglial activity in FAAH(-/-) animals.


Normal aging in rats and pathological aging in human Alzheimer's disease decrease FAAH activity: modulation by cannabinoid agonists.


Induction of endocannabinoid levels in juvenile rat brain following developmental chlorpyrifos exposure.


The fatty acid amide hydrolase inhibitor URB597 exerts anti-inflammatory effects in hippocampus of aged rats and restores an age-related deficit in long-term potentiation.


Effects of chronic bhang (cannabis) administration on the reproductive system of male mice.


A diacylglycerol lipase-CB2 cannabinoid pathway regulates adult subventricular zone neurogenesis in an age-dependent manner.


A human fatty acid amide hydrolase (FAAH) functional gene variant is associated with lower blood pressure in young males.


Decreased age-related cardiac dysfunction, myocardial nitrative stress, inflammatory gene expression, and apoptosis in mice lacking fatty acid amide hydrolase.


Anandamide activity and degradation are regulated by early postnatal aging and follicle-stimulating hormone in mouse Sertoli cells.


Age-related changes of anandamide metabolism in CB1 cannabinoid receptor knockout mice: correlation with behaviour.


Anandamide degradation and N-acylethanolamines level in wild-type and CB1 cannabinoid receptor knockout mice of different ages.