Anandamide

Anandamide is a lipid of Fatty Acyls (FA) class. Anandamide is associated with abnormalities such as Dehydration. The involved functions are known as Process, Phenomenon, Phosphorylation, Catabolic Process and Gene Expression. Anandamide often locates in Nuchal region, Microglial and Hepatic. The associated genes with Anandamide are SGPL1 gene, SPTLC1 gene, RPSA gene, KDSR gene and SMPD1 gene. The related lipids are Sphingolipids, Lipopolysaccharides, Lysophospholipids, LYSO-PC and lysophosphatidylethanolamine.

Cross Reference

Introduction

To understand associated biological information of Anandamide, we collected biological information of abnormalities, associated pathways, cellular/molecular locations, biological functions, related genes/proteins, lipids and common seen animal/experimental models with organized paragraphs from literatures.

What diseases are associated with Anandamide?

Anandamide is suspected in Dehydration and other diseases in descending order of the highest number of associated sentences.

Related references are mostly published in these journals:

Disease Cross reference Weighted score Related literature
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Possible diseases from mapped MeSH terms on references

We collected disease MeSH terms mapped to the references associated with Anandamide

MeSH term MeSH ID Detail
Hypertension, Portal D006975 12 associated lipids
Hypotension D007022 41 associated lipids
Hypothermia D007035 19 associated lipids
Inflammation D007249 119 associated lipids
Insulin Resistance D007333 99 associated lipids
Intestinal Pseudo-Obstruction D007418 5 associated lipids
Learning Disorders D007859 11 associated lipids
Liver Cirrhosis D008103 67 associated lipids
Melanoma D008545 69 associated lipids
Memory Disorders D008569 33 associated lipids
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PubChem Associated disorders and diseases

What pathways are associated with Anandamide

There are no associated biomedical information in the current reference collection.

PubChem Biomolecular Interactions and Pathways

Link to PubChem Biomolecular Interactions and Pathways

What cellular locations are associated with Anandamide?

Related references are published most in these journals:

Location Cross reference Weighted score Related literatures
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What functions are associated with Anandamide?


Related references are published most in these journals:

Function Cross reference Weighted score Related literatures

What lipids are associated with Anandamide?

Related references are published most in these journals:

Lipid concept Cross reference Weighted score Related literatures
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What genes are associated with Anandamide?

Related references are published most in these journals:


Gene Cross reference Weighted score Related literatures

What common seen animal models are associated with Anandamide?

There are no associated biomedical information in the current reference collection.

NCBI Entrez Crosslinks

All references with Anandamide

Download all related citations
Per page 10 20 50 100 | Total 2222
Authors Title Published Journal PubMed Link
Smith M et al. The Effects of the Endocannabinoids Anandamide and 2-Arachidonoylglycerol on Human Osteoblast Proliferation and Differentiation. 2015 PLoS ONE pmid:26414859
Gouveia-Figueira S et al. Characterisation of (R)-2-(2-Fluorobiphenyl-4-yl)-N-(3-Methylpyridin-2-yl)Propanamide as a Dual Fatty Acid Amide Hydrolase: Cyclooxygenase Inhibitor. 2015 PLoS ONE pmid:26406890
Thörn Pérez C et al. Substance P Depolarizes Lamprey Spinal Cord Neurons by Inhibiting Background Potassium Channels. 2015 PLoS ONE pmid:26197458
Chon SH et al. Over-expression of monoacylglycerol lipase (MGL) in small intestine alters endocannabinoid levels and whole body energy balance, resulting in obesity. 2012 PLoS ONE pmid:22937137
Kaczocha M et al. Inhibition of fatty acid binding proteins elevates brain anandamide levels and produces analgesia. 2014 PLoS ONE pmid:24705380
Jackson AR et al. Anandamide attenuates Th-17 cell-mediated delayed-type hypersensitivity response by triggering IL-10 production and consequent microRNA induction. 2014 PLoS ONE pmid:24699635
Di Pasquale E et al. The insertion and transport of anandamide in synthetic lipid membranes are both cholesterol-dependent. 2009 PLoS ONE pmid:19330032
Leo LM et al. Age-dependent relevance of endogenous 5-lipoxygenase derivatives in anxiety-like behavior in mice. 2014 PLoS ONE pmid:24416334
Berger WT et al. Targeting fatty acid binding protein (FABP) anandamide transporters - a novel strategy for development of anti-inflammatory and anti-nociceptive drugs. 2012 PLoS ONE pmid:23236415
Compagnucci C et al. Type-1 (CB1) cannabinoid receptor promotes neuronal differentiation and maturation of neural stem cells. 2013 PLoS ONE pmid:23372698
Bhaskaran MD and Smith BN Cannabinoid-mediated inhibition of recurrent excitatory circuitry in the dentate gyrus in a mouse model of temporal lobe epilepsy. 2010 PLoS ONE pmid:20498848
Zschenderlein C et al. Capsaicin-induced changes in LTP in the lateral amygdala are mediated by TRPV1. 2011 PLoS ONE pmid:21249195
Starowicz K et al. Full inhibition of spinal FAAH leads to TRPV1-mediated analgesic effects in neuropathic rats and possible lipoxygenase-mediated remodeling of anandamide metabolism. 2013 PLoS ONE pmid:23573230
Chadwick W et al. Minimal peroxide exposure of neuronal cells induces multifaceted adaptive responses. 2010 PLoS ONE pmid:21179406
Ligresti A et al. Exploiting nanotechnologies and TRPV1 channels to investigate the putative anandamide membrane transporter. 2010 PLoS ONE pmid:20422025
Pava MJ et al. Endocannabinoid modulation of cortical up-states and NREM sleep. 2014 PLoS ONE pmid:24520411
Hamtiaux L et al. Increasing antiproliferative properties of endocannabinoids in N1E-115 neuroblastoma cells through inhibition of their metabolism. 2011 PLoS ONE pmid:22046372
Leung K et al. Role of FAAH-like anandamide transporter in anandamide inactivation. 2013 PLoS ONE pmid:24223930
Karlsson J et al. Effects of tumour necrosis factor α upon the metabolism of the endocannabinoid anandamide in prostate cancer cells. 2017 PLoS ONE pmid:28910408
Murtaza G et al. TASK-1 potassium channel is not critically involved in mediating hypoxic pulmonary vasoconstriction of murine intra-pulmonary arteries. 2017 PLoS ONE pmid:28301582