4-aminobutyric acid is a lipid of Fatty Acyls (FA) class. 4-aminobutyric acid is associated with abnormalities such as Epilepsy and Premenstrual syndrome. The involved functions are known as Binding (Molecular Function), neuron survival, Process, Uptake and physiological aspects. 4-aminobutyric acid often locates in Microglial, Neurofilament, Neuraxis, Brain region and Neurites. The associated genes with 4-aminobutyric acid are arginine methyl ester, SLC33A1 gene, NKS1 gene, P4HTM gene and ITSN2 gene. The related lipids are pregnenolone sulfate, pregnane-20-one, Pregnanes, Steroids and endogenous steroids.
To understand associated biological information of 4-aminobutyric acid, 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.
4-aminobutyric acid is suspected in Premenstrual syndrome, Epilepsy and other diseases in descending order of the highest number of associated sentences.
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We collected disease MeSH terms mapped to the references associated with 4-aminobutyric acid
There are no associated biomedical information in the current reference collection.
Associated locations are in red color. Not associated locations are in black.
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Lipid concept | Cross reference | Weighted score | Related literatures |
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There are no associated biomedical information in the current reference collection.
Authors | Title | Published | Journal | PubMed Link |
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Stefanova N | Gamma-aminobutyric acid-immunoreactive neurons in the amygdala of the rat - sex differences and effect of early postnatal castration. | 1998 | Neurosci. Lett. | pmid:9832201 |
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Castoldi AF et al. | Ethanol selectively interferes with the trophic action of NMDA and carbachol on cultured cerebellar granule neurons undergoing apoptosis. | 1998 | Brain Res. Dev. Brain Res. | pmid:9838163 |
Banerjee PK et al. | Steroid-inhibition of [3H]gamma-hydroxybutyric acid (GHB) binding in thalamic relay nuclei increases during absence seizures. | 1998 | Brain Res. | pmid:9838187 |
Morin F et al. | Selective loss of GABA neurons in area CA1 of the rat hippocampus after intraventricular kainate. | 1998 | Epilepsy Res. | pmid:9839776 |
Ness TJ et al. | A case of spinal cord injury-related pain with baseline rCBF brain SPECT imaging and beneficial response to gabapentin. | 1998 | Pain | pmid:9839825 |
Li Z and Fite KV | Distribution of GABA-like immunoreactive neurons and fibers in the central visual nuclei and retina of frog, Rana pipiens. | 1998 Nov-Dec | Vis. Neurosci. | pmid:9839965 |
Linn DM | A comparison of the inhibitory actions of glycine and GABA on acetylcholine release from the rabbit retina. | 1998 Nov-Dec | Vis. Neurosci. | pmid:9839970 |
Merwine DK et al. | Non-monotonic contrast behavior in directionally selective ganglion cells and evidence for its dependence on their GABAergic input. | 1998 Nov-Dec | Vis. Neurosci. | pmid:9839977 |
Rakovska A et al. | Neurotensin modulation of acetylcholine and GABA release from the rat hippocampus: an in vivo microdialysis study. | 1998 | Neurochem. Int. | pmid:9840224 |
Maksay G et al. | Bimodal action of furosemide on convulsant [3H]EBOB binding to cerebellar and cortical GABA(A) receptors. | 1998 | Neurochem. Int. | pmid:9840226 |
Vizi ES | Different temperature dependence of carrier-mediated (cytoplasmic) and stimulus-evoked (exocytotic) release of transmitter: a simple method to separate the two types of release. | 1998 | Neurochem. Int. | pmid:9840227 |
Abdi S et al. | The anti-allodynic effects of amitriptyline, gabapentin, and lidocaine in a rat model of neuropathic pain. | 1998 | Anesth. Analg. | pmid:9842827 |
Lillien L | Progenitor cells: what do they know and when do they know it? | 1998 | Curr. Biol. | pmid:9843675 |
Hadjiivanova CH and Georgiev V | In vitro effect of angiotensin II on GABA release in rat hippocampus. | 1998 | Neuropeptides | pmid:9845003 |
De Witte P | The role of neurotransmitters in alcohol dependence: animal research. | 1996 | Alcohol Alcohol Suppl | pmid:9845033 |
Timmermans MW and Scheuermann DW | Distributional pattern and targets of GABA-containing neurons in the porcine small and large intestine. | 1998 | Eur J Morphol | pmid:9845259 |
Pericić D et al. | [3H]t-butylbicycloorthobenzoate binding to recombinant alpha1beta2gamma2s GABA(A) receptor. | 1998 | Eur. J. Pharmacol. | pmid:9845278 |
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Honda M et al. | Alteration of the GABAergic neuronal system of the retina and superior colliculus in streptozotocin-induced diabetic rat. | 1998 | Kobe J Med Sci | pmid:9846053 |
Backonja M et al. | Gabapentin for the symptomatic treatment of painful neuropathy in patients with diabetes mellitus: a randomized controlled trial. | 1998 | JAMA | pmid:9846777 |
Rowbotham M et al. | Gabapentin for the treatment of postherpetic neuralgia: a randomized controlled trial. | 1998 | JAMA | pmid:9846778 |
Low PA and Dotson RM | Symptomatic treatment of painful neuropathy. | 1998 | JAMA | pmid:9846782 |
Calli J and Farrington E | Vigabatrin. | 1998 Jul-Aug | Pediatr Nurs | pmid:9849270 |
Petroff OA et al. | Vigabatrin increases human brain homocarnosine and improves seizure control. | 1998 | Ann. Neurol. | pmid:9851440 |
Mazzini L et al. | The natural history and the effects of gabapentin in amyotrophic lateral sclerosis. | 1998 | J. Neurol. Sci. | pmid:9851651 |
Connelly CA | Microdialysis update: optimizing the advantages. | 1999 | J. Physiol. (Lond.) | pmid:9852314 |