DHA

Dha is a lipid of Fatty Acyls (FA) class. Dha is associated with abnormalities such as Atherosclerosis, Consumption-archaic term for TB, Chronic disease, Cardiovascular Diseases and Diabetes Mellitus, Non-Insulin-Dependent. The involved functions are known as Inflammation, Oxidation, fatty acid oxidation, Fatty Acid Metabolism and Lipid Metabolism. Dha often locates in Hepatic, Protoplasm, Mucous Membrane, Epithelium and outer membrane. The associated genes with DHA are IMPACT gene, FATE1 gene, GAPDH gene, THOC4 gene and SLC33A1 gene. The related lipids are stearidonic acid, Fatty Acids, Total cholesterol, Lipopolysaccharides and Dietary Fatty Acid. The related experimental models are Mouse Model, Transgenic Model, Animal Disease Models and Arthritis, Experimental.

Cross Reference

Introduction

To understand associated biological information of DHA, 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 DHA?

DHA is suspected in Cardiovascular Diseases, Obesity, Ischemia, Hypertensive disease, Coronary Arteriosclerosis, Cerebrovascular accident 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 DHA

MeSH term MeSH ID Detail
Sleep Wake Disorders D012893 7 associated lipids
Peripheral Arterial Disease D058729 7 associated lipids
Burkholderia Infections D019121 7 associated lipids
Hepatitis C D006526 7 associated lipids
Keratitis D007634 7 associated lipids
Dyslipidemias D050171 7 associated lipids
Plaque, Atherosclerotic D058226 7 associated lipids
Multiple Sclerosis, Relapsing-Remitting D020529 7 associated lipids
Coronary Thrombosis D003328 7 associated lipids
Dementia, Vascular D015140 7 associated lipids
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PubChem Associated disorders and diseases

What pathways are associated with DHA

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 DHA?

Related references are published most in these journals:

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


Related references are published most in these journals:

Function Cross reference Weighted score Related literatures

What lipids are associated with DHA?

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 DHA?

Related references are published most in these journals:


Gene Cross reference Weighted score Related literatures

What common seen animal models are associated with DHA?

Mouse Model

Mouse Model are used in the study 'Homeostatic regulation of photoreceptor cell integrity: significance of the potent mediator neuroprotectin D1 biosynthesized from docosahexaenoic acid: the Proctor Lecture.' (Bazan NG, 2007), Mouse Model are used in the study 'Omega-3 fatty acids EPA and DHA: health benefits throughout life.' (Swanson D et al., 2012), Mouse Model are used in the study 'Docosahexaenoic acid attenuates hepatic inflammation, oxidative stress, and fibrosis without decreasing hepatosteatosis in a Ldlr(-/-) mouse model of western diet-induced nonalcoholic steatohepatitis.' (Depner CM et al., 2013) and Mouse Model are used in the study 'Wax esters from the marine copepod Calanus finmarchicus reduce diet-induced obesity and obesity-related metabolic disorders in mice.' (Höper AC et al., 2014).

Transgenic Model

Transgenic Model are used in the study 'Loss of MAP function leads to hippocampal synapse loss and deficits in the Morris Water Maze with aging.' (Ma QL et al., 2014).

Animal Disease Models

Animal Disease Models are used in the study 'Fish oil increases muscle protein mass and modulates Akt/FOXO, TLR4, and NOD signaling in weanling piglets after lipopolysaccharide challenge.' (Liu Y et al., 2013).

Related references are published most in these journals:

Model Cross reference Weighted score Related literatures
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NCBI Entrez Crosslinks

All references with DHA

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Per page 10 20 50 100 | Total 7336
Authors Title Published Journal PubMed Link
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Liu X et al. Oxidized fatty acid analysis by charge-switch derivatization, selected reaction monitoring, and accurate mass quantitation. 2013 Anal. Biochem. pmid:23850559
Jans JJ et al. Supplementation with a powdered blend of PUFAs normalizes DHA and AA levels in patients with PKU. 2013 Mol. Genet. Metab. pmid:23562298
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Gao F et al. Aging decreases rate of docosahexaenoic acid synthesis-secretion from circulating unesterified α-linolenic acid by rat liver. 2013 Age (Dordr) pmid:22388930
Arnold C et al. Macular xanthophylls and ω-3 long-chain polyunsaturated fatty acids in age-related macular degeneration: a randomized trial. 2013 JAMA Ophthalmol pmid:23519529
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Watson AM et al. Taurine supplementation of plant derived protein and n-3 fatty acids are critical for optimal growth and development of cobia, Rachycentron canadum. 2013 Lipids pmid:23884630
Aslan M et al. LC-MS/MS analysis of plasma polyunsaturated fatty acids in type 2 diabetic patients after insulin analog initiation therapy. 2013 Lipids Health Dis pmid:24195588
Zawadzki M et al. Perna canaliculus lipid complex PCSO-524â„¢ demonstrated pain relief for osteoarthritis patients benchmarked against fish oil, a randomized trial, without placebo control. 2013 Mar Drugs pmid:23739042
Morel PC et al. Effect of lipid type on growth performance, meat quality and the content of long chain n-3 fatty acids in pork meat. 2013 Meat Sci. pmid:23739265
Liu Y et al. Fish oil increases muscle protein mass and modulates Akt/FOXO, TLR4, and NOD signaling in weanling piglets after lipopolysaccharide challenge. 2013 J. Nutr. pmid:23739309
Laird BD et al. Dietary advice on Inuit traditional food use needs to balance benefits and risks of mercury, selenium, and n3 fatty acids. 2013 J. Nutr. pmid:23616502
Sala-Vila A et al. Eicosapentaenoic acid in serum phospholipids relates to a less atherogenic lipoprotein profile in subjects with familial hypercholesterolemia. 2013 J. Nutr. Biochem. pmid:23618530
Shida T et al. Colonic delivery of docosahexaenoic acid improves impaired glucose tolerance via GLP-1 secretion and suppresses pancreatic islet hyperplasia in diabetic KK-A(y) mice. 2013 Int J Pharm pmid:23618969
Meyer BJ et al. Assessing long-chain ω-3 polyunsaturated fatty acids: a tailored food-frequency questionnaire is better. 2013 Nutrition pmid:22929186
Johnston DT et al. Red blood cell omega-3 fatty acid levels and neurocognitive performance in deployed U.S. Servicemembers. 2013 Nutr Neurosci pmid:22748167
Ravacci GR et al. Lipid raft disruption by docosahexaenoic acid induces apoptosis in transformed human mammary luminal epithelial cells harboring HER-2 overexpression. 2013 J. Nutr. Biochem. pmid:22749134
Hashimoto M et al. Prescription n-3 fatty acids, but not eicosapentaenoic acid alone, improve reference memory-related learning ability by increasing brain-derived neurotrophic factor levels in SHR.Cg-Lepr(cp)/NDmcr rats, a metabolic syndrome model. 2013 Neurochem. Res. pmid:23963508
Santos VC et al. Effects of DHA-rich fish oil supplementation on lymphocyte function before and after a marathon race. 2013 Int J Sport Nutr Exerc Metab pmid:23239683
O'Sullivan BP et al. Evolution of pancreatic function during the first year in infants with cystic fibrosis. 2013 J. Pediatr. pmid:23245194
Köhnke T et al. Acetylsalicylic Acid reduces the severity of dextran sodium sulfate-induced colitis and increases the formation of anti-inflammatory lipid mediators. 2013 Biomed Res Int pmid:24083240
Lluís L et al. Protective effect of the omega-3 polyunsaturated fatty acids: Eicosapentaenoic acid/Docosahexaenoic acid 1:1 ratio on cardiovascular disease risk markers in rats. 2013 Lipids Health Dis pmid:24083393
D'Souza V et al. Counteracting oxidative stress in pregnancy through modulation of maternal micronutrients and omega-3 fatty acids. 2013 Curr. Med. Chem. pmid:24274816
Fenton JI and McCaskey SJ Curcumin and docosahexaenoic acid block insulin-induced colon carcinoma cell proliferation. 2013 Prostaglandins Leukot. Essent. Fatty Acids pmid:23266210
Rogers LK et al. DHA supplementation: current implications in pregnancy and childhood. 2013 Pharmacol. Res. pmid:23266567
Otsuka R et al. Higher serum EPA or DHA, and lower ARA compositions with age independent fatty acid intake in Japanese aged 40 to 79. 2013 Lipids pmid:23389403
Cunnane SC et al. Docosahexaenoic acid homeostasis, brain aging and Alzheimer's disease: Can we reconcile the evidence? 2013 Prostaglandins Leukot. Essent. Fatty Acids pmid:22575581
Kenchegowda S et al. Involvement of pigment epithelium-derived factor, docosahexaenoic acid and neuroprotectin D1 in corneal inflammation and nerve integrity after refractive surgery. 2013 Prostaglandins Leukot. Essent. Fatty Acids pmid:22579364
Turk HF et al. Inhibitory effects of omega-3 fatty acids on injury-induced epidermal growth factor receptor transactivation contribute to delayed wound healing. 2013 Am. J. Physiol., Cell Physiol. pmid:23426968
Thom VT et al. Regulation of ecto-5´-nucleotidase by docosahexaenoic acid in human endothelial cells. 2013 Cell. Physiol. Biochem. pmid:23988425
Gupta A et al. Pollen baiting facilitates the isolation of marine thraustochytrids with potential in omega-3 and biodiesel production. 2013 J. Ind. Microbiol. Biotechnol. pmid:23990167
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Bohr S et al. Resolvin D2 prevents secondary thrombosis and necrosis in a mouse burn wound model. 2013 Jan-Feb Wound Repair Regen pmid:23110665
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Zajdel A et al. Polyunsaturated fatty acids inhibit melanoma cell growth in vitro. 2013 Mar-Apr Acta Pol Pharm pmid:23614295
Docosahexaenoic and arachidonic acid levels in ELBW infants with prolonged exposure to intravenous lipids. 2013 May-Jun Neonatal Netw pmid:23807965
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Makrides M et al. Four-year follow-up of children born to women in a randomized trial of prenatal DHA supplementation. 2014 JAMA pmid:24794375
Mirakaj V et al. Vagus nerve controls resolution and pro-resolving mediators of inflammation. 2014 J. Exp. Med. pmid:24863066
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Oh DY et al. A Gpr120-selective agonist improves insulin resistance and chronic inflammation in obese mice. 2014 Nat. Med. pmid:24997608
Hughbanks-Wheaton DK et al. Safety assessment of docosahexaenoic acid in X-linked retinitis pigmentosa: the 4-year DHAX trial. 2014 Invest. Ophthalmol. Vis. Sci. pmid:25015354
Velten M et al. Maternal dietary docosahexaenoic acid supplementation attenuates fetal growth restriction and enhances pulmonary function in a newborn mouse model of perinatal inflammation. 2014 J. Nutr. pmid:24453131
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Sato K et al. Pharmacological evidence showing significant roles for potassium channels and CYP epoxygenase metabolites in the relaxant effects of docosahexaenoic acid on the rat aorta contracted with U46619. 2014 Biol. Pharm. Bull. pmid:24369179
Nagao K et al. Comparison of the lipid-lowering effects of four different n-3 highly unsaturated fatty acids in HepG2 cells. 2014 J Oleo Sci pmid:25213447
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Kabeya N et al. Modification of the n-3 HUFA biosynthetic pathway by transgenesis in a marine teleost, nibe croaker. 2014 J. Biotechnol. pmid:24389067
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Taltavull N et al. Eicosapentaenoic acid/docosahexaenoic acid 1:1 ratio improves histological alterations in obese rats with metabolic syndrome. 2014 Lipids Health Dis pmid:24512213
Nanjappa D et al. Oxylipin diversity in the diatom family Leptocylindraceae reveals DHA derivatives in marine diatoms. 2014 Mar Drugs pmid:24445306
Dayaker G et al. Total synthesis of neuroprotectin D1 analogues derived from omega-6 docosapentaenoic acid (DPA) and adrenic acid (AdA) from a common pivotal, late-stage intermediate. 2014 J. Org. Chem. pmid:24571431
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Sertoglu E et al. Comparison of plasma and erythrocyte membrane fatty acid compositions in patients with end-stage renal disease and type 2 diabetes mellitus. 2014 Chem. Phys. Lipids pmid:24384240
Stoffel W et al. Obesity resistance and deregulation of lipogenesis in Δ6-fatty acid desaturase (FADS2) deficiency. 2014 EMBO Rep. pmid:24378641
Shinohara M et al. Cell-cell interactions and bronchoconstrictor eicosanoid reduction with inhaled carbon monoxide and resolvin D1. 2014 Am. J. Physiol. Lung Cell Mol. Physiol. pmid:25217660
Yao QH et al. ω-3 polyunsaturated fatty acids inhibit the proliferation of the lung adenocarcinoma cell line A549 in vitro. 2014 Mol Med Rep pmid:24276408
Jiang M et al. Isolation and characterization of the diatom Phaeodactylum Δ5-elongase gene for transgenic LC-PUFA production in Pichia pastoris. 2014 Mar Drugs pmid:24608969
Luxwolda MF et al. Interrelationships between maternal DHA in erythrocytes, milk and adipose tissue. Is 1 wt% DHA the optimal human milk content? Data from four Tanzanian tribes differing in lifetime stable intakes of fish. 2014 Br. J. Nutr. pmid:24175990
Hixson SM et al. Changes in tissue lipid and fatty acid composition of farmed rainbow trout in response to dietary camelina oil as a replacement of fish oil. 2014 Lipids pmid:24264359