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
Hemolysis D006461 131 associated lipids
Stomach Ulcer D013276 75 associated lipids
Kidney Failure, Chronic D007676 51 associated lipids
Diabetes Mellitus D003920 90 associated lipids
Hypoxia D000860 23 associated lipids
Arrhythmias, Cardiac D001145 42 associated lipids
Neovascularization, Pathologic D009389 39 associated lipids
Adenocarcinoma D000230 166 associated lipids
Breast Neoplasms D001943 24 associated lipids
Pain D010146 64 associated lipids
Per page 10 20 50 100 | Total 240

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
Shomonov-Wagner L et al. Alpha linolenic acid in maternal diet halts the lipid disarray due to saturated fatty acids in the liver of mice offspring at weaning. 2015 Lipids Health Dis pmid:25889505
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Taylan A et al. S1000A12, Chitotriosidase, and Resolvin D1 as Potential Biomarkers of Familial Mediterranean Fever. 2015 J. Korean Med. Sci. pmid:26339162
Qin Y et al. Fish Oil Supplements Lower Serum Lipids and Glucose in Correlation with a Reduction in Plasma Fibroblast Growth Factor 21 and Prostaglandin E2 in Nonalcoholic Fatty Liver Disease Associated with Hyperlipidemia: A Randomized Clinical Trial. 2015 PLoS ONE pmid:26226139
Orr SK et al. Proresolving actions of a new resolvin D1 analog mimetic qualifies as an immunoresolvent. 2015 Am. J. Physiol. Lung Cell Mol. Physiol. pmid:25770181
Pierdomenico AM et al. MicroRNA-181b regulates ALX/FPR2 receptor expression and proresolution signaling in human macrophages. 2015 J. Biol. Chem. pmid:25505240
Saito H et al. Variation of Lipids and Fatty Acids of the Japanese Freshwater Eel, Anguilla japonica, during Spawning Migration. 2015 J Oleo Sci pmid:26028326
Calandria JM et al. The Docosanoid Neuroprotectin D1 Induces TH-Positive Neuronal Survival in a Cellular Model of Parkinson's Disease. 2015 Cell. Mol. Neurobiol. pmid:26047923
Suo R et al. Generation of Tetracosahexaenoic Acid in Benthic Marine Organisms. 2015 J Oleo Sci pmid:26136172
Kanan Y et al. Neuroprotectin D1 is synthesized in the cone photoreceptor cell line 661W and elicits protection against light-induced stress. 2015 Cell. Mol. Neurobiol. pmid:25212825
Serhan CN et al. Protectins and maresins: New pro-resolving families of mediators in acute inflammation and resolution bioactive metabolome. 2015 Biochim. Biophys. Acta pmid:25139562
Park CK Maresin 1 Inhibits TRPV1 in Temporomandibular Joint-Related Trigeminal Nociceptive Neurons and TMJ Inflammation-Induced Synaptic Plasticity in the Trigeminal Nucleus. 2015 Mediators Inflamm. pmid:26617436
Nordgren TM et al. Maresin-1 reduces airway inflammation associated with acute and repetitive exposures to organic dust. 2015 Transl Res pmid:25655838
Kotani K et al. Enzymatic preparation of human milk fat substitutes and their oxidation stability. 2015 J Oleo Sci pmid:25757431
Fischer T [Pharmacological therapy of age-related macular degeneration based on etiopathogenesis]. 2015 Orv Hetil pmid:26548469
Amminger GP et al. Predictors of treatment response in young people at ultra-high risk for psychosis who received long-chain omega-3 fatty acids. 2015 Transl Psychiatry pmid:25585167
Nury T et al. Induction of oxiapoptophagy on 158N murine oligodendrocytes treated by 7-ketocholesterol-, 7β-hydroxycholesterol-, or 24(S)-hydroxycholesterol: Protective effects of α-tocopherol and docosahexaenoic acid (DHA; C22:6 n-3). 2015 Steroids pmid:25683890
Norris SE et al. Human prefrontal cortex phospholipids containing docosahexaenoic acid increase during normal adult aging, whereas those containing arachidonic acid decrease. 2015 Neurobiol. Aging pmid:25676385
Ercan S et al. Induction of omega 6 inflammatory pathway by sodium metabisulfite in rat liver and its attenuation by ghrelin. 2015 Lipids Health Dis pmid:25889219
Talvas J et al. Immunonutrition stimulates immune functions and antioxidant defense capacities of leukocytes in radiochemotherapy-treated head & neck and esophageal cancer patients: A double-blind randomized clinical trial. 2015 Clin Nutr pmid:25575640
Filipcikova R et al. Lycopene improves the distorted ratio between AA/DHA in the seminal plasma of infertile males and increases the likelihood of successful pregnancy. 2015 Biomed Pap Med Fac Univ Palacky Olomouc Czech Repub pmid:23446211
Wendell SG et al. 15-Hydroxyprostaglandin dehydrogenase generation of electrophilic lipid signaling mediators from hydroxy ω-3 fatty acids. 2015 J. Biol. Chem. pmid:25586183
Maciejewska D et al. Fatty acid changes help to better understand regression of nonalcoholic fatty liver disease. 2015 World J. Gastroenterol. pmid:25574105
Cheatham CL and Sheppard KW Synergistic Effects of Human Milk Nutrients in the Support of Infant Recognition Memory: An Observational Study. 2015 Nutrients pmid:26540073
Harrison JL et al. Resolvins AT-D1 and E1 differentially impact functional outcome, post-traumatic sleep, and microglial activation following diffuse brain injury in the mouse. 2015 Brain Behav. Immun. pmid:25585137
Katakura M et al. Chronic Arachidonic Acid Administration Decreases Docosahexaenoic Acid- and Eicosapentaenoic Acid-Derived Metabolites in Kidneys of Aged Rats. 2015 PLoS ONE pmid:26485038
Brigandi SA et al. Autistic children exhibit decreased levels of essential Fatty acids in red blood cells. 2015 Int J Mol Sci pmid:25946342
Ross AB et al. Herring and Beef Meals Lead to Differences in Plasma 2-Aminoadipic Acid, β-Alanine, 4-Hydroxyproline, Cetoleic Acid, and Docosahexaenoic Acid Concentrations in Overweight Men. 2015 J. Nutr. pmid:26400963
Ossani GP et al. Short-term menhaden oil rich diet changes renal lipid profile in acute kidney injury. 2015 J Oleo Sci pmid:25948137
Zgorzynska E et al. Docosahexaenoic acid attenuates oxidative stress and protects human gingival fibroblasts against cytotoxicity induced by hydrogen peroxide and butyric acid. 2015 Arch. Oral Biol. pmid:25455128
Samokhvalov V et al. PPARδ signaling mediates the cytotoxicity of DHA in H9c2 cells. 2015 Toxicol. Lett. pmid:25300478
Yang S et al. Effect of thermal processing on astaxanthin and astaxanthin esters in pacific white shrimp Litopenaeus vannamei. 2015 J Oleo Sci pmid:25757428
Véricel E et al. Moderate oral supplementation with docosahexaenoic acid improves platelet function and oxidative stress in type 2 diabetic patients. 2015 Thromb. Haemost. pmid:25832443
Mason JK et al. α-linolenic acid and docosahexaenoic acid, alone and combined with trastuzumab, reduce HER2-overexpressing breast cancer cell growth but differentially regulate HER2 signaling pathways. 2015 Lipids Health Dis pmid:26282560
Esmaeili V et al. Dietary fatty acids affect semen quality: a review. 2015 Andrology pmid:25951427
Kawakami Y et al. Flaxseed oil intake reduces serum small dense low-density lipoprotein concentrations in Japanese men: a randomized, double blind, crossover study. 2015 Nutr J pmid:25896182
Mohajeri S and Newman SA Review of evidence for dietary influences on atopic dermatitis. 2014 Jul-Aug Skin Therapy Lett. pmid:25188523
Akimov MG et al. [The influence of docosahexaenoic acid moiety on cytotoxic activity of 1,2,4-thiadiazole derivatives]. 2014 Jul-Aug Biomed Khim pmid:25249531
Kar S Omacor and omega-3 fatty acids for treatment of coronary artery disease and the pleiotropic effects. 2014 Jan-Feb Am J Ther pmid:21975796
Casanova E et al. Omega-3 polyunsaturated fatty acids and proanthocyanidins improve postprandial metabolic flexibility in rat. 2014 Jan-Feb Biofactors pmid:23983179
Harris WS and Schmitt TL Unexpected similarity in RBC DHA and AA levels between bottlenose dolphins and humans. 2014 Feb-Mar Prostaglandins Leukot. Essent. Fatty Acids pmid:24393427
Hua J et al. The resolvin D1 analogue controls maturation of dendritic cells and suppresses alloimmunity in corneal transplantation. 2014 Invest. Ophthalmol. Vis. Sci. pmid:25146982
Navarro-Guillén C et al. Effect of varying dietary levels of LC-PUFA and vegetable oil sources on performance and fatty acids of Senegalese sole post larvae: puzzling results suggest complete biosynthesis pathway from C18 PUFA to DHA. 2014 Comp. Biochem. Physiol. B, Biochem. Mol. Biol. pmid:24120522
Hiram R et al. Resolvin D1 reverses reactivity and Ca2+ sensitivity induced by ET-1, TNF-α, and IL-6 in the human pulmonary artery. 2014 Am. J. Physiol. Heart Circ. Physiol. pmid:25281570
Jung JY et al. Effect of dietary supplementation with omega-3 fatty acid and gamma-linolenic acid on acne vulgaris: a randomised, double-blind, controlled trial. 2014 Acta Derm. Venereol. pmid:24553997
Ooi SY and Andrews JM Commentary: The association between high dietary intake of docosahexaenoic acid and reduced risk of Crohn's disease. 2014 Aliment. Pharmacol. Ther. pmid:24803245
Koppenol A et al. Effect of the ratio of dietary n-3 fatty acids eicosapentaenoic acid and docosahexaenoic acid on broiler breeder performance, egg quality, and yolk fatty acid composition at different breeder ages. 2014 Poult. Sci. pmid:24604849
Gil-Zamorano J et al. Docosahexaenoic acid modulates the enterocyte Caco-2 cell expression of microRNAs involved in lipid metabolism. 2014 J. Nutr. pmid:24623846
Zanfini A et al. GC-EI-MS analysis of fatty acid composition in brain and serum of twitcher mouse. 2014 Lipids pmid:25208498
Gladine C et al. Lipid profiling following intake of the omega 3 fatty acid DHA identifies the peroxidized metabolites F4-neuroprostanes as the best predictors of atherosclerosis prevention. 2014 PLoS ONE pmid:24558496