Thromboxane b2

Thromboxane b2 is a lipid of Fatty Acyls (FA) class. Thromboxane b2 is associated with abnormalities such as endothelial dysfunction, Diabetes Mellitus, Non-Insulin-Dependent, Diabetes Mellitus, Ischemia and Thrombocytosis. The involved functions are known as Platelet Activation, Excretory function, Anabolism, Inflammation and mRNA Expression. Thromboxane b2 often locates in Endothelium, Hepatic and Microsomes, Liver. The associated genes with Thromboxane b2 are PTGS2 gene, prothrombin fragment 2 and CCL14 wt Allele.

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Introduction

To understand associated biological information of Thromboxane b2, 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 Thromboxane b2?

Thromboxane b2 is suspected in endothelial dysfunction, Diabetes Mellitus, Non-Insulin-Dependent, Diabetes Mellitus, Ischemia, Thrombocytosis, Acute Coronary Syndrome 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 Thromboxane b2

MeSH term MeSH ID Detail
Diseases in Twins D004200 4 associated lipids
Glomerulosclerosis, Focal Segmental D005923 4 associated lipids
Hyperaldosteronism D006929 4 associated lipids
Chediak-Higashi Syndrome D002609 4 associated lipids
Chest Pain D002637 4 associated lipids
Heart Valve Diseases D006349 4 associated lipids
Placenta Diseases D010922 5 associated lipids
Intracranial Embolism and Thrombosis D002542 5 associated lipids
Hypoalphalipoproteinemias D052456 5 associated lipids
Facial Pain D005157 5 associated lipids
Bartter Syndrome D001477 5 associated lipids
Abortion, Habitual D000026 5 associated lipids
Mastocytosis D008415 5 associated lipids
Aortic Aneurysm, Abdominal D017544 5 associated lipids
Hypercapnia D006935 5 associated lipids
Respiration Disorders D012120 5 associated lipids
Asthenia D001247 5 associated lipids
Purpura, Schoenlein-Henoch D011695 5 associated lipids
Sclerosis D012598 5 associated lipids
Pulmonary Embolism D011655 5 associated lipids
Ductus Arteriosus, Patent D004374 5 associated lipids
beta-Thalassemia D017086 5 associated lipids
Granulomatosis with Polyangiitis D014890 5 associated lipids
Thrombophilia D019851 6 associated lipids
Periapical Periodontitis D010485 6 associated lipids
Hyperlipoproteinemia Type IV D006953 6 associated lipids
Glomerulonephritis, Membranous D015433 6 associated lipids
Coronary Stenosis D023921 6 associated lipids
Sneezing D012912 6 associated lipids
Thromboembolism D013923 6 associated lipids
Bronchitis D001991 6 associated lipids
Intermittent Claudication D007383 6 associated lipids
Purpura, Thrombotic Thrombocytopenic D011697 6 associated lipids
Infant, Premature, Diseases D007235 7 associated lipids
Biliary Tract Neoplasms D001661 7 associated lipids
Femoral Fractures D005264 7 associated lipids
Raynaud Disease D011928 7 associated lipids
Bronchopneumonia D001996 7 associated lipids
Tachycardia D013610 7 associated lipids
Dyslipidemias D050171 7 associated lipids
Keratitis D007634 7 associated lipids
Glomerulonephritis, IGA D005922 7 associated lipids
Disseminated Intravascular Coagulation D004211 7 associated lipids
Coronary Thrombosis D003328 7 associated lipids
Varicose Veins D014648 7 associated lipids
Behcet Syndrome D001528 7 associated lipids
Agranulocytosis D000380 7 associated lipids
Rhinitis, Allergic, Seasonal D006255 7 associated lipids
Aortic Aneurysm D001014 8 associated lipids
Lupus Nephritis D008181 8 associated lipids
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PubChem Associated disorders and diseases

What pathways are associated with Thromboxane b2

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 Thromboxane b2?

Related references are published most in these journals:

Location Cross reference Weighted score Related literatures
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What functions are associated with Thromboxane b2?


Related references are published most in these journals:

Function Cross reference Weighted score Related literatures

What lipids are associated with Thromboxane b2?

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

What genes are associated with Thromboxane b2?

Related references are published most in these journals:


Gene Cross reference Weighted score Related literatures

What common seen animal models are associated with Thromboxane b2?

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

NCBI Entrez Crosslinks

All references with Thromboxane b2

Download all related citations
Per page 10 20 50 100 | Total 6367
Authors Title Published Journal PubMed Link
Canales A et al. The effect of consuming meat enriched in walnut paste on platelet aggregation and thrombogenesis varies in volunteers with different apolipoprotein A4 genotype. 2010 Sep-Oct Nutr Hosp pmid:21336431
Armstrong PC et al. Reduction of platelet thromboxane A2 production ex vivo and in vivo by clopidogrel therapy. 2010 J. Thromb. Haemost. pmid:19995405
Carroll RC et al. Post interventional cardiology urinary thromboxane correlates with PlateletMapping detected aspirin resistance. 2010 Thromb. Res. pmid:19962724
Dragani A et al. Clinical and laboratory phenotype associated with the aspirin-like defect. 2010 Br. J. Haematol. pmid:19814736
Maddens BE et al. Validation of immunoassays for the candidate renal markers C-reactive protein, immunoglobulin G, thromboxane B2 and retinol binding protein in canine urine. 2010 Vet. Immunol. Immunopathol. pmid:19815297
Derhaschnig U et al. Effects of aspirin and NO-aspirin (NCX 4016) on platelet function and coagulation in human endotoxemia. 2010 Platelets pmid:20608787
Boizel R et al. Regulation of oxidative stress and inflammation by glycaemic control: evidence for reversible activation of the 5-lipoxygenase pathway in type 1, but not in type 2 diabetes. 2010 Diabetologia pmid:20535444
Parmar JH et al. Significant prostacyclin/thromboxane level imbalance after lower limb arterial angioplasty: a possible platelet function alteration. 2010 J Vasc Interv Radiol pmid:20800778
Kawabata K et al. Inhibition of secretory phospholipase A2 activity attenuates acute cardiogenic pulmonary edema induced by isoproterenol infusion in mice after myocardial infarction. 2010 J. Cardiovasc. Pharmacol. pmid:20625313
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De la Cruz JP et al. Differences in the in vitro antiplatelet effect of dexibuprofen, ibuprofen, and flurbiprofen in human blood. 2010 Anesth. Analg. pmid:21048099
Renda G et al. Inconsistency of different methods for assessing ex vivo platelet function: relevance for the detection of aspirin resistance. 2010 Haematologica pmid:21123440
Iagoda AV and Gladkikh NN [Thromboxane-prostacyclin balance and platelet aggregability in patients with minor cardiac abnormalities]. 2010 Ter. Arkh. pmid:21086621
Fukushima H et al. Mechanisms underlying early development of pulmonary vascular obstructive disease in Down syndrome: An imbalance in biosynthesis of thromboxane A2 and prostacyclin. 2010 Am. J. Med. Genet. A pmid:20583254
Huang HC et al. Simvastatin effects on portal-systemic collaterals of portal hypertensive rats. 2010 J. Gastroenterol. Hepatol. pmid:20659230
Ge Y et al. [Effect of ulinastatin on thromboxane Bâ‚‚ and deep vein thrombosis in elderly patients after hip joint replacement]. 2010 Zhong Nan Da Xue Xue Bao Yi Xue Ban pmid:21200097
Ferrante E et al. Determinants of thromboxane biosynthesis in rheumatoid arthritis: Role of RAGE and oxidant stress. 2010 Free Radic. Biol. Med. pmid:20541603
Antonino MJ et al. Antiplatelet effects of aspirin with phytosterols: comparison with non-enteric coated aspirin alone. 2010 Thromb. Res. pmid:19446864
Iwasaki W et al. Changes in the fatty acid composition of the liver with the administration of N-3 polyunsaturated fatty acids and the effects on warm ischemia/reperfusion injury in the rat liver. 2010 Shock pmid:19543146
Yen PL et al. Effects of deep-frying oil on blood pressure and oxidative stress in spontaneously hypertensive and normotensive rats. 2010 Nutrition pmid:19592221