oxytetracycline

oxytetracycline is a lipid of Polyketides (PK) class. Oxytetracycline is associated with abnormalities such as Infection, X-linked centronuclear myopathy, Bacterial Infections, Heart failure and Onchocerciasis. The involved functions are known as Anabolism, physiological aspects, Transcription, Genetic, Fermentation and Transcriptional Activation. Oxytetracycline often locates in Chromosomes, Flank (surface region), Entire bony skeleton, Bone Marrow and Body tissue. The associated genes with oxytetracycline are Polypeptides, Homologous Gene, Gene Clusters, Locus and CYCS gene. The related lipids are LH 1 and Lipid Peroxides. The related experimental models are Disease model.

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Introduction

To understand associated biological information of oxytetracycline, 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 oxytetracycline?

oxytetracycline is suspected in Infection, Helminthiasis, Nodule, Bacterial Infections, Yeast infection, pathologic fistula 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 oxytetracycline

MeSH term MeSH ID Detail
Body Weight D001835 333 associated lipids
Adenocarcinoma D000230 166 associated lipids
Weight Gain D015430 101 associated lipids
Diabetes Mellitus D003920 90 associated lipids
Colitis D003092 69 associated lipids
Mammary Neoplasms, Experimental D008325 67 associated lipids
Weight Loss D015431 56 associated lipids
Hypersensitivity, Delayed D006968 43 associated lipids
Arthritis D001168 41 associated lipids
Acne Vulgaris D000152 35 associated lipids
Per page 10 20 50 100 | Total 137

PubChem Associated disorders and diseases

What pathways are associated with oxytetracycline

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 oxytetracycline?

Related references are published most in these journals:

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


Related references are published most in these journals:

Function Cross reference Weighted score Related literatures

What lipids are associated with oxytetracycline?

Related references are published most in these journals:

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What genes are associated with oxytetracycline?

Related references are published most in these journals:


Gene Cross reference Weighted score Related literatures

What common seen animal models are associated with oxytetracycline?

Disease model

Disease model are used in the study 'A molecular ecological approach to the detection and designation of the etiological agents of a model polymicrobial disease.' (Antiabong JF 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 oxytetracycline

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Authors Title Published Journal PubMed Link
Wang X et al. Effects of oxytetracycline on archaeal community, and tetracycline resistance genes in anaerobic co-digestion of pig manure and wheat straw. 2016 Environ Technol pmid:27115735
Mosleh N et al. Comparative evaluation of therapeutic efficacy of sulfadiazine-trimethoprim, oxytetracycline, enrofloxacin and florfenicol on Staphylococcus aureus-induced arthritis in broilers. 2016 Br. Poult. Sci. pmid:27111299
Wang W et al. Development of a Synthetic Oxytetracycline-Inducible Expression System for Streptomycetes Using de Novo Characterized Genetic Parts. 2016 ACS Synth Biol pmid:27100123
Ma T et al. Toxicity of OTC to Ipomoea aquatica Forsk. and to microorganisms in a long-term sewage-irrigated farmland soil. 2016 Environ Sci Pollut Res Int pmid:27083912
Liu Y et al. Quantitative assessment on the contribution of direct photolysis and radical oxidation in photochemical degradation of 4-chlorophenol and oxytetracycline. 2016 Environ Sci Pollut Res Int pmid:27055892
Leal JF et al. Use of sunlight to degrade oxytetracycline in marine aquaculture's waters. 2016 Environ. Pollut. pmid:27049790
Turker G et al. Changes in microbial community structures due to varying operational conditions in the anaerobic digestion of oxytetracycline-medicated cow manure. 2016 Appl. Microbiol. Biotechnol. pmid:27026176
Yuan F et al. Three-Dimensional Graphene Supported Bimetallic Nanocomposites with DNA Regulated-Flexibly Switchable Peroxidase-Like Activity. 2016 ACS Appl Mater Interfaces pmid:27018504
Coban H et al. Degradation of oxytetracycline and its impacts on biogas-producing microbial community structure. 2016 Bioprocess Biosyst Eng pmid:26974525
Soler L et al. Growth promotion in pigs by oxytetracycline coincides with down regulation of serum inflammatory parameters and of hibernation-associated protein HP-27. 2016 Electrophoresis pmid:26914286
Dieste-Pérez L et al. Efficacy of antibiotic treatment and test-based culling strategies for eradicating brucellosis in commercial swine herds. 2016 Prev. Vet. Med. pmid:26899897
Hosseini M et al. A fluorescent aptasensor for sensitive analysis oxytetracycline based on silver nanoclusters. 2016 Luminescence pmid:26899385
Rocha Rdos S et al. Multidrug-resistant Vibrio associated with an estuary affected by shrimp farming in Northeastern Brazil. 2016 Mar. Pollut. Bull. pmid:26876560
Song L et al. Sulfamethoxazole, tetracycline and oxytetracycline and related antibiotic resistance genes in a large-scale landfill, China. 2016 Sci. Total Environ. pmid:26874755
Berger D et al. Mesostructured silica and aluminosilicate carriers for oxytetracycline delivery systems. 2016 Int J Pharm pmid:26861688
Liu J et al. Soil-borne reservoirs of antibiotic-resistant bacteria are established following therapeutic treatment of dairy calves. 2016 Environ. Microbiol. pmid:26486254
Rodríguez MP et al. Simple and clean determination of tetracyclines by flow injection analysis. 2016 Spectrochim Acta A Mol Biomol Spectrosc pmid:26344484
Becker MC and Keller A Laboratory rearing of solitary bees and wasps. 2016 Insect Sci. pmid:26033964
Kim SY et al. Occurrence and diversity of tetracycline resistance genes in the agricultural soils of South Korea. 2016 Environ Sci Pollut Res Int pmid:27638788
Shang Z et al. Fungal Biotransformation of Tetracycline Antibiotics. 2016 J. Org. Chem. pmid:27419475
Li Y et al. Dissipation kinetics of oxytetracycline, tetracycline, and chlortetracycline residues in soil. 2016 Environ Sci Pollut Res Int pmid:27072037
Guidetti G et al. In Vitro Effects of Some Botanicals with Anti-Inflammatory and Antitoxic Activity. 2016 J Immunol Res pmid:27597982
Hu J and Wang N Evaluation of the Spatiotemporal Dynamics of Oxytetracycline and Its Control Effect Against Citrus Huanglongbing via Trunk Injection. 2016 Phytopathology pmid:27482624
Tarazi YH and Al-Ani FK An outbreak of dermatophilosis and caseous lymphadenitis mixed infection in camels (Camelus dromedaries) in Jordan. 2016 J Infect Dev Ctries pmid:27249526
Gargallo-Garriga A et al. Shifts in plant foliar and floral metabolomes in response to the suppression of the associated microbiota. 2016 BMC Plant Biol. pmid:27048394
Han H et al. Impact of 4-epi-oxytetracycline on the gut microbiota and blood metabolomics of Wistar rats. 2016 Sci Rep pmid:26976662
Di Cerbo A et al. Toxicological Implications and Inflammatory Response in Human Lymphocytes Challenged with Oxytetracycline. 2016 J. Biochem. Mol. Toxicol. pmid:26537863
DeLorenzo ME et al. Exposure of the grass shrimp, Palaemonetes pugio, to antimicrobial compounds affects associated Vibrio bacterial density and development of antibiotic resistance. 2016 Environ. Toxicol. pmid:25348372
Hu Z et al. Short-term performance of enhanced biological phosphorus removal (EBPR) system exposed to erythromycin (ERY) and oxytetracycline (OTC). 2016 Bioresour. Technol. pmid:27631889
Gao M et al. Avoidance behavior of Eisenia fetida in oxytetracycline- and heavy metal-contaminated soils. 2016 Environ. Toxicol. Pharmacol. pmid:27665306
Yin S et al. Heterologous expression of oxytetracycline biosynthetic gene cluster in Streptomyces venezuelae WVR2006 to improve production level and to alter fermentation process. 2016 Appl. Microbiol. Biotechnol. pmid:27709288
Li J and Zhang H Adsorption-desorption of oxytetracycline on marine sediments: Kinetics and influencing factors. 2016 Chemosphere pmid:27588574
Gorden PJ et al. A study to examine the relationship between metritis severity and depletion of oxytetracycline in plasma and milk after intrauterine infusion. 2016 J. Dairy Sci. pmid:27522419
Chemello G et al. Oxytetracycline Delivery in Adult Female Zebrafish by Iron Oxide Nanoparticles. 2016 Zebrafish pmid:27509213
Krumme U and Bingel F Tetracycline marks visible in Baltic cod Gadus morhua otoliths stored for 40 years. 2016 J. Fish Biol. pmid:27502040
Yao Z et al. Proteomic Analysis Reveals That Metabolic Flows Affect the Susceptibility of Aeromonas hydrophila to Antibiotics. 2016 Sci Rep pmid:27991550
Restifo MM et al. Cavitary effusion associated with Anaplasma phagocytophilum infection in 2 equids. 2015 Mar-Apr J. Vet. Intern. Med. pmid:25711458
Gberindyer AF et al. Pharmacokinetics of Short- and Long-acting Formulations of Oxytetracycline After Intramuscular Administration in Chickens. 2015 J. Avian Med. Surg. pmid:26771319
Oultram J et al. Effects of antibiotics (oxytetracycline, florfenicol or tulathromycin) on neonatal calves' faecal microbial diversity. 2015 Vet. Rec. pmid:26645721
Shang Z et al. Viridicatumtoxins: Expanding on a Rare Tetracycline Antibiotic Scaffold. 2015 J. Org. Chem. pmid:26605854
Fernández ML et al. A single exposure of sediment sulphate-reducing bacteria to oxytetracycline concentrations relevant to aquaculture enduringly disturbed their activity, abundance and community structure. 2015 J. Appl. Microbiol. pmid:25973855
Attaie R et al. Short communication: Determination of withdrawal time for oxytetracycline in different types of goats for milk consumption. 2015 J. Dairy Sci. pmid:25958275
Miranda CD et al. Scallop larvae hatcheries as source of bacteria carrying genes encoding for non-enzymatic phenicol resistance. 2015 Mar. Pollut. Bull. pmid:25956439
Zhou B et al. Adsorption and oxidation of SOâ‚‚in a fixed-bed reactor using activated carbon produced from oxytetracycline bacterial residue and impregnated with copper. 2015 J Air Waste Manag Assoc pmid:25947052
Shentu JL et al. Effect from low-level exposure of oxytetracycline on abundance of tetracycline resistance genes in arable soils. 2015 Environ Sci Pollut Res Int pmid:25925140
Botelho RG et al. Genotoxic responses of juvenile tilapia (Oreochromis niloticus) exposed to florfenicol and oxytetracycline. 2015 Chemosphere pmid:25898970
Lu C et al. Magnetic-nanobead-based competitive enzyme-linked aptamer assay for the analysis of oxytetracycline in food. 2015 Anal Bioanal Chem pmid:25855149
Li RQ et al. Comparative pharmacokinetics of oxytetracycline in blunt-snout bream (Megalobrama amblycephala) with single and multiple-dose oral administration. 2015 Fish Physiol. Biochem. pmid:25822587
Liu Y et al. The effect of aging on sequestration and bioaccessibility of oxytetracycline in soils. 2015 Environ Sci Pollut Res Int pmid:25721525
Fernández-Calviño D et al. Competitive adsorption/desorption of tetracycline, oxytetracycline and chlortetracycline on two acid soils: Stirred flow chamber experiments. 2015 Chemosphere pmid:25973861