chlortetracycline

chlortetracycline is a lipid of Polyketides (PK) class. Chlortetracycline is associated with abnormalities such as Granulomatous Disease, Chronic, Infection, Ischemia, Cerebral Ischemia and Cerebral Infarction. The involved functions are known as Regulation, Binding (Molecular Function), Agent, Stimulus and Process. Chlortetracycline often locates in Protoplasm, Plasma membrane, Membrane, Cytoplasm and specific granule. The associated genes with chlortetracycline are FPR1 gene, P4HTM gene, Homologous Gene, HIST1H1C gene and Microbiome. The related lipids are Lysophosphatidylcholines, Sterols, dilauroyl lecithin, seminolipid and Total cholesterol. The related experimental models are Mouse Model.

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Introduction

To understand associated biological information of chlortetracycline, 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 chlortetracycline?

chlortetracycline is suspected in Ischemia, Cerebral Ischemia, Cerebral Infarction, Granulomatous Disease, Chronic, Infection, Antibiotic resistant infection and other diseases in descending order of the highest number of associated sentences.

Related references are mostly published in these journals:

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Possible diseases from mapped MeSH terms on references

We collected disease MeSH terms mapped to the references associated with chlortetracycline

PubChem Associated disorders and diseases

What pathways are associated with chlortetracycline

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 chlortetracycline?

Related references are published most in these journals:

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What functions are associated with chlortetracycline?


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What lipids are associated with chlortetracycline?

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What genes are associated with chlortetracycline?

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What common seen animal models are associated with chlortetracycline?

Mouse Model

Mouse Model are used in the study 'Chlortetracycline and demeclocycline inhibit calpains and protect mouse neurons against glutamate toxicity and cerebral ischemia.' (Jiang SX et al., 2005).

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NCBI Entrez Crosslinks

All references with chlortetracycline

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Authors Title Published Journal PubMed Link
Wan Y et al. [Effect of soil organic matter and cadmium (II) on adsorption and desorption of chlortetracycline in soil]. 2010 Huan Jing Ke Xue pmid:21360898
Alexander TW et al. Farm-to-fork characterization of Escherichia coli associated with feedlot cattle with a known history of antimicrobial use. 2010 Int. J. Food Microbiol. pmid:19963297
Reinbold JB et al. Plasma pharmacokinetics of oral chlortetracycline in group fed, ruminating, Holstein steers in a feedlot setting. 2010 J. Vet. Pharmacol. Ther. pmid:20444029
Giannetti L et al. Tetracycline residues in royal jelly and honey by liquid chromatography tandem mass spectrometry: validation study according to Commission Decision 2002/657/EC. 2010 Anal Bioanal Chem pmid:20607522
Ji K et al. Effects of sulfathiazole, oxytetracycline and chlortetracycline on steroidogenesis in the human adrenocarcinoma (H295R) cell line and freshwater fish Oryzias latipes. 2010 J. Hazard. Mater. pmid:20630653
Bohnert JA et al. Optimized Nile Red efflux assay of AcrAB-TolC multidrug efflux system shows competition between substrates. 2010 Antimicrob. Agents Chemother. pmid:20606071
Breininger E et al. Capacitation inducers act through diverse intracellular mechanisms in cryopreserved bovine sperm. 2010 Theriogenology pmid:20580081
Brosche S and Backhaus T Toxicity of five protein synthesis inhibiting antibiotics and their mixture to limnic bacterial communities. 2010 Aquat. Toxicol. pmid:20655118
Teixeira Ldos S et al. Enhancement on the Europium emission band of Europium chlortetracycline complex in the presence of LDL. 2010 Anal. Biochem. pmid:20117070
Cháfer-Pericás C et al. Immunochemical determination of oxytetracycline in fish: comparison between enzymatic and time-resolved fluorometric assays. 2010 Anal. Chim. Acta pmid:20171317
Tylová T et al. High-throughput analysis of tetracycline antibiotics and their epimers in liquid hog manure using Ultra Performance Liquid Chromatography with UV detection. 2010 Chemosphere pmid:20004932
Redden RR et al. Effects of late gestation supplementation of rumen undegradable protein, vitamin E, zinc, and chlortetracycline to ewes on indices of immune transfer and productivity. 2010 J. Anim. Sci. pmid:19966170
Lin XM et al. A novel negative regulation mechanism of bacterial outer membrane proteins in response to antibiotic resistance. 2010 J. Proteome Res. pmid:20718490
Sharma R et al. Selected antimicrobial resistance during composting of manure from cattle administered sub-therapeutic antimicrobials. 2009 Mar-Apr J. Environ. Qual. pmid:19202027
Jones M et al. Outbreak of Streptococcus equi ssp. zooepidemicus polyserositis in an alpaca herd. 2009 Jan-Feb J. Vet. Intern. Med. pmid:19175745
Baqi Y et al. High-affinity, non-nucleotide-derived competitive antagonists of platelet P2Y12 receptors. 2009 J. Med. Chem. pmid:19463000
Arikan O et al. Minimally managed composting of beef manure at the pilot scale: effect of manure pile construction on pile temperature profiles and on the fate of oxytetracycline and chlortetracycline. 2009 Bioresour. Technol. pmid:19450976
Werner JJ et al. Photolysis of chlortetracycline on a clay surface. 2009 J. Agric. Food Chem. pmid:19591472
Brooks SP et al. In-feed administered sub-therapeutic chlortetracycline alters community composition and structure but not the abundance of community resistance determinants in the fecal flora of the rat. 2009 Anaerobe pmid:19655426
Nanduri B et al. The transcriptional response of Pasteurella multocida to three classes of antibiotics. 2009 BMC Genomics pmid:19607655