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:

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 chlortetracycline

MeSH term MeSH ID Detail
Uremia D014511 33 associated lipids
Diarrhea D003967 32 associated lipids
Otitis Media D010033 12 associated lipids
Adenocarcinoma D000230 166 associated lipids
Bacterial Infections D001424 21 associated lipids
Hyperglycemia D006943 21 associated lipids
Inflammation D007249 119 associated lipids
Body Weight D001835 333 associated lipids
Osteomyelitis D010019 10 associated lipids
Corneal Diseases D003316 13 associated lipids
Eyelid Diseases D005141 4 associated lipids
Weight Gain D015430 101 associated lipids
Staphylococcal Infections D013203 15 associated lipids
Myocardial Infarction D009203 21 associated lipids
Anemia, Sickle Cell D000755 34 associated lipids
Clostridium Infections D003015 5 associated lipids
Urinary Tract Infections D014552 11 associated lipids
Cross Infection D003428 9 associated lipids
Leukemia, Experimental D007942 42 associated lipids
Pneumonia D011014 10 associated lipids
Blood Platelet Disorders D001791 12 associated lipids
Escherichia coli Infections D004927 17 associated lipids
Pasteurella Infections D010326 8 associated lipids
Swine Diseases D013553 16 associated lipids
Poultry Diseases D011201 21 associated lipids
Lymphadenitis D008199 8 associated lipids
Skin Diseases, Infectious D012874 7 associated lipids
Subacute Sclerosing Panencephalitis D013344 3 associated lipids
Synovitis D013585 15 associated lipids
Campylobacter Infections D002169 13 associated lipids
Mycoplasma Infections D009175 13 associated lipids
Tooth, Impacted D014095 9 associated lipids
Salmonella Food Poisoning D012478 2 associated lipids
Treponemal Infections D014211 3 associated lipids
Dysentery D004403 4 associated lipids
Anaplasmosis D000712 3 associated lipids
Granuloma, Giant Cell D006101 7 associated lipids
Theileriasis D013801 7 associated lipids
Urethritis D014526 9 associated lipids
Syphilis, Latent D013592 4 associated lipids
Epidermolysis Bullosa D004820 3 associated lipids
Impetigo D007169 3 associated lipids
Pneumonia of Swine, Mycoplasmal D045729 2 associated lipids
Conjunctivitis, Inclusion D003235 4 associated lipids
Pharyngeal Diseases D010608 4 associated lipids
Dry Socket D004368 3 associated lipids
Testicular Hydrocele D006848 3 associated lipids
Dermatitis Herpetiformis D003874 1 associated lipids
Digital Dermatitis D058066 3 associated lipids
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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:

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


Related references are published most in these journals:

Function Cross reference Weighted score Related literatures

What lipids are associated with chlortetracycline?

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 chlortetracycline?

Related references are published most in these journals:


Gene Cross reference Weighted score Related literatures

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).

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 chlortetracycline

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Per page 10 20 50 100 | Total 4669
Authors Title Published Journal PubMed Link
Haghedooren E et al. Silica-based monolithic columns versus conventional particle-packed columns for liquid chromatographic analysis of tetracycline, oxytetracycline and chlortetracycline. 2009 Talanta pmid:19269409
Grasso AN et al. Optical properties of metacycline, oxytetracycline and chlortetracycline europium complexes in the presence of hydrogen peroxide. 2009 J Fluoresc pmid:19184377
Arikan OA et al. Management of antibiotic residues from agricultural sources: use of composting to reduce chlortetracycline residues in beef manure from treated animals. 2009 J. Hazard. Mater. pmid:18829164
Hakuta T et al. Practical method for the detection of tetracyclines in honey by HPLC and derivative UV-Vis spectra. 2009 Anal Sci pmid:19745545
Pons-Rejraji H et al. Cryopreservation affects bovine sperm intracellular parameters associated with capacitation and acrosome exocytosis. 2009 Reprod. Fertil. Dev. pmid:19383259
Sun JP et al. [Combined effect of antibiotics on anaerobic digestion of piggery wastewater]. 2009 Huan Jing Ke Xue pmid:19927815
Chen G et al. [Oxidative kinetics of chlortetracycline by manganese dioxide]. 2009 Huan Jing Ke Xue pmid:19927839
Farkas MH et al. Development of a rapid biolistic assay to determine changes in relative levels of intracellular calcium in leaves following tetracycline uptake by pinto bean plants. 2009 Analyst pmid:20448925
Finkel S and Sullivan BH Primary atypical pneumonia: an analysis of one hundred twenty-three cases; report of one fatality; review of fourteen cases treated with aureomycin. 1952. 2009 Chest pmid:20162754
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Shintani M et al. Conjugative transfer of the IncP-7 carbazole degradative plasmid, pCAR1, in river water samples. 2008 Biotechnol. Lett. pmid:17851640
Arikan OA Degradation and metabolization of chlortetracycline during the anaerobic digestion of manure from medicated calves. 2008 J. Hazard. Mater. pmid:18353545
Adachi J et al. Effects of protein phosphatase inhibitor calyculin a on the postacrosomal protein serine/threonine phosphorylation state and acrosome reaction in boar spermatozoa incubated with a cAMP analog. 2008 J. Reprod. Dev. pmid:18305366
Islam KM et al. Compatibility of a combination of tiamulin and chlortetracycline with salinomycin in feed during a pulsed medication program coadministration in broilers. 2008 Poult. Sci. pmid:19038809
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Knuckley B et al. Profiling Protein Arginine Deiminase 4 (PAD4): a novel screen to identify PAD4 inhibitors. 2008 Bioorg. Med. Chem. pmid:17964793
Ruengsitagoon W Reverse flow injection spectrophotometric determination of iron(III) using chlortetracycline reagent. 2008 Talanta pmid:18371775
Goswami PS et al. Effect of plasmid pTENT2 on severity of porcine post-weaning diarrhoea induced by an O149 enterotoxigenic Escherichia coli. 2008 Vet. Microbiol. pmid:18502055
Piddock LJ et al. Persistence of Campylobacter species, strain types, antibiotic resistance and mechanisms of tetracycline resistance in poultry flocks treated with chlortetracycline. 2008 J. Antimicrob. Chemother. pmid:18467308
Li J et al. Determination of tetracyclines residues in honey by on-line solid-phase extraction high-performance liquid chromatography. 2008 Talanta pmid:18585209
Islam KM et al. Compatibility of a combination of tiamulin plus chlortetracycline with salinomycin in feed during a long-term co-administration in broilers. 2008 Poult. Sci. pmid:18648050
Platt TM et al. Antimicrobial susceptibility of enteric bacteria recovered from feedlot cattle administered chlortetracycline in feed. 2008 Am. J. Vet. Res. pmid:18672961
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Kobashi Y et al. Reduction of chlortetracycline-resistant Escherichia coli in weaned piglets fed fermented liquid feed. 2008 Anaerobe pmid:18708150
Wagner BA et al. Effect of antimicrobial dosage regimen on Salmonella and Escherichia coli isolates from feeder swine. 2008 Appl. Environ. Microbiol. pmid:18223115
Bogialli S et al. A rapid method based on hot water extraction and liquid chromatography-tandem mass spectrometry for analyzing tetracycline antibiotic residues in cheese. 2007 May-Jun J AOAC Int pmid:17580641
Cerella C et al. Sequential phases of Ca2+ alterations in pre-apoptotic cells. 2007 Apoptosis pmid:17899381
George S et al. Lectin binding profile of the small intestine of five-week-old pigs in response to the use of chlortetracycline as a growth promotant and under gnotobiotic conditions. 2007 J. Anim. Sci. pmid:17400973
Schneider MJ et al. Simultaneous multiresidue determination of tetracyclines and fluoroquinolones in catfish muscle using high performance liquid chromatography with fluorescence detection. 2007 Anal. Chim. Acta pmid:17386722
Tournas VH et al. The identification of antibacterial compounds for the development of enhanced media for the detection of foodborne fungi. 2007 Int. J. Food Microbiol. pmid:17574697
Farkas M et al. Determination of enzyme kinetics and glutathione conjugates of chlortetracycline and chloroacetanilides using liquid chromatography-mass spectrometry. 2007 Analyst pmid:17592585
Farkas MH et al. Chlortetracycline detoxification in maize via induction of glutathione S-transferases after antibiotic exposure. 2007 Environ. Sci. Technol. pmid:17593756
Cerella C et al. Analysis of calcium changes in endoplasmic reticulum during apoptosis by the fluorescent indicator chlortetracycline. 2007 Ann. N. Y. Acad. Sci. pmid:17446492
Funk J et al. Evaluation of stocking density and subtherapeutic chlortetracycline on Salmonella enterica subsp. enterica shedding in growing swine. 2007 Vet. Microbiol. pmid:17482387
Yamauchi Y and Ward MA Preservation of ejaculated mouse spermatozoa from fertile C57BL/6 and infertile Hook1/Hook1 mice collected from the uteri of mated females. 2007 Biol. Reprod. pmid:17314312
Pils JR and Laird DA Sorption of tetracycline and chlortetracycline on K- and Ca-saturated soil clays, humic substances, and clay-humic complexes. 2007 Environ. Sci. Technol. pmid:17410786
Hardie J and Leckstein P Antibiotics, primary symbionts and wing polyphenism in three aphid species. 2007 Insect Biochem. Mol. Biol. pmid:17628287
Bergqvist AS et al. Heparin and dermatan sulphate induced capacitation of frozen-thawed bull spermatozoa measured by merocyanine-540. 2007 Zygote pmid:17637103
Muñoz-Aguayo J et al. Evaluating the effects of chlortetracycline on the proliferation of antibiotic-resistant bacteria in a simulated river water ecosystem. 2007 Appl. Environ. Microbiol. pmid:17616621
Vega D et al. Voltammetry and amperometric detection of tetracyclines at multi-wall carbon nanotube modified electrodes. 2007 Anal Bioanal Chem pmid:17671781
Dinç E et al. Comparative spectral analysis of veterinary powder product by continuous wavelet and derivative transforms. 2007 Spectrochim Acta A Mol Biomol Spectrosc pmid:17320471
Ghosh S and LaPara TM The effects of subtherapeutic antibiotic use in farm animals on the proliferation and persistence of antibiotic resistance among soil bacteria. 2007 ISME J pmid:18043630
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Stumpf JD et al. Amplification of lac cannot account for adaptive mutation to Lac+ in Escherichia coli. 2007 J. Bacteriol. pmid:17209030
Davis JG et al. Antibiotic Transport via Runoff and Soil Loss. 2006 Nov-Dec J. Environ. Qual. pmid:17071896
Han S et al. Determination of tetracycline, chlortetracycline and oxytetracycline by flow injection with inhibitory chemiluminescence detection using copper(II) as a probe ion. 2006 Mar-Apr Luminescence pmid:16416504
Allaire SE et al. Sorption kinetics of chlortetracyline and tylosin on sandy loam and heavy clay soils. 2006 Jul-Aug J. Environ. Qual. pmid:16738380