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rdf:type
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http://linked.open...gbank/description
| - An antibiotic produced by Streptomyces lincolnensis var. lincolnensis. It has been used in the treatment of staphylococcal, streptococcal, and Bacteroides fragilis infections. [PubChem] (en)
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http://linked.open...y/drugbank/dosage
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http://linked.open...gy/drugbank/group
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http://linked.open...drugbank/halfLife
| - The biological half-life after intramuscular or intravenous administration is 5.4 ± 1.0 hours. The serum half-life of lincomycin may be prolonged in patients with severe impairment of renal function compared to patients with normal renal function. In patients with abnormal hepatic function, serum half-life may be twofold longer than in patients with normal hepatic function. (en)
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http://linked.open...ugbank/indication
| - Lincomycin is an antibiotic used in the treatment of staphylococcal, streptococcal, and <i>Bacteroides fragilis</i> infections. (en)
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sameAs
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Title
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adms:identifier
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http://linked.open...mechanismOfAction
| - Lincomycin inhibits protein synthesis in susceptible bacteria by binding to the 50 S subunits of bacterial ribosomes and preventing peptide bond formation upon transcription. It is usually considered bacteriostatic, but may be bactericidal in high concentrations or when used against highly susceptible organisms. (en)
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http://linked.open...drugbank/packager
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http://linked.open...outeOfElimination
| - Urinary excretion after this dose ranges from 1.8 to 24.8 percent (mean: 3 percent). Tissue level studies indicate that bile is an important route of excretion. (en)
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http://linked.open.../drugbank/synonym
| - LCM (en)
- Lincomycine (en)
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http://linked.open...k/foodInteraction
| - Take on an empty stomach, food decreases absorption. (en)
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http://linked.open...nk/proteinBinding
| - Protein binding decreases with increased plasma concentrations. Range, 28 to 86% (average, 70 to 75%). Albumin is not thought to be the primary binding component. (en)
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http://linked.open...ogy/drugbank/salt
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http://linked.open...ynthesisReference
| - Alexander D. Argoudelis, David W. Stroman, "Process of producing lincomycin nucleotides." U.S. Patent US4464466, issued June, 1972. (en)
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foaf:page
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http://linked.open...ugbank/IUPAC-Name
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http://linked.open...gy/drugbank/InChI
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http://linked.open...Molecular-Formula
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http://linked.open.../Molecular-Weight
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http://linked.open...noisotopic-Weight
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http://linked.open...y/drugbank/SMILES
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http://linked.open.../Water-Solubility
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http://linked.open...ogy/drugbank/logP
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http://linked.open...ogy/drugbank/logS
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http://linked.open...l/drug/hasATCCode
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http://linked.open...nd-Acceptor-Count
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http://linked.open...-Bond-Donor-Count
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http://linked.open...drugbank/InChIKey
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http://linked.open...urface-Area--PSA-
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http://linked.open...nk/Polarizability
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http://linked.open...bank/Refractivity
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http://linked.open...atable-Bond-Count
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http://linked.open...ugbank/absorption
| - Rapidly absorbed from the gastrointestinal tract following oral administration. Approximately 20 to 30% absorbed orally in fasting state; absorption decreased when taken with food. (en)
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http://linked.open.../affectedOrganism
| - Enteric bacteria and other eubacteria (en)
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http://linked.open...casRegistryNumber
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http://linked.open...drugbank/category
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http://linked.open...gbank/containedIn
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http://linked.open...k/Bioavailability
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http://linked.open...bank/Ghose-Filter
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http://linked.open...nk/MDDR-Like-Rule
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http://linked.open...k/Number-of-Rings
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http://linked.open...siological-Charge
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http://linked.open...bank/Rule-of-Five
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http://linked.open...tional-IUPAC-Name
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http://linked.open...strongest-acidic-
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http://linked.open...-strongest-basic-
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