The Chemical Entities of Biological Interest (ChEBI) ontology is downloaded weekly from EMBL-EBI at http://www.ebi.ac.uk/chebi/. The data is made available under the Creative Commons License (CC BY 3.0, http://creativecommons.org/licenses/by/3.0/). For more information see: Degtyarenko et al. (2008) ChEBI: a database and ontology for chemical entities of biological interest. Nucleic Acids Res. 36, D344–D350.
A quinolone that is quinolin-4(1H)-one bearing cyclopropyl, carboxylic acid, fluoro and piperazin-1-yl substituents at positions 1, 3, 6 and 7, respectively.
ABCC4 protein results in increased export of Ciprofloxacin [Ciprofloxacin results in increased expression of ABCC4 protein] which results in decreased uptake of Ciprofloxacin; Gemfibrozil inhibits the reaction [[Ciprofloxacin results in increased expression of ABCC4 protein] which results in decreased uptake of Ciprofloxacin] Ciprofloxacin results in increased expression of ABCC4 mRNA; Ciprofloxacin results in increased expression of ABCC4 protein
BCL2 protein inhibits the reaction [Ciprofloxacin results in increased localization of BAX protein] Ciprofloxacin results in increased expression of BAX protein
[Etoposide co-treated with Ciprofloxacin] results in decreased expression of BCL2 protein; BCL2 protein inhibits the reaction [Ciprofloxacin results in increased localization of BAX protein]
Ciprofloxacin results in increased cleavage of and results in increased activity of CASP3 protein Ciprofloxacin results in increased activity of CASP3 protein
Ciprofloxacin results in decreased activity of CAT protein Quercetin inhibits the reaction [Ciprofloxacin results in decreased activity of CAT protein]
Ciprofloxacin results in decreased expression of CCNB1 protein Ciprofloxacin results in increased expression of CCNB1 mRNA; Ciprofloxacin results in increased expression of CCNB1 protein
[Ciprofloxacin results in decreased activity of CYP1A2 protein] which results in increased abundance of Clozapine; [Ciprofloxacin results in decreased activity of CYP1A2 protein] which results in increased abundance of norclozapine; Ciprofloxacin inhibits the reaction [CYP1A2 protein affects the metabolism of tizanidine]; Ciprofloxacin inhibits the reaction [CYP1A2 protein results in decreased methylation of Caffeine]
Ciprofloxacin inhibits the reaction [DHODH protein results in increased oxidation of 4,5-dihydroorotic acid] Ciprofloxacin results in decreased activity of DHODH protein
[Atorvastatin co-treated with Ciprofloxacin] results in increased expression of GPT protein; Buthionine Sulfoximine promotes the reaction [[Atorvastatin co-treated with Ciprofloxacin] results in increased expression of GPT protein] Ciprofloxacin results in increased activity of GPT protein
Ciprofloxacin inhibits the reaction [[IL1A protein co-treated with TNF protein co-treated with IFNG protein] results in increased abundance of Nitric Oxide]; wortmannin inhibits the reaction [Ciprofloxacin inhibits the reaction [[IL1A protein co-treated with TNF protein co-treated with IFNG protein] results in increased abundance of Nitric Oxide]] Ciprofloxacin results in decreased expression of IFNG protein [Ciprofloxacin co-treated with Cyclosporine] results in increased expression of IFNG mRNA; Ciprofloxacin inhibits the reaction [irinotecan promotes the reaction [Mitogens results in increased expression of IFNG protein]]
Ciprofloxacin inhibits the reaction [Lipopolysaccharides results in increased secretion of IL10 protein] Ciprofloxacin inhibits the reaction [irinotecan inhibits the reaction [Mitogens results in increased expression of IL10 protein]]
Ciprofloxacin inhibits the reaction [[IL1A protein co-treated with TNF protein co-treated with IFNG protein] results in increased abundance of Nitric Oxide]; wortmannin inhibits the reaction [Ciprofloxacin inhibits the reaction [[IL1A protein co-treated with TNF protein co-treated with IFNG protein] results in increased abundance of Nitric Oxide]]
Ciprofloxacin affects the reaction [[IL1B protein co-treated with TNF protein] results in increased expression of CXCL8 mRNA]; Ciprofloxacin inhibits the reaction [[IL1B protein co-treated with TNF protein] results in increased activity of CEBPD mRNA]; Ciprofloxacin inhibits the reaction [[IL1B protein co-treated with TNF protein] results in increased expression of IL6 mRNA]; Ciprofloxacin inhibits the reaction [IL1B protein results in increased expression of MMP13 mRNA]; Ciprofloxacin inhibits the reaction [IL1B protein results in increased secretion of MMP13 protein]; Ciprofloxacin promotes the reaction [[IL1B protein co-treated with TNF protein] results in increased expression of CXCL8 mRNA]; Ciprofloxacin promotes the reaction [IL1B protein results in increased expression of MMP1 mRNA]; Ciprofloxacin promotes the reaction [IL1B protein results in increased expression of MMP3 mRNA]; Ciprofloxacin promotes the reaction [IL1B protein results in increased secretion of MMP1 protein]; Ciprofloxacin promotes the reaction [IL1B protein results in increased secretion of MMP3 protein] Ciprofloxacin results in decreased expression of IL1B protein Ciprofloxacin inhibits the reaction [irinotecan inhibits the reaction [Lipopolysaccharides results in increased expression of IL1B protein]]
Ciprofloxacin inhibits the reaction [[IL1B protein co-treated with TNF protein] results in increased expression of IL6 mRNA] Ciprofloxacin inhibits the reaction [irinotecan inhibits the reaction [Mitogens results in increased expression of IL6 protein]]; Ciprofloxacin inhibits the reaction [irinotecan promotes the reaction [Mitogens results in increased expression of IL6 protein]]
Ciprofloxacin promotes the reaction [IL1B protein results in increased expression of MMP1 mRNA]; Ciprofloxacin promotes the reaction [IL1B protein results in increased secretion of MMP1 protein] Ciprofloxacin results in increased expression of MMP1 mRNA
Ciprofloxacin inhibits the reaction [IL1B protein results in increased expression of MMP13 mRNA]; Ciprofloxacin inhibits the reaction [IL1B protein results in increased secretion of MMP13 protein] Ciprofloxacin results in decreased expression of MMP13 mRNA
Ciprofloxacin promotes the reaction [IL1B protein results in increased expression of MMP3 mRNA]; Ciprofloxacin promotes the reaction [IL1B protein results in increased secretion of MMP3 protein] Ciprofloxacin results in increased expression of MMP3 mRNA
Ciprofloxacin affects the reaction [[IL1B protein co-treated with TNF protein] results in increased expression of CXCL8 mRNA]; Ciprofloxacin inhibits the reaction [[IL1A protein co-treated with TNF protein co-treated with IFNG protein] results in increased abundance of Nitric Oxide]; Ciprofloxacin inhibits the reaction [[IL1B protein co-treated with TNF protein] results in increased activity of CEBPD mRNA]; Ciprofloxacin inhibits the reaction [[IL1B protein co-treated with TNF protein] results in increased expression of IL6 mRNA]; Ciprofloxacin inhibits the reaction [Lipopolysaccharides results in increased secretion of TNF protein]; Ciprofloxacin promotes the reaction [[IL1B protein co-treated with TNF protein] results in increased expression of CXCL8 mRNA]; wortmannin inhibits the reaction [Ciprofloxacin inhibits the reaction [[IL1A protein co-treated with TNF protein co-treated with IFNG protein] results in increased abundance of Nitric Oxide]] Ciprofloxacin results in decreased expression of TNF protein [Ciprofloxacin co-treated with Cyclosporine] results in decreased expression of TNF mRNA; [irinotecan co-treated with Ciprofloxacin] promotes the reaction [Lipopolysaccharides results in increased expression of TNF protein]; Ciprofloxacin inhibits the reaction [irinotecan promotes the reaction [Mitogens results in increased expression of TNF protein]]
Ciprofloxacin binds to TOP2A protein [Ciprofloxacin binds to TOP2A protein] inhibits the reaction [Etoposide binds to TOP2A protein]; [Ciprofloxacin binds to TOP2A protein] inhibits the reaction [F14512 binds to TOP2A protein]