clarithromycin

clarithromycin is a lipid of Polyketides (PK) class. Clarithromycin is associated with abnormalities such as Helicobacter Pylori Infection, Infection, Coinfection, Gastritis and Peptic Ulcer. The involved functions are known as Point Mutation, Increased Sensitivy, Bacterial resistance, urease activity and Mutation. Clarithromycin often locates in Blood, Gastric mucosa, Biopsy sample, Respiratory System and Entire gastrointestinal tract. The associated genes with clarithromycin are Genes, rRNA, rRNA Operon, Genome, HM13 gene and GDF15 gene. The related lipids are 9,11-linoleic acid, Steroids, Lysophosphatidylcholines, Lipopolysaccharides and 4-hydroxycholesterol. The related experimental models are Mouse Model, Knock-out and Experimental Pneumococcal Meningitis.

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Introduction

To understand associated biological information of clarithromycin, 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 clarithromycin?

clarithromycin is suspected in Infection, Helicobacter Pylori Infection, Pneumonia, Respiratory Tract Infections, PARKINSON DISEASE, LATE-ONSET, Community acquired pneumonia 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 clarithromycin

MeSH term MeSH ID Detail
Myxoma D009232 1 associated lipids
Kleine-Levin Syndrome D017593 1 associated lipids
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PubChem Associated disorders and diseases

What pathways are associated with clarithromycin

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 clarithromycin?

Related references are published most in these journals:

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


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Function Cross reference Weighted score Related literatures

What lipids are associated with clarithromycin?

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Lipid concept Cross reference Weighted score Related literatures
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What genes are associated with clarithromycin?

Related references are published most in these journals:


Gene Cross reference Weighted score Related literatures

What common seen animal models are associated with clarithromycin?

Mouse Model

Mouse Model are used in the study 'Inflammation provoked by Mycoplasma pneumoniae extract: implications for combination treatment with clarithromycin and dexamethasone.' (Hirao S et al., 2011), Mouse Model are used in the study 'Tolerance and pharmacokinetic interactions of rifabutin and clarithromycin in human immunodeficiency virus-infected volunteers.' (Hafner R et al., 1998), Mouse Model are used in the study 'Clarithromycin attenuates mastectomy-induced acute inflammatory response.' (Chow LW et al., 2000) and Mouse Model are used in the study 'In vitro and in vivo influence of adjunct clarithromycin on the treatment of mucoid Pseudomonas aeruginosa.' (Bui KQ et al., 2000).

Knock-out

Knock-out are used in the study 'Intrinsic macrolide resistance in Mycobacterium smegmatis is conferred by a novel erm gene, erm(38).' (Nash KA, 2003).

Experimental Pneumococcal Meningitis

Experimental Pneumococcal Meningitis are used in the study 'Failure of treatment for chronic Mycobacterium abscessus meningitis despite adequate clarithromycin levels in cerebrospinal fluid.' (Maniu CV et al., 2001).

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 clarithromycin

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Authors Title Published Journal PubMed Link
Ikeda S et al. Evaluation of the cost-effectiveness of Helicobacter pylori eradication triple therapy vs. conventional therapy for ulcers in Japan. 2001 Aliment. Pharmacol. Ther. pmid:11683692
Katelaris PH et al. Randomized trial of omeprazole and metronidazole with amoxycillin or clarithromycin for Helicobacter pylori eradication, in a region of high primary metronidazole resistance: the HERO study. 2000 Aliment. Pharmacol. Ther. pmid:10848659
Ammon S et al. Influence of age on the steady state disposition of drugs commonly used for the eradication of Helicobacter pylori. 2000 Aliment. Pharmacol. Ther. pmid:10848660
Molina-Infante J et al. Clinical trial: clarithromycin vs. levofloxacin in first-line triple and sequential regimens for Helicobacter pylori eradication. 2010 Aliment. Pharmacol. Ther. pmid:20180787
Gisbert JP et al. 7-day rescue therapy with ranitidine bismuth citrate after Helicobacter pylori treatment failure. 2005 Aliment. Pharmacol. Ther. pmid:15882246
Nista EC et al. Moxifloxacin-based strategies for first-line treatment of Helicobacter pylori infection. 2005 Aliment. Pharmacol. Ther. pmid:15882245
Lehmann FS et al. Effect of ornidazole and clarithromycin resistance on eradication of Helicobacter pylori in peptic ulcer disease. 2000 Aliment. Pharmacol. Ther. pmid:10735923
Miwa H et al. Cure of Helicobacter pylori infection does not improve symptoms in non-ulcer dyspepsia patients-a double-blind placebo-controlled study. 2000 Aliment. Pharmacol. Ther. pmid:10735925
Malfertheiner P et al. Helicobacter pylori eradication is beneficial in the treatment of functional dyspepsia. 2003 Aliment. Pharmacol. Ther. pmid:12969088
Hassan C et al. Sequential treatment for Helicobacter pylori eradication in duodenal ulcer patients: improving the cost of pharmacotherapy. 2003 Aliment. Pharmacol. Ther. pmid:12969091
Huang J and Hunt RH The importance of clarithromycin dose in the management of Helicobacter pylori infection: a meta-analysis of triple therapies with a proton pump inhibitor, clarithromycin and amoxycillin or metronidazole. 1999 Aliment. Pharmacol. Ther. pmid:10383500
Miwa H et al. Impact of rabeprazole, a new proton pump inhibitor, in triple therapy for Helicobacter pylori infection-comparison with omeprazole and lansoprazole. 1999 Aliment. Pharmacol. Ther. pmid:10383502
Wong BC et al. Rabeprazole-based 3-day and 7-day triple therapy vs. omeprazole-based 7-day triple therapy for the treatment of Helicobacter pylori infection. 2001 Aliment. Pharmacol. Ther. pmid:11736727
Frevel M et al. Eradication of Helicobacter pylori with pantoprazole and two antibiotics: a comparison of two short-term regimens. 2000 Aliment. Pharmacol. Ther. pmid:10971231
Dobrilla G et al. Ranitidine bismuth citrate with either clarithromycin 1 g/day or 1.5 g/day is equally effective in the eradication of H. pylori and healing of duodenal ulcer. 1998 Aliment. Pharmacol. Ther. pmid:9692703
Sheu BS et al. Esomeprazole 40 mg twice daily in triple therapy and the efficacy of Helicobacter pylori eradication related to CYP2C19 metabolism. 2005 Aliment. Pharmacol. Ther. pmid:15691303
Savarino V et al. A new 1-week therapy for Helicobacter pylori eradication: ranitidine bismuth citrate plus two antibiotics. 1997 Aliment. Pharmacol. Ther. pmid:9305478
Gisbert JP and Pajares JM Review article: Helicobacter pylori "rescue" regimen when proton pump inhibitor-based triple therapies fail. 2002 Aliment. Pharmacol. Ther. pmid:12030945
Laine L and Dhir V Helicobacter pylori eradication does not worsen quality of life related to reflux symptoms: a prospective trial. 2002 Aliment. Pharmacol. Ther. pmid:12030957
Vallve M et al. Single vs. double dose of a proton pump inhibitor in triple therapy for Helicobacter pylori eradication: a meta-analysis. 2002 Aliment. Pharmacol. Ther. pmid:12030958