Azithramycine

Azithramycine is a lipid of Polyketides (PK) class. Azithramycine is associated with abnormalities such as Respiratory Tract Infections, Pneumonia, Lower respiratory tract infection, Infection and Nonspecific urethritis. The involved functions are known as Lysis, Selection, Genetic, Mutation, Relapse and Adaptation. Azithramycine often locates in Blood, Respiratory System, Genitourinary system, Back and Chest. The associated genes with Azithramycine are Genes, rRNA, Genome, RPL22 gene, OPRM1 gene and tryptic soy broth. The related lipids are Liposomes, Phosphatidylserines, Promega, Lipopolysaccharides and Steroids. The related experimental models are Mouse Model, Knock-out and Tissue Model.

Cross Reference

Introduction

To understand associated biological information of Azithramycine, 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 Azithramycine?

Azithramycine is suspected in Infection, Pneumonia, Trachoma, Respiratory Tract Infections, Gonorrhea, Infectious disease of lung 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 Azithramycine

MeSH term MeSH ID Detail
Epiglottitis D004826 1 associated lipids
Furcation Defects D017823 1 associated lipids
Pseudolymphoma D019310 1 associated lipids
Tenosynovitis D013717 3 associated lipids
Corneal Endothelial Cell Loss D055954 1 associated lipids
Asymptomatic Infections D058345 1 associated lipids
Aphasia, Broca D001039 1 associated lipids
Heartburn D006356 2 associated lipids
Eisenmenger Complex D004541 1 associated lipids
Focal Nodular Hyperplasia D020518 1 associated lipids
Splenic Diseases D013158 5 associated lipids
Trismus D014313 1 associated lipids
Male Urogenital Diseases D052801 1 associated lipids
Hyper-IgM Immunodeficiency Syndrome D053306 1 associated lipids
T-Lymphocytopenia, Idiopathic CD4-Positive D018344 1 associated lipids
Pyomyositis D052880 2 associated lipids
Myelitis, Transverse D009188 1 associated lipids
Hernia, Hiatal D006551 3 associated lipids
Achondroplasia D000130 1 associated lipids
Tracheobronchomalacia D055089 1 associated lipids
Reproductive Tract Infections D060737 1 associated lipids
Chlamydial Pneumonia D061387 2 associated lipids
Pneumonia, Lipid D011017 2 associated lipids
Protozoan Infections D011528 6 associated lipids
Tick Bites D064927 1 associated lipids
Granulomatous Mastitis D058890 1 associated lipids
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PubChem Associated disorders and diseases

What pathways are associated with Azithramycine

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 Azithramycine?

Related references are published most in these journals:

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


Related references are published most in these journals:

Function Cross reference Weighted score Related literatures

What lipids are associated with Azithramycine?

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 Azithramycine?

Related references are published most in these journals:


Gene Cross reference Weighted score Related literatures

What common seen animal models are associated with Azithramycine?

Mouse Model

Mouse Model are used in the study 'Azithromycin increases in vitro fibronectin production through interactions between macrophages and fibroblasts stimulated with Pseudomonas aeruginosa.' (Cory TJ et al., 2013), Mouse Model are used in the study 'Efficacy of azithromycin, clarithromycin and beta-lactam agents against experimentally induced bronchopneumonia caused by Haemophilus influenzae in mice.' (Miyazaki S et al., 2001), Mouse Model are used in the study 'Oral anti-pneumococcal activity and pharmacokinetic profiling of a novel peptide deformylase inhibitor.' (Gross M et al., 2004), Mouse Model are used in the study 'Inhibition of quorum sensing in Pseudomonas aeruginosa by azithromycin and its effectiveness in urinary tract infections.' (Bala A et al., 2011) and Mouse Model are used in the study 'Enhanced efficacy of single-dose versus multi-dose azithromycin regimens in preclinical infection models.' (Girard D et al., 2005).

Knock-out

Knock-out are used in the study 'Influence of rhlR and lasR on Polymyxin Pharmacodynamics in Pseudomonas aeruginosa and Implications for Quorum Sensing Inhibition with Azithromycin.' (Bulman ZP et al., 2017) and Knock-out are used in the study 'Azithromycin in Pseudomonas aeruginosa biofilms: bactericidal activity and selection of nfxB mutants.' (Mulet X et al., 2009).

Tissue Model

Tissue Model are used in the study 'Development of a population pharmacokinetic model characterizing the tissue distribution of azithromycin in healthy subjects.' (Zheng S et al., 2014).

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 Azithramycine

Download all related citations
Per page 10 20 50 100 | Total 4404
Authors Title Published Journal PubMed Link
Ting CY and Shahdadpuri R Fuchs syndrome: a case of fever, mucositis and conjunctivitis. 2018 BMJ Case Rep pmid:29378740
Huang S et al. Human babesiosis in Southeast China: A case report. 2018 Int. J. Infect. Dis. pmid:29355731
Jenson A et al. Patient-centered communication of community treatment assistants in Tanzania predicts coverage of future mass drug administration for trachoma. 2018 Patient Educ Couns pmid:29329726
Zhao L et al. Trends in antimicrobial resistance in Neisseria gonorrhoeae and molecular characteristics of N. gonorrhoeae with decreased susceptibility to ceftriaxone in Shandong, China, 2007 to 2014. 2018 Int. J. Antimicrob. Agents pmid:28729124
Williams PCM and Berkley JA Guidelines for the management of paediatric cholera infection: a systematic review of the evidence. 2018 Paediatr Int Child Health pmid:29790841
Glanternik JR et al. A Cluster of Cases of Babesia microti Among Neonates Traced to a Single Unit of Donor Blood. 2018 Pediatr. Infect. Dis. J. pmid:28945680
Yang D et al. The timing of azithromycin treatment is not associated with the clinical prognosis of childhood Mycoplasma pneumoniae pneumonia in high macrolide-resistant prevalence settings. 2018 PLoS ONE pmid:29377957
Morales A et al. Microbiological and clinical effects of probiotics and antibiotics on nonsurgical treatment of chronic periodontitis: a randomized placebo- controlled trial with 9-month follow-up. 2018 J Appl Oral Sci pmid:29364340
Lam-Franco L et al. IL-1α and MMP-9 Tear Levels of Patients with Active Ocular Rosacea before and after Treatment with Systemic Azithromycin or Doxycycline. 2018 Ophthalmic Res. pmid:29874670
Saita MG et al. pH-Dependent stability of azithromycin in aqueous solution and structure identification of two new degradation products. 2018 J Pharm Biomed Anal pmid:29860178