Erythromycin ethyl succinate 500mg/5ml oral suspension sugar free
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13 branded products available
Part of the Erythroped brand family (generic: Erythromycin ethyl succinate)
MHRA licensed products
View all licensed products for Erythromycin ethyl succinate on the MHRA register
Erythromycin ethyl succinate 500mg/5ml oral suspension sugar free
Erythromycin ethyl succinate 500mg/5ml oral suspension sugar free
Erythromycin ethyl succinate 500mg/5ml oral suspension sugar free
Erythromycin ethyl succinate 500mg/5ml oral suspension sugar free
Alliance Healthcare (Distribution) Ltd
Erythromycin ethyl succinate 500mg/5ml oral suspension sugar free
Erythromycin ethyl succinate 500mg/5ml oral suspension sugar free
Erythromycin ethyl succinate 500mg/5ml oral suspension sugar free
Phoenix Healthcare Distribution Ltd
WHO defined daily dose (DDD)
2 gram
Not a recommended dose. The DDD is the assumed average maintenance dose per day for a drug used for its main indication in adults. It is a statistical measure used for research and comparison purposes only.
Source: WHO Collaborating Centre for Drug Statistics Methodology, distributed via the NHS dm+d supplementary mapping files (NHSBSA). Contains public sector information licensed under the Open Government Licence v3.0.
Therapeutically similar medicines
Similarity is based on WHO Anatomical Therapeutic Chemical (ATC) classification and on a factual NHS dm+d therapeutic-grouping code prefix. Source data: NHS dm+d via TRUD (OGL v3.0), WHO ATC/DDD Index.
NHS prescribing volume and spending trends
Guidelines from the National Institute for Health and Care Excellence
NICE clinical guidance(1)
Source: National Institute for Health and Care Excellence (NICE). Contains public sector information licensed under the Open Government Licence v3.0.
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Pharmacy links redirect to the retailer's own search and do not represent real-time stock levels. Shortage and safety information sourced from MHRA drug safety updates (gov.uk, Crown Copyright under OGL v3.0).
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SNOMED CT and dm+d codes from NHS TRUD (Technology Reference data Update Distribution), licensed under the Open Government Licence v3.0. ATC codes from the WHO Collaborating Centre for Drug Statistics Methodology (whocc.no).
Active and completed clinical studies from ClinicalTrials.gov
Source: ClinicalTrials.gov, a database of the U.S. National Library of Medicine (NLM), National Institutes of Health (NIH). Data accessed via ClinicalTrials.gov API v2. Trial information is provided for research purposes and does not constitute medical advice.
Academic studies and reviews for this medicine's active substance
Showing the 50 most relevant studies.
Reviews & meta-analyses: 1 · Randomised trials: 2 · Trials: 2 · 1951–2026
Showing the 50 most relevant studies, sorted by most relevant.
Saboute M, Mazouri A, NaimiDehnavi F, et al.
2018
Jianfeng Zhou, Tao Yi, Zhiyuan Zhang, et al.
Advanced Composites and Hybrid Materials, 2023
P. Nuntnarumit
D. Stassi, S. Kakavas, K. Reynolds, et al.
Proceedings of the National Academy of Sciences of the United States of America, 1998
E. Solovyeva, A. Karneev, A. Chekanov, et al.
Zhurnal nevrologii i psikhiatrii imeni S.S. Korsakova, 2017
Tejraj M. Aminabhavi, Hemant T. S. Phayde, Rajashekhar S. Khinnavar, et al.
Journal of Chemical & Engineering Data, 1994
Raymond M. Fuoss, David Edelson
Journal of the American Chemical Society, 1951
Farouk F, Elmaaty AA, Elkamhawy A, et al.
2023
- Antineoplastic Agents
- Topoisomerase II Inhibitors
- Cell Line, Tumor
Topoisomerase II (TOP-2) is a promising molecular target for cancer therapy. Numerous antibiotics could interact with biologically relevant macromolecules and provoke antitumor potential. Herein, molecular docking studies were used to investigate the binding interactions of 138 antibiotics against the human topoisomerase II-DNA complex. Followed by the MD simulations for 200 ns and MM-GBSA calculations. On the other hand, the antitumor activities of the most promising candidates were investigated against three cancer cell lines using doxorubicin (DOX) as a reference drug. Notably, spiramycin (SP) and clarithromycin (CL) showed promising anticancer potentials on the MCF-7 cell line. Moreover, azithromycin (AZ) and CL exhibited good anticancer potentials against the HCT-116 cell line. Finally, the TOP-2 enzyme inhibition assay was carried out to confirm the proposed rationale. Briefly, potent TOP-2 inhibitory potentials were recorded for erythromycin (ER) and roxithromycin (RO). Additionally, a SAR study opened eyes to promising anticancer pharmacophores encountered by these antibiotics.HighlightsMolecular docking studies of 139 antibiotics against the topoisomerase II-DNA complex.SP, RO, AZ, CL, and ER were the most promising and commercially available candidates.Molecular dynamics simulations for 200 ns for the most promising five complexes.MM-GBSA calculations for the frontier five complexes.SP and CL showed promising anticancer potentials on the MCF-7 cell line, besides, AZ and CL exhibited good anticancer potentials against the HCT-116 cell line.Potent TOP-2 inhibitory potentials were recorded for ER and RO.
Abstract licence: CC BY
Kateryna Lokes, A. Kiptilyi, Margaryta Skikevych, et al.
Frontiers in Oral Health, 2024
Ruiling Du, Lee A. Fielding
Macromolecules, 2024
Sources: aggregated from Europe PMC (EMBL-EBI), OpenAlex, Crossref, PubMed and other open scholarly databases. Retracted articles are excluded. Study information is provided for research purposes and does not constitute medical advice.
Scientific data (pharmacology, interactions, ADME) is not yet available for this medicine. Clinical sections are sourced from the NHS dm+d database.