Bemiparin sodium 7,500units/0.3ml solution for injection pre-filled syringes
Bemiparin is an antithrombotic and belongs to the group of drugs known as the low molecular weight heparins (LMWH).
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Zibor 7,500units/0.3ml solution for injection pre-filled syringes
WHO defined daily dose (DDD)
2500 unit
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.
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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: 13 · Randomised trials: 11 · Trials: 1 · 2000–2026
Showing the 50 most relevant studies, sorted by most relevant.
Gao JH, Chu XC, Wang LL, et al.
2017
- Pulmonary Embolism
- Postoperative Complications
- Benzylamines
BackgroundAfter arthroplasty treatment, some complications commonly occur, such as early revision, infection/dislocation, and venous thromboembolism (VTE). This study aims to use a network meta-analysis to compare effects of 9 anticoagulant drugs (edoxaban, dabigatan, apixaban, rivaroxaban, warfarin, heparin, bemiparin, ximelagatran, and enoxaparin) in preventing postoperative complications in arthroplasty patients.MethodsAfter retrieving PubMed, Embase, and Cochrane Library database from the inception to November 2016, randomized controlled trials were enrolled. The integration of direct and indirect evidences was performed to calculate odd ratios and the surface under the cumulative ranking curves. Nineteen eligible randomized controlled trials were included.ResultsThe network meta-analysis results showed that compared with warfarin, edoxaban, apixaban, and rivaroxaban had a lower incidence rate in asymptomatic deep venous thrombosis, which indicated that edoxaban, apixaban, and rivaroxaban had better effects on prevention. Similarly, in comparison to enoxaparin, edoxaban and rivaroxaban had better effect; rivaroxaban was better than ximelagatran in preventive effects. Compared with apixaban, edoxaban, dabigatan, rivaroxaban, and enoxaparin had a higher incidence rate in clinically relevant non-major bleeding, which showed that preventive effects were relatively poor. In addition, the results of the surface under the cumulative ranking curves showed that rivaroxaban and bemiparin worked best on symptomatic deep venous thrombosis and pulmonary embolism. In terms of bleeding, apixaban and warfarin had better preventive effects.ConclusionOur findings suggested that rivaroxaban may work better in terms of symptomatic deep venous thrombosis and pulmonary embolism, whereas apixaban had better preventive effects in bleeding.
Abstract licence: CC BY
Javier Ena, Victoria Valls
Int. Journal of Clinical Pharmacology and Therapeutics, 2020
- Heparin, Low-Molecular-Weight
- Enoxaparin
- Anticoagulants
María Marcos-Jubilar, Francisco Carmona-Torre, Rosa Vidal, et al.
Thrombosis and Haemostasis, 2021
- COVID-19 Drug Treatment
- Pneumonia
- Heparin, Low-Molecular-Weight
V. Kakkar, J. Howes, V. Sharma, et al.
Thrombosis and Haemostasis, 2000
A. Navarro-Quilis, E. Castellet, E. Rocha, et al.
Journal of Thrombosis and Haemostasis, 2003
V. Kakkar, J. Balibrea, J. Martínez-González, et al.
Journal of Thrombosis and Haemostasis, 2010
R. Ferriols‐Lisart, F. Ferriols-Lisart, V. Jimnez-Torres
Pharmacy World and Science, 2002
Francisco Revilla-Peñaloza, P. Olsoff-Pagovich, J. R. Ochoa-Gómez, et al.
Aesthetic Plastic Surgery, 2019
- Venous Thrombosis
- Plastic Surgery Procedures
- Postoperative Complications
Igor A. Suchkov, Javier Martinez-Gonzalez, Sebastian M. Schellong, et al.
Clinical Drug Investigation, 2017
- Venous Thrombosis
- Acute Disease
- Warfarin
Mazarico E, Peguero A, Camprubí M, et al.
2018
- Fetal Growth Retardation
- Placental Insufficiency
- Heparin, Low-Molecular-Weight
IntroductionThe incidence of intrauterine growth restriction (IUGR) is estimated at about 3% of pregnancies, and it is associated with 30% of all perinatal mortality and severe morbidity with adverse neurodevelopmental and cardiovascular health consequences in adult life. Early onset IUGR represents 20%-30% of all cases and is highly associated with severe placental insufficiency. The existing evidence suggests that low molecular weight heparin (LMWH) has effects beyond its antithrombotic action, improving placental microvessel structure and function of pregnant women with vascular obstetric complications by normalising proangiogenic and antiapoptotic protein levels, cytokines and inflammatory factors. The objective of our study is to demonstrate the effectiveness of LMWH in prolonging gestation in pregnancies with early-onset IUGR.Methods and analysisThis is a multicentre, triple-blind, parallel-arm randomised clinical trial. Singleton pregnancies qualifying for early (20-32 weeks at diagnosis) placental IUGR (according to Delphi criteria) will be randomised to subcutaneous treatment with bemiparin 3500 IU/0.2 mL/day or placebo from inclusion at diagnosis to the time of delivery. Analyses will be based on originally assigned groups (intention-to-treat). The primary objective will be analysed by comparing gestational age and prolongation of pregnancy (days) in each group with Student's t-tests for independent samples and by comparing Kaplan-Maier survival curves (from inclusion to delivery, log-rank test). A linear regression model for gestational age at birth will consider the following covariates: gestational age at inclusion (continuous) and pre-eclampsia (binary).Ethics and disseminationThe study will be conducted in accordance with the principles of Good Clinical Practice. This study was approved by the Clinical Research Ethics Committee (CEIC) of Sant Joan de Déu Hospital, on 13 July 2017. The trial is registered in the public registry www.clinicaltrial.gov. according to Science Law 14/2011, and the results will be published in an open access journal.Trial registration numberNCT03324139; Pre-results.
Abstract licence: CC BY-NC
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.
Pharmacology and chemical data from DrugBank
Key facts
Drug status
Approved
Major interactions
157 found
Half-life
5-6 hours
Mechanism
This drug is a second-generation low molecular weight heparin (LMWH).
Food interactions
1 warning
Human targets
3 targets
Data: DrugBank · CC BY-NC 4.0
Pharmacokinetics at a glance
Absorption
96%
[L1462]
Half-life
5-6 hours
[L1462]
Protein binding
[L1465]
Volume of distribution
5.1 L
[A32018]
Metabolism
3h
Elimination
[L1466]
Clearance
7 h
[A32018]
Pharmacokinetic data: DrugBank · CC BY-NC 4.0
[L1463]
Known interactions with other medicines. Always consult a healthcare professional.
Showing 50 of 863 interactions
In rare cases, mild transient thrombocytopenia (HIT type I) at the beginning of therapy with heparin with platelet counts between 100,000/mm3 and 150,000/mm3 due to temporary platelet activation has been noted in clinical studies.
On rare occasions, antibody-mediated severe thrombocytopenia (HIT type II) with platelet counts clearly below
100,000/mm3 has been observed (see section 4.8). This effect usually occurs within 5-21 days after the initiation of treatment, although in patients with a history of heparin-induced thrombocytopenia this may occur more rapidly.
Platelet count studies are recommended before the administration of bemiparin, on the first day of therapy and then every 3-4 days, in addition to repeating platelet studies at the end of therapy.
Treatment must be discontinued immediately and an alternate therapy initiated if significant reductions in platelet counts are observed ( 30% decrease and above) .
[L1462]
As with other heparin products, cases of cutaneous necrosis, often preceded by purpura or painful erythematous, ecchymose-like lesions have been reported with bemiparin. In these cases, treatment should cease immediately .
[L1462]
Overdosage after subcutaneous or other routes of administration of bemiparin may lead to hemorrhagic complications. Neutralization can be obtained by slow intravenous of a suitable dose of the antidote protamine sulphate .
[L1463]
Combined with various co-factors that bind to activated platelets, Factor-Xa increases coagulation by converting prothrombin to thrombin [L1467]. Activated Factor-X, bound as part of the prothrombinase complex on the external surface of activated platelets, converts significant amounts of prothrombin to thrombin, promoting the so-called ‘thrombin burst’, referring to a burst of thrombin release [L1467].
A secondary but less potent mechanism of action of this drug is binding to antithrombin III and activated factor II (Factor IIa), which further prevents the propagation of thrombi [L1472].
Due to its excellent pharmacological profile-the second-generation LMWH with the lowest molecular weight, the longest half-life and the highest anti-Factor Xa/anti-Factor IIa activity ratio-it can be safely used in special categories of patients (children, elderly, patients with renal impairment and congestive heart failure). Several studies demonstrated its safety and efficacy, while cost analyses show the economic benefits of bemiparin treatment as compared to other heparins [A7866][A7867].
In humans, bemiparin has been proven to possess antithrombotic activity and, at therapeutic doses, does not significantly prolong global clotting laboratory tests [L1465].
How the body processes this drug — absorption, distribution, metabolism, and elimination
[L1462]
[L1462]
[L1465]
[A32018]
[A32030]
[L1466]
[A32018]
Proteins and enzymes this drug interacts with in the body
PMID:22409427
Factor Xa activates pro-inflammatory signaling pathways in a protease-activated receptor (PAR)-dependent manner .
PMID:24041930 PMID:30568593 PMID:34831181 PMID:18202198
Up-regulates expression of protease-activated receptors (PARs) F2R, F2RL1 and F2RL2 in dermal microvascular endothelial cells .
PMID:35738824
Triggers the production of pro-inflammatory cytokines, such as MCP-1/CCL2 and IL6, in cardiac fibroblasts and umbilical vein endothelial cells in PAR-1/F2R-dependent manner .
PMID:30568593 PMID:34831181
Triggers the production of pro-inflammatory cytokines, such as MCP-1/CCL2, IL6, TNF-alpha/TNF, IL-1beta/IL1B, IL8/CXCL8 and IL18, in endothelial cells and atrial tissues .
PMID:24041930 PMID:35738824 PMID:9780208
Induces expression of adhesion molecules, such as ICAM1, VCAM1 and SELE, in endothelial cells and atrial tissues .
PMID:24041930 PMID:35738824 PMID:9780208
Increases expression of phosphorylated ERK1/2 in dermal microvascular endothelial cells and atrial tissues .
PMID:24041930 PMID:35738824
Triggers activation of the transcription factor NF-kappa-B in dermal microvascular endothelial cells and atrial tissues .
PMID:24041930 PMID:35738824
Activates pro-inflammatory and pro-fibrotic responses in dermal fibroblasts and enhances wound healing probably via PAR-2/F2RL1-dependent mechanism .
PMID:18202198
Activates barrier protective signaling responses in endothelial cells in PAR-2/F2RL1-dependent manner; the activity depends on the cleavage of PAR-2/F2RL1 by factor Xa .
PMID:22409427
Up-regulates expression of plasminogen activator inhibitor 1 (SERPINE1) in atrial tissues PMID:24041930
PMID:15140129 PMID:15853774
AT-III inhibits thrombin, matriptase-3/TMPRSS7, as well as factors IXa, Xa and XIa .
PMID:15140129
Its inhibitory activity is greatly enhanced in the presence of heparin
ATC B01AB12
Chemical identifiers
CAS, UNII, InChI Key and database cross-references
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Chemical identifiers
CAS, UNII, InChI Key and database cross-references
Linked compound data from DrugBank Open Data (CC BY-NC 4.0)
Bemiparin
Additional database identifiers
HUGO Gene Nomenclature Committee (HGNC)
HGNC:3528
GenAtlas
F10
GeneCards
F10
GenBank Gene Database
K03194
GenBank Protein Database
182841
Guide to Pharmacology
2359
UniProt Accession
FA10_HUMAN
HUGO Gene Nomenclature Committee (HGNC)
HGNC:775
GenAtlas
SERPINC1
GeneCards
SERPINC1
GenBank Gene Database
M21642
GenBank Protein Database
179161
Guide to Pharmacology
2632
UniProt Accession
ANT3_HUMAN
HUGO Gene Nomenclature Committee (HGNC)
HGNC:4838
GenAtlas
SERPIND1
GeneCards
SERPIND1
GenBank Gene Database
M12849
GenBank Protein Database
183910
UniProt Accession
HEP2_HUMAN
DrugBank citations
If you use DrugBank data in your research, please cite:
- DrugBank 6.02024Recommended citationKnox C., Wilson M., Klinger C.M., et alDrugBank 6.0: the DrugBank Knowledgebase for 2024Nucleic Acids Res. 2024 Jan 552(D1):D1265-D1275
- DrugBank 5.02018Wishart D.S., Feunang Y.D., Guo A.C., et alDrugBank 5.0: a major update to the DrugBank database for 2018Nucleic Acids Res. 2017 Nov 846(D1):D1074-D1082
- DrugBank 4.02014Law V., Knox C., Djoumbou Y., et alDrugBank 4.0: shedding new light on drug metabolismNucleic Acids Res. 2014 Jan 142(1):D1091-7
- DrugBank 3.02011Knox C., Law V., Jewison T., et alDrugBank 3.0: a comprehensive resource for 'omics' research on drugsNucleic Acids Res. 2011 Jan39(Database issue):D1035-41
- DrugBank 2.02008Wishart D.S., Knox C., Guo A.C., et alDrugBank: a knowledgebase for drugs, drug actions and drug targets.Nucleic Acids Research2008 Jan36(Database issue):D901-6
- DrugBank 1.02006Wishart D.S., Knox C., Guo A.C., et alDrugBank: a comprehensive resource for in silico drug discovery and exploration.Nucleic Acids Research2006 Jan 134(Database issue):D668-72