Cytisinicline 1.5mg tablets
Requires a prescription from a doctor or prescriber
Cytisine is an alkaloid naturally derived from the Fabaceae family of plants including the genera Laburnum and Cytisus.
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4 branded products available
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View all licensed products for Cytisinicline on the MHRA register
Belnifrem 1.5mg tablets
Cytisine 1.5mg tablets
Cytisine 1.5mg tablets
Cytisine 1.5mg tablets
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View full Drug TariffSource: NHS Drug Tariff via NHSBSA. Derived from dm+d VMPP (Virtual Medicinal Product Pack) pricing data. 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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Guidelines from the National Institute for Health and Care Excellence
NICE clinical guidance(4)
Tobacco: treating dependence (QS207)
Tobacco: preventing uptake, promoting quitting and treating dependence (NG209)
Smoking: reducing and preventing tobacco use (QS82)
Lung cancer in adults (QS17)
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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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: 6 · Randomised trials: 7 · 2021–2026
Showing the 50 most relevant studies, sorted by most relevant.
Puljević C, Stjepanović D, Meciar I, et al.
2024
- Smoking Cessation
- Quinolizidine Alkaloids
- Nicotinic Agonists
Background and aimsCytisine (also known as cytisinicline) is a low-cost partial agonist of nicotinic acetylcholine receptors used to assist tobacco cessation. We aimed to review the effectiveness of cytisine for tobacco cessation and the effects of dose and co-use of behavioural or other pharmacological interventions on cessation outcomes.MethodsWe searched seven databases, Google Scholar, and reference lists of included publications for randomised controlled trials investigating use of cytisine as a tobacco cessation aid. Studies were eligible if participants were ≥15 years old and used tobacco upon study enrolment. We conducted four random effects meta-analyses and sensitivity analyses with fixed effects models. We used the Cochrane risk-of-bias tool for randomised trials version 2 to assess risk of bias in included studies, with adjustments recommended by the Cochrane Tobacco Addiction Group.ResultsParticipants using cytisine were significantly more likely to quit tobacco than participants who received placebo/no intervention/usual care (risk ratio [RR] = 2.65, 95% confidence interval [CI] = 1.50-4.67, 6 trials, 5194 participants) or nicotine replacement therapy (RR = 1.36, 95% CI = 1.06-1.73, p = 0.0152, 2 trials, 1511 participants). The difference in cessation rates among participants receiving cytisine versus varenicline was not statistically significant (RR = 0.96, 95% CI 0.63-1.45, P = 0.8464, 3 trials, 2508 participants). Two trials examined longer versus shorter treatment duration, finding higher abstinence rates with longer treatment (RR = 1.29, 95% CI = 1.02-1.63, 2 trials, 1009 participants). The differences in the number of adverse events reported by participants who received cytisine versus placebo (RR = 1.19, 95% CI = 0.99-1.41, P = 0.0624; 6 trials; 4578 participants) or cytisine versus varenicline (RR = 1.37, 95% CI = 0.57-3.33, P = 0.4835; 2 trials; 1345 participants) were not statistically significant. Most adverse events were mild (e.g. abnormal dreams, nausea, headaches).ConclusionsCytisine is an effective aid for tobacco cessation and appears to be more effective for tobacco cessation than placebo, no intervention, usual care and nicotine replacement therapy.
Abstract licence: CC BY-NC
Nancy A. Rigotti, Neal L. Benowitz, Judith J. Prochaska, et al.
JAMA Internal Medicine, 2024
- Vaping
- Electronic Nicotine Delivery Systems
- Tobacco Use Disorder
ImportanceThe prevalence of e-cigarette use among US adults, especially young adults, is rising. Many would like to quit vaping nicotine but are unable to do so. Cytisinicline, a plant-based alkaloid, targets nicotinic acetylcholine receptors, reduces nicotine dependence, and helps adults to stop smoking cigarettes. Cytisinicline may also help e-cigarette users to quit vaping.ObjectiveTo determine the efficacy and safety of cytisinicline vs placebo to produce abstinence from e-cigarette use in adults seeking to quit vaping nicotine.Design, Setting, and ParticipantsThis double-blind placebo-controlled randomized clinical trial compared 12 weeks of treatment with cytisinicline vs placebo, with follow-up to 16 weeks. It was conducted from July 2022 to February 2023 across 5 US clinical trial sites. A total of 160 adults who vaped nicotine daily, sought to quit, and did not currently smoke cigarettes were enrolled, and 131 (81.9%) completed the trial.InterventionParticipants were randomized (2:1) to cytisinicline, 3 mg, taken 3 times daily (n = 107) or placebo (n = 53) for 12 weeks. All participants received weekly behavioral support.Main Outcomes and MeasuresBiochemically verified continuous e-cigarette abstinence during the last 4 weeks of treatment (weeks 9-12; primary outcome) and through 4 weeks posttreatment (weeks 9-16; secondary outcome). Missing outcomes were counted as nonabstinence.ResultsOf 160 randomized participants (mean [SD] age, 33.6 [11.1] years; 83 [51.9%] female), 115 (71.9%) formerly smoked (≥100 lifetime cigarettes). Continuous e-cigarette abstinence in cytisinicline and placebo groups occurred in 34 of 107 participants (31.8%) vs 8 of 53 participants (15.1%) (odds ratio, 2.64; 95% CI, 1.06-7.10; P = .04) at end of treatment (weeks 9-12) and in 25 of 107 participants (23.4%) vs 7 of 53 participants (13.2%) during weeks 9 to 16 (odds ratio, 2.00; 95% CI, 0.82-5.32; P = .15). There was no evidence, based on nonsignificant interactions, that cytisinicline efficacy differed in subgroups defined by demographic characteristics, vaping pattern, e-cigarette dependence, or smoking history. Cytisinicline was well tolerated, with 4 participants (3.8%) discontinuing cytisinicline due to an adverse event.Conclusions and RelevanceIn this randomized clinical trial, cytisinicline for 12 weeks, with behavioral support, demonstrated efficacy for cessation of e-cigarette use at end of treatment and was well tolerated by adults, offering a potential pharmacotherapy option for treating nicotine e-cigarette use in adults who seek to quit vaping. These results need confirmation in a larger trial with longer follow-up.Trial RegistrationClinicalTrials.gov Identifier: NCT05431387
Abstract licence: CC BY-NC-ND
Rigotti NA, Benowitz NL, Prochaska JJ, et al.
2025
- Benzazepines
- Nicotinic Agonists
- Smoking Cessation
ImportanceNew smoking cessation medication options are needed. Cytisinicline, a partial agonist at α4β2 nicotinic acetylcholine receptors, has demonstrated smoking cessation efficacy in 1 US trial. Additional evidence is needed.ObjectiveTo reproduce the findings of the efficacy and tolerability of cytisinicline compared with placebo for smoking cessation and to test its effect on nicotine craving as a mechanism of action.Design, settings, and participantsThis was a 3-group double-blind, placebo-controlled phase 3 replication randomized clinical trial (ORCA-3) conducted at 20 clinical trial sites in the US from January 2022 to March 2023. It compared 6 and 12 weeks of a novel cytisinicline regimen to placebo among adults who smoked 10 or more cigarettes daily and sought to quit. Participants were randomized (1:1:1) to 3-mg cytisinicline 3 times daily for 12 weeks; 3-mg cytisinicline 3 times daily for 6 weeks followed by placebo for 6 weeks; or placebo 3 times daily for 12 weeks. The follow-up period was 24 weeks, and all groups received behavioral support. Data analyses were performed from May 3, 2023, to March 20, 2024.InterventionsCytisinicline, 3 mg, 3 times daily for 12 weeks; cytisinicline, 3 mg, 3 times daily for 6 weeks followed by placebo for 6 weeks; or placebo 3 times daily for 12 weeks.Main outcomes and measuresBiochemically verified (carbon monoxide ResultsOf 792 participants randomized (mean [SD] age, 52.0 [11.8] years; 439 [55.4%] female; mean [SD] cigarettes/d, 20.4 [7.5]), 628 (79.3%) completed the trial. Primary and secondary outcomes were significantly higher for both cytisinicline groups vs placebo. For 6-week treatment, 39 cytisinicline participants (14.8%) vs 16 placebo participants (6.0%) were abstinent during weeks 3 to 6 (odds ratio [OR], 2.9; 95% CI, 1.5-5.6; P Conclusions and relevanceThe findings of the ORCA phase 3 trial reaffirms the efficacy and tolerability of cytisinicline at both 6- and 12-week treatment for smoking cessation, with benefits extending through 24 weeks. As a mechanism of effect, cytisinicline mitigated nicotine craving.Trial registrationClinicalTrials.gov Identifier: NCT05206370.
Abstract licence: CC BY-NC-ND
Rabade Castedo C, Estany-Gestal A, Jiménez Ruiz CA, et al.
2026
- Smoking Cessation
- Spain
- Multicenter Studies as Topic
Mark Rubinstein, David Rowe, Renee Perdok, et al.
Journal of Health Economics and Outcomes Research, 2026
Background Pharmacologic options for supporting smoking cessation remain limited. Cytisinicline is a plant-based alkaloid that selectively binds to α4β2 nicotinic acetylcholine receptors, reducing nicotine craving and withdrawal symptoms, and has proven effective for smoking cessation in the phase III ORCA-2 and ORCA-3 trials, with a favorable safety profile. Using data from randomized clinical trials, we performed an indirect treatment comparison of varenicline, a guideline-recommended partial agonist of the nicotinic acetylcholine receptor used as first-line pharmacotherapy for tobacco cessation, vs cytisinicline for smoking cessation. Objectives This analysis was designed to compare the efficacy and safety of cytisinicline vs varenicline using pooled data from the cytisinicline ORCA-2 and ORCA-3 trials, and the EAGLES trial of varenicline. Methods ORCA-2 (conducted from October 2020 to December 2021), ORCA-3 (May 2023–March 2024), and EAGLES (November 2011–January 2015) enrolled adults who smoked at least 10 cigarettes daily and were motivated to quit. A matching-adjusted indirect treatment comparison was employed to adjust for patient population differences between the ORCA (cytisinicline) and EAGLES (varenicline) studies. Propensity score weighting was used to align patient characteristics, then efficacy outcomes, continuous smoking abstinence rate at Weeks 9-12 and Weeks 9-24, and safety outcomes, including treatment discontinuation due to adverse events, were assessed. Adjusted and unadjusted analyses (a standard Bucher and the Mantel-Haenszel approach) were performed. Results There was no statistically significant difference in continuous abstinence between the cytisinicline and varenicline cohorts at the 9- to 12-week assessment (adjusted OR, 1.33; 95% CI, 0.86-2.05). Patients prescribed cytisinicline had higher odds of abstinence vs varenicline at the 9- to 24-week assessment (adjusted OR, 1.95; 95% CI, 1.13-3.34). Cytisinicline was associated with 82% lower odds of nausea vs varenicline (adjusted OR, 0.18; 95% CI, 0.10-0.31). Conclusion Cytisinicline may be an effective and more tolerable alternative, especially for patients at risk of relapse or unable to tolerate varenicline.
Abstract licence: CC BY 4.0
King D
2023
- Smoking
- Smoking Cessation
M Rubinstein, D Rowe, R Perdok, et al.
American Journal of Respiratory and Critical Care Medicine, 2026
Mitchell Nides, Nancy A Rigotti, Neal Benowitz, et al.
Nicotine & Tobacco Research, 2021
- Quinoxalines
- Smokers
- Alkaloids
Abstract Introduction Cytisinicline (known as cytisine), a nicotinic acetylcholine receptor partial agonist, is a smoking cessation aid currently marketed in Central and Eastern Europe using a 1.5-mg/tablet 25-day downward titration schedule. No prior studies have evaluated other doses or administration schedules. This study evaluated the effects of a higher dosage and simplified dosing schedule on drug efficacy and tolerability. Methods ORCA-1 was a double-blind, randomized, placebo-controlled clinical trial that provided cytisinicline or placebo tablets plus behavioral support for 25 days. Adult smokers (>10 cigarettes daily) committed to quitting smoking were randomized to compare 2 cytisinicline doses (1.5 mg and 3 mg) versus placebo, and 2 administration schedules [downward titration versus 3 times daily (TID)]. Primary outcome was a reduction in expected cigarettes smoked at end of treatment; secondary outcomes were biochemically confirmed 7-day abstinence at Week 4 and continuous abstinence from Weeks 5 to 8. Results Among 254 participants, those in cytisinicline arms (regardless of dose or schedule) had greater reductions in cigarettes smoked versus placebo, with differences observed in 3 cytisinicline arms statistically significant versus placebo. All cytisinicline arms had statistically significantly higher abstinence rates at Week 4 versus placebo. Both cytisinicline arms using TID schedules had statistically significantly higher continuous abstinence rates from Weeks 5 to 8 compared with placebo. Participants in the cytisinicline 3-mg TID arm had the highest abstinence rate. There were no safety concerns with either 1.5-mg or 3-mg cytisinicline. Conclusion Based on simpler dose scheduling, excellent tolerability, and best-continued abstinence rate, cytisinicline 3-mg TID was selected for future Phase 3 studies. Implications Although the 1.5-mg 25-day titration schedule has been marketed in Central and Eastern Europe for decades, this study explored using a higher dosage and a simplified dosing schedule for impact on cytisinicline efficacy and tolerability. Based on these results, a Phase 3 program was initiated using cytisinicline 3-mg tablets on a TID schedule for potential market approval in the United States.
Abstract licence: CC BY 4.0
Nancy A. Rigotti, Neal L. Benowitz, Judith Prochaska, et al.
JAMA, 2023
- Tobacco Use Disorder
- Smoking Cessation
- Cigarette Smoking
Óscar Fraile-Martínez, Cielo García-Montero, Miguel A. Ortega, et al.
Healthcare, 2025
Tobacco use disorder remains a leading cause of preventable mortality, with nicotine playing a central role in the development and maintenance of dependence, mainly through its action on α4β2 nicotinic acetylcholine receptors (nAChRs). Smoking cessation treatments must address both physiological withdrawal and the affective disturbances (such as anxiety, irritability, and mood lability) which often facilitate relapses. This review compares two pharmacotherapies used in smoking cessation, varenicline and cytisinicline (cytisine), with particular focus on their impact on emotional regulation, psychological symptoms, and neuropsychiatric safety. Varenicline, a high-affinity partial agonist at α4β2 nAChRs, has demonstrated superior efficacy in maintaining abstinence and is well-supported by robust clinical data, including in psychiatric populations. However, its use may be limited by adverse effects such as nausea and sleep disorders. Cytisinicline, a structurally similar but less potent partial agonist, has recently gained renewed interest due to its lower cost, favorable tolerability profile, and comparable effectiveness in the general population. Although less extensively studied in patients with serious mental illness, preliminary data suggest cytisinicline may offer a better side effect profile, particularly regarding sleep disturbances and emotional reactivity. Both agents appear to ameliorate withdrawal-related affective symptoms without significantly increasing psychiatric risk. Ultimately, pharmacotherapy choice should be guided by individual clinical features, mental health status, treatment tolerability, and resource availability. Further research is needed to establish cytisinicline’s efficacy and safety across diverse clinical contexts, particularly among individuals with severe psychiatric comorbidities.
Abstract licence: CC BY 4.0
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
Investigational
Major interactions
None known
Half-life
4.8 hours
Mechanism
Cytisine is a low efficacy partial agonist of ⍺4-β2 nicotinic acetylcholine receptors.
Food interactions
None known
Human targets
7 targets
Data: DrugBank · CC BY-NC 4.0
Pharmacokinetics at a glance
Half-life
4.8 hours
Volume of distribution
6.2 l/kg
Clearance
43 mL/min
Pharmacokinetic data: DrugBank · CC BY-NC 4.0
-Large doses can interfere with breathing and cause death.
From MSDS:
orl-mus LD50:101 mg/kg ipr-mus LD50:8550 ug/kg ivn-mus LD50:1730 ug/kg scu-rat LD50:8750 ug/kg
anatoxin > epibatidine > acetylcholine > DMPP >> CYTISINE > pyrantel > nicotine > coniine > tubocurare > lobeline,
where anatoxin had the highest activity efficacy and tubocurare the lowest. Acetylcholine on the other hand induced a much longer opening time of the receptor though anatoxin is more potent. The results suggest that anatoxin derivatives would be helpful in understanding structure-activity relationships (SAR) for muscle nAChRs (Cooper et al., 1996).
How the body processes this drug — absorption, distribution, metabolism, and elimination
Proteins and enzymes this drug interacts with in the body
PMID:20881005 PMID:31488329 PMID:8663494 PMID:8906617 PMID:9203638
CHRNB4 forms heteropentameric neuronal acetylcholine receptors with CHRNA2, CHRNA3 and CHRNA4, as well as CHRNA5 and CHRNB3 as accesory subunits .
PMID:11118490 PMID:20881005 PMID:8663494
CHRNA3:CHRNB4 being predominant in neurons of the autonomic ganglia, it is known as ganglionic nicotinic receptor .
PMID:31488329
CHRNA3:CHRNB4 or CHRNA3:CHRNA5:CHRNB4 play also an important role in the habenulo-interpeduncular tract, modulating the mesolimbic dopamine system and affecting reward circuits and addiction (By similarity). Hypothalamic CHRNA3:CHRNB4 nAChR activation by nicotine leads to activation of POMC neurons and a decrease in food intake (By similarity)
PMID:18723036
CHRNA2 forms heteropentameric neuronal acetylcholine receptors with CHRNB2 and CHRNB4 and plays a role in nicotine dependence PMID:24467848 PMID:27493220
PMID:22361591 PMID:27698419 PMID:29720657 PMID:38454578
CHRNA4 forms heteropentameric neuronal acetylcholine receptors with CHRNB2 and CHRNB4, as well as CHRNA5 and CHRNB3 as accesory subunits. Is the most abundant nAChR subtype expressed in the central nervous system .
PMID:16835356 PMID:22361591 PMID:27698419 PMID:29720657 PMID:38454578
Found in two major stoichiometric forms,(CHRNA4)3:(CHRNB2)2 and (CHRNA4)2:(CHRNB2)3, the two stoichiometric forms differ in their unitary conductance, calcium permeability, ACh sensitivity and potentiation by divalent cation .
PMID:27698419 PMID:29720657 PMID:38454578
Involved in the modulation of calcium-dependent signaling pathways, influences the release of neurotransmitters, including dopamine, glutamate and GABA (By similarity)
PMID:15609996 PMID:33735609 PMID:8145738
CHRNA7 forms homopentameric neuronal acetylcholine receptors abundantly expressed in the central nervous system, characterized by fast desensitization and high calcium permeability .
PMID:31560909 PMID:33735609 PMID:38382524 PMID:8145738
Also forms heteropentamers with CHRNB2, mainly expressed in basal forebrain cholinergic neurons. Involved in the modulation of calcium-dependent signaling pathways and influences the release of neurotransmitters, including dopamine, glutamate and GABA .
PMID:33239400
Also expressed in non-neuronal cells such as immune cells like lymphocytes, monocytes and macrophages .
PMID:12508119 PMID:16968406 PMID:25259522
In T cells, activation induces metabotropic signaling that results in an increase of intracellular Ca2+ concentrations, independent of ionotropic receptor functions .
PMID:17709503
In macrophages, required for acetylcholine-mediated inhibition of TNF and other inflammatory cytokine release .
PMID:12508119
Once activated by acetylcholine, nicotine or other agonists, selectively inhibits production of pro-inflammatory cytokines while leaving anti-inflammatory cytokines undisturbed .
PMID:12508119 PMID:25259522
Stimulates the cholinergic anti-inflammatory pathway, controlling inflammation by inhibiting NFKB nuclear translocation and activating the JAK2-STAT3 pathway, independently of ion channel activity .
PMID:16968406 PMID:25259522
Also expressed in the urothelium where it modulates reflex bladder activity by increasing intracellular calcium through internal stores and decreasing basal ATP release (By similarity)
PMID:31488329 PMID:31708116
CHRNA3 forms heteropentameric neuronal acetylcholine receptors with CHRNB2 and CHRNB4, with CHRNA5, and CHRNB3 as accesory subunits .
PMID:20881005 PMID:8663494
CHRNA3:CHRNB4 being predominant in neurons of the autonomic ganglia, it is known as ganglionic nicotinic receptor .
PMID:31488329
CHRNA3:CHRNB4 or CHRNA3:CHRNA5:CHRNB4 play also an important role in the habenulo-interpeduncular tract, modulating the mesolimbic dopamine system and affecting reward circuits and addiction (By similarity). Hypothalamic CHRNA3:CHRNB4 nAChR activation by nicotine leads to activation of POMC neurons and a decrease in food intake (By similarity).
Also expressed in the urothelium where it modulates reflex bladder activity by increasing intracellular calcium through extracellular influx and basal ATP release (By similarity)
ATC N07BA04
Chemical identifiers
CAS, UNII, InChI Key and database cross-references
Show
Chemical identifiers
CAS, UNII, InChI Key and database cross-references
Linked compound data from DrugBank Open Data (CC BY-NC 4.0)
Cytisine
Matched from: Cytisinicline
Additional database identifiers
ChemSpider
9818
BindingDB
50143282
PDB
C5E
ZINC
ZINC000001599730
HUGO Gene Nomenclature Committee (HGNC)
HGNC:1964
GeneCards
CHRNB4
GenBank Gene Database
U62439
GenBank Protein Database
1458126
UniProt Accession
ACHB4_HUMAN
HUGO Gene Nomenclature Committee (HGNC)
HGNC:1956
GenAtlas
CHRNA2
GeneCards
CHRNA2
GenBank Gene Database
U62431
GenBank Protein Database
1458110
Guide to Pharmacology
463
UniProt Accession
ACHA2_HUMAN
HUGO Gene Nomenclature Committee (HGNC)
HGNC:1958
GenAtlas
CHRNA4
GeneCards
CHRNA4
GenBank Gene Database
L35901
GenBank Protein Database
755648
Guide to Pharmacology
465
UniProt Accession
ACHA4_HUMAN
HUGO Gene Nomenclature Committee (HGNC)
HGNC:1960
GenAtlas
CHRNA7
GeneCards
CHRNA7
GenBank Gene Database
X70297
GenBank Protein Database
496607
Guide to Pharmacology
468
UniProt Accession
ACHA7_HUMAN
HUGO Gene Nomenclature Committee (HGNC)
HGNC:1957
GeneCards
CHRNA3
GenBank Gene Database
M86383
GenBank Protein Database
177898
Guide to Pharmacology
464
UniProt Accession
ACHA3_HUMAN
HUGO Gene Nomenclature Committee (HGNC)
HGNC:15963
GeneCards
CHRNA6
GenBank Gene Database
U62435
GenBank Protein Database
1458118
Guide to Pharmacology
467
UniProt Accession
ACHA6_HUMAN
HUGO Gene Nomenclature Committee (HGNC)
HGNC:1962
GenAtlas
CHRNB2
GeneCards
CHRNB2
GenBank Gene Database
X53179
GenBank Protein Database
32017
UniProt Accession
ACHB2_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