Clove oil 10% / Lidocaine 0.7% dental liquid sugar free
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Data from the MHRA Yellow Card scheme. A reported reaction does not necessarily mean the medicine caused it. Contains public sector information licensed under the Open Government Licence v3.0.
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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. BNF code shown is the factual mapping value distributed by NHS Business Services Authority (NHSBSA) in the dm+d supplementary file under OGL v3.0; it is not affiliated with, nor licensed from, the publishers of the British National Formulary.
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: 11 · Randomised trials: 5 · 2019–2025
Showing the 50 most relevant studies, sorted by most relevant.
José Nabor Haro-González, Gustavo Adolfo Castillo-Herrera, Moisés Martínez‐Velázquez, et al.
Molecules, 2021
- Anti-Infective Agents
- Anti-Inflammatory Agents
- Antineoplastic Agents, Phytogenic
Scuteri D, Hamamura K, Sakurada T, et al.
2021
Background: The demand for essential oils (EOs) has been steadily growing over the years. This is mirrored by a substantial increase in research concerned with EOs also in the field of inflammatory and neuropathic pain. The purpose of this present systematic review and meta-analysis is to investigate the preclinical evidence in favor of the working hypothesis of the analgesic properties of EOs, elucidating whether there is a consistent rational basis for translation into clinical settings. Methods: A literature search has been conducted on databases relevant for medical scientific literature, i.e., PubMed/MEDLINE, Scopus, and Web of Science from database inception until November 2, 2020, following the PRISMA (Preferred Reporting Items for Systematic reviews and Meta-Analyses) criteria for systematic reviews and meta-analyses. Results: The search was conducted in order to answer the following PICOS (participants/population, interventions, comparisons, outcomes, and study design) question: are EOs efficacious in reducing acute nociceptive pain and/or neuropathic pain in mice experimental models? The search retrieved 2,491 records, leaving 954 studies to screen after the removal of duplicates. The title and abstract of all 954 studies were screened, which left 127 records to evaluate in full text. Of these, 30 articles were eligible for inclusion. Conclusion: Most studies (27) assessed the analgesic properties of EOs on acute nociceptive pain models, e.g. the acetic acid writhings test, the formalin test, and the hot plate test. Unfortunately, efficacy in neuropathic pain models, which are a more suitable model for human conditions of chronic pain, had fewer results (only three studies). Moreover, some methodologies raised concerns in terms of the risk of bias. Therefore, EOs with proven efficacy in both types of pain were corroborated by methodologically consistent studies, like the EO of bergamot, which should be studied in clinical trials to enhance the translational impact of preclinical modeling on clinical pain research.
Abstract licence: CC BY
V. Pandey, Shivangi Srivastava, Ashish, et al.
Heliyon, 2023
M. Hadidi, S. Pouramin, Fateme Adinepour, et al.
Carbohydrate polymers, 2020
Nayeresadat Hasheminejad, F. Khodaiyan, M. Safari
Food chemistry, 2019
Tilak Gasti, Shruti Dixit, Vishram D. Hiremani, et al.
Carbohydrate polymers, 2021
Yi-wei Shen, Zhi-Jing Ni, K. Thakur, et al.
International journal of biological macromolecules, 2021
Rafael Liñán-Atero, F. Aghababaei, Samuel Rodríguez García, et al.
Antioxidants, 2024
Riccardo Matera, Elena Lucchi, Luca Valgimigli
Molecules, 2023
- Oils, Volatile
- Antioxidants
- Diet
Harika Petluru, SVSG Nirmala, Sivakumar Nuvvula
Journal of Dental Anesthesia and Pain Medicine, 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.