AbbreviationsEuropejska umowa dot. międzynarodowego przewozu towarów niebezpiecznych, Oszacowanie toksyczności ostrej (Acute Toxicity Estimate), Chemical Abstracts Service, Classification, Labelling and Packaging (Rozp. 1272/2008), Rakotwórczość, mutagenność, toksyczność reprodukcyjna, Pochodny poziom niepowodujący zmian (Derived No-Effect Level), European Community number, Środki ochrony indywidualnej, Globalnie Zharmonizowany System (Globally Harmonized System), Międzynarodowe Zrzeszenie Transportu Lotniczego, Międzynarodowy kodeks morski towarów niebezpiecznych, Karta Charakterystyki (Safety Data Sheet), Stężenie śmiertelne 50% (Lethal Concentration), Dawka śmiertelna 50% (Lethal Dose), Najwyższe dopuszczalne stężenie (na stanowisku pracy), Chwilowe NDS, Occupational Exposure Limit, Trwałe, bioakumulacyjne i toksyczne, Przewidywane stężenie niepowodujące zmian (Predicted No-Effect Concentration), Registration, Evaluation, Authorisation and Restriction of Chemicals (Rozp. 1907/2006), Safety Data Sheet, Toksyczność narządowa (Specific Target Organ Toxicity), Substancja wzbudzająca szczególnie duże obawy (Substance of Very High Concern), Topological Polar Surface Area, Bardzo trwałe i bardzo bioakumulacyjne
Version historyv1, 28.04.2026, Pierwsza emisja. Auto-wygenerowane przez MOL-GOD v2.7.0.
Draft warning1
ReferencesPubChem, PubChem PUG REST API, https://pubchem.ncbi.nlm.nih.gov/compound/87913-26-6, Cache+consensus, Local cache (previously fetched), Local Cache, Local cache (previously fetched), ChEMBL (EBI), ChEMBL (EBI), Wikidata, wikidata, Literature, literature
References chicago[1] PE i Rada. Rozp.(WE) nr 1907/2006 (REACH). Art.31, Zał.II. Dz.Urz.UE L 396/2006., [2] Komisja Europejska. Rozp.(UE) 2020/878 — zmiana Zał.II REACH. Dz.Urz.UE L 203/2020. Od 01.01.2023., [3] PE i Rada. Rozp.(WE) 1272/2008 (CLP)+ATP 19. Dz.Urz.UE L 353/2008., [4] United Nations. GHS Rev.9. ST/SG/AC.10/30/Rev.9. ONZ, 2021., [5] ISO. ISO 7010:2019 — Graphical symbols. Safety signs., [6] ISO. ISO 3864-1:2011 — Safety colours and safety signs., [7] PubChem. PubChem PUG REST API. URL: https://pubchem.ncbi.nlm.nih.gov/compound/87913-26-6 Data: ., [8] Cache+consensus. Local cache (previously fetched). Data: ., [9] Local Cache. Local cache (previously fetched). Data: ., [10] ChEMBL (EBI). ChEMBL (EBI). Data: ., [11] Wikidata. wikidata. Data: ., [12] Literature. literature. Data: ., [13] Ustawa z 26.06.1974 r. — Kodeks pracy. Art.221–229. Dz.U. 2023 poz. 1465., [14] Rozp. MRiPS z 12.06.2018 r. — NDS/NDN. Dz.U. 2024 poz. 1017.
Literature[A quantitative pharmaco-electroencephalographic analysis of the action of bromantane]., 1993, 8312546, 1, The action of the new stimulant bromantane on spectra power EEG on Fourier of sensorimotor cortex, dorsal hippocamp and lateral hypothalamus of left and right hemispheres of brain of rat in free behavior was investigated. Bromantane leads to decreases in the total and absolute powers of all frequenc, Europe PMC, 2.95, paywall, Plant Adaptogens-History and Future Perspectives., Todorova V, Ivanov K, Delattre C et al., 2021, Nutrients, 10.3390/nu13082861, 34445021, 0, 0, 1, https://www.mdpi.com/2072-6643/13/8/2861/pdf?version=1629707484, meta-analysis, pubmed, 1.5, open, [The neuro- and psychophysiological effects of bromantane]., et al., 2000, 10998997, 1, The study of EEG and psychophysiological parameters and their correlations in 10 healthy volunteers after single oral administration of bromantan in comparison with placebo revealed favourable influence of the drug on operators' functional state. By EEG-profile (increase in middle-frequency alpha-rh, Europe PMC, 1.45, paywall, [An acute toxicity study of bromantane]., et al., 2000, 10763112, 1, The toxicity of bromantan was evaluated by conventional acute tests (according to Belen'kiĭ) and by the behavioral activity data (according to Irvin). A method of integral graphical representation of the behavioral activity data is suggested, according to which the results are plotted as a "dose tra, Europe PMC, 1.45, paywall, [Analysis of pharmacological properties of bromantane]., 1999, 10640239, 1, Europe PMC, 1.45, paywall, [Comparative analysis of effects of adapromine, midantan, and bromantane on the bioelectric activity of the rat brain]., 1998, 10.1007/bf02496852, 9559131, 1, Europe PMC, 1.45, paywall, Toxic effect of single treatment with bromantane on neurological status of experimental animals., Iezhitsa IN, Spasov AA, Bugaeva LI et al., 2002, Bulletin of experimental biology and medicine, 10.1023/a:1016206306875, 12124651, 0, 0, article, pubmed, 1, paywall, [Analysis of pharmacological properties of bromantane]., Seredenin SB, Miramedova AG, 1999, Biulleten' eksperimental'noi biologii i meditsiny, 10640239, 0, 0, article, pubmed, 1, paywall, [An acute toxicity study of bromantane]., Bugaeva LI, Verovskiĭ VE, Iezhitsa IN et al., 2000, Eksperimental'naia i klinicheskaia farmakologiia, 10763112, 0, 0, article, pubmed, 1, paywall, [A quantitative pharmaco-electroencephalographic analysis of the action of bromantane]., Krapivin SV, Sergeeva SA, Morozov IS, 1993, Biulleten' eksperimental'noi biologii i meditsiny, 8312546, 0, 0, article, pubmed, 1, paywall
Nist linkhttps://webbook.nist.gov/cgi/cbook.cgi?ID=87913-26-6
Chembl idCHEMBL252164
Wikidata qidQ385533
Chemspider url
Substance typeunknown
Grok description
Cross validationDane zweryfikowane z 5 źródeł (cache, pubchem, chembl, wikidata, literature). Wykrytych konfliktów: 2.