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192 related items for PubMed ID: 27396356
1. In vitro characterization of pralidoxime transport and acetylcholinesterase reactivation across MDCK cells and stem cell-derived human brain microvascular endothelial cells (BC1-hBMECs). Gallagher E, Minn I, Chambers JE, Searson PC. Fluids Barriers CNS; 2016 Jul 11; 13(1):10. PubMed ID: 27396356 [Abstract] [Full Text] [Related]
2. [Reactivation and aging of acetylcholinesterase in human brain inhibited by phoxim and phoxim oxon in vitro]. Li J, Zhang Y, Du X, Sun M. Zhonghua Yu Fang Yi Xue Za Zhi; 2002 Sep 11; 36(5):311-4. PubMed ID: 12411190 [Abstract] [Full Text] [Related]
3. Paraoxon has only a minimal effect on pralidoxime brain concentration in rats. Petroianu GA, Lorke DE, Hasan MY, Adem A, Sheen R, Nurulain SM, Kalasz H. J Appl Toxicol; 2007 Sep 11; 27(4):350-7. PubMed ID: 17265425 [Abstract] [Full Text] [Related]
5. Effects of K074 and pralidoxime on antioxidant and acetylcholinesterase response in malathion-poisoned mice. dos Santos AA, dos Santos DB, Ribeiro RP, Colle D, Peres KC, Hermes J, Barbosa AM, Dafré AL, de Bem AF, Kuca K, Farina M. Neurotoxicology; 2011 Dec 11; 32(6):888-95. PubMed ID: 21723318 [Abstract] [Full Text] [Related]
6. Five oximes (K-27, K-33, K-48, BI-6 and methoxime) in comparison with pralidoxime: in vitro reactivation of red blood cell acetylcholinesterase inhibited by paraoxon. Petroianu GA, Arafat K, Kuca K, Kassa J. J Appl Toxicol; 2006 Dec 11; 26(1):64-71. PubMed ID: 16193529 [Abstract] [Full Text] [Related]
7. Surface modification of pralidoxime chloride-loaded solid lipid nanoparticles for enhanced brain reactivation of organophosphorus-inhibited AChE: Pharmacokinetics in rat. Buzyurova DN, Pashirova TN, Zueva IV, Burilova EA, Shaihutdinova ZM, Rizvanov IK, Babaev VM, Petrov KA, Souto EB. Toxicology; 2020 Nov 11; 444():152578. PubMed ID: 32898602 [Abstract] [Full Text] [Related]
8. Mixed cationic liposomes for brain delivery of drugs by the intranasal route: The acetylcholinesterase reactivator 2-PAM as encapsulated drug model. Pashirova TN, Zueva IV, Petrov KA, Lukashenko SS, Nizameev IR, Kulik NV, Voloshina AD, Almasy L, Kadirov MK, Masson P, Souto EB, Zakharova LY, Sinyashin OG. Colloids Surf B Biointerfaces; 2018 Nov 01; 171():358-367. PubMed ID: 30059851 [Abstract] [Full Text] [Related]
11. A comparison of the potency of the oxime HLö-7 and currently used oximes (HI-6, pralidoxime, obidoxime) to reactivate nerve agent-inhibited rat brain acetylcholinesterase by in vitro methods. Kuca K, Cabal J, Kassa J, Jun D, Hrabinová M. Acta Medica (Hradec Kralove); 2005 Nov 01; 48(2):81-6. PubMed ID: 16259317 [Abstract] [Full Text] [Related]
14. Comparison of in vitro potency of oximes (pralidoxime, obidoxime, HI-6) to reactivate sarin-inhibited acetylcholinesterase in various parts of pig brain. Kuca K, Cabal J, Kassa J, Jun D, Hrabinová M. J Appl Toxicol; 2005 Nov 01; 25(4):271-6. PubMed ID: 16021679 [Abstract] [Full Text] [Related]
16. In vitro investigation of efficacy of new reactivators on OPC inhibited rat brain acetylcholinesterase. Atanasov VN, Petrova I, Dishovsky C. Chem Biol Interact; 2013 Mar 25; 203(1):139-43. PubMed ID: 23220589 [Abstract] [Full Text] [Related]
17. Pralidoxime inhibits paraoxon-induced depression of rocuronium-neuromuscular block in a time-dependent fashion. Narimatsu E, Niiya T, Takahashi K, Yamauchi M, Yamakage M. Am J Emerg Med; 2012 Jul 25; 30(6):901-7. PubMed ID: 21871755 [Abstract] [Full Text] [Related]
19. Syntheses and in vitro evaluations of uncharged reactivators for human acetylcholinesterase inhibited by organophosphorus nerve agents. Renou J, Mercey G, Verdelet T, Păunescu E, Gillon E, Arboléas M, Loiodice M, Kliachyna M, Baati R, Nachon F, Jean L, Renard PY. Chem Biol Interact; 2013 Mar 25; 203(1):81-4. PubMed ID: 23111374 [Abstract] [Full Text] [Related]