Zacytuj

Hosein EA, Proulx P. Acetylcholine-like activity in subcellular particles isolated from rat brain. Arch Biochem Biophys 1964;106:267--74.10.1016/0003-9861(64)90187-0Search in Google Scholar

Hosein EA, Booth SJ, Gasoi I, Kato G. Neuromuscular blocking activity and other pharmacologic properties of various carnitine derivatives. J Pharmacol Exp Ther 1967;156:565--72.Search in Google Scholar

Hosein EA, Kato A, Vine E, Hill AM. The identification of acetyl-L-carnitylcholine in rat brain extracts and the comparison of its cholinomimetic properties with acetylcholine. Can J Physiol Pharmacol 1970;48:709--22.10.1139/y70-103Search in Google Scholar

Hosein EA, Pang D, Tesfaye Y. Some biochemical actions of carnitylcholine, a neuromuscular blocking agent. Biochem Pharmacol 1971;20:3385--95.10.1016/0006-2952(71)90443-6Search in Google Scholar

Kalvinsh I, Gutcaits A, Bagdoniene L, Labeikyte D, Trapencieris P, Sjakste N. Hypothetical gamma-butyrobetaine esterase-dependent signal transduction system: possible link to mildronate action. Med Hypotheses Res 2006;3:803--12.Search in Google Scholar

Sjakste N, Kalvinsh I. Mildronate: an antiischemic drug with multiple indications. Pharmacologyonline 2006;1:1--18.Search in Google Scholar

Sjakste N, Gutcaits A, Kalvinsh I. Mildronate: An antiischemic drug for neurological indications. CNS Drug Reviews 2005;11:151--68.10.1111/j.1527-3458.2005.tb00267.xSearch in Google Scholar

Thomizek WD, Strack E, Lorenz J. Über den Einfluß einiger Derivate aliphatischen Trimethylbetaine auf die Acetylcholine-esterase und über die Hydrolyse von Betainestern [About influence of some aliphatic derivatives of trimethylbetaine on acetylcholine esterase and about hydrolysis of betaine esters, in German]. Acta Biol Med Germ 1963;11:353--55.Search in Google Scholar

Orbidāne O, Meirena D, Pugovičs O, Dzintare M, Sjakste J, Kalviņš I, Sjakste N. Gamma---butyrobetaine esterase activity in rat blood serum. Proc Latv Acad Sci B 2004;58:98--102.Search in Google Scholar

Morgan EW, Yan B, Greenway D, Petersen DR, Parkinson A. Purification and characterization of two rat liver microsomal carboxylesterases (hydrolases A and B). Arch Biochem Biophys 1994;315:495--512.10.1006/abbi.1994.1531Search in Google Scholar

Cuatrecasas P. Protein purification by affinity chromatography: derivatizations of agarose and polyacrylamide beads. J Biol Chem 1970;245:3059--65.10.1016/S0021-9258(18)63022-4Search in Google Scholar

Laemmli UK. Cleavage of structural proteins during the assembly of the head of bacteriophage T4. Nature 1970;227:680--5.10.1038/227680a0Search in Google Scholar

Yan B, Yang D, Bullock P, Parkinson A. Rat serum carboxylesterase: Cloning, expression, regulation, and evidence of secretion from liver. J Biol Chem 1995;270:19128--34.10.1074/jbc.270.32.19128Search in Google Scholar

Seidman S, Sternfeld M, Ben Aziz-Aloya R, Timberg R, Kaufer-Nachum D, Soreq H. Synaptic and epidermal accumulations of human acetylcholinesterase are encoded by alternative 3-terminal exons. Mol Cell Biol 1995;15:2993--3002.10.1128/MCB.15.6.2993Search in Google Scholar

Bradford MM. A rapid and sensitive method for the quantitation of microgram quantities of protein utilizing the principle of protein-dye binding. Anal Biochem 1976;72:248--54.10.1016/0003-2697(76)90527-3Search in Google Scholar

Lockridge O, Schopfer LM, Winger G, Woods JH. Large scale purification of butyrylcholinesterase from human plasma suitable for injection into monkeys; a potential new therapeutic for protection against cocaine and nerve agent toxicity. J Med CBR Defense 2005;3:1--23.Search in Google Scholar

Satoh T, Hosokawa M. The mammalian carboxylesterases: from molecules to functions. Annu Rev Pharmacol Toxicol 1998;38:257--88.10.1146/annurev.pharmtox.38.1.2579597156Search in Google Scholar

Wheelock CE, Phillips BM, Anderson BS, Miller JL, Miller MJ, Hammock BD. Applications of carboxylesterase activity in environmental monitoring and toxicity identification evaluations (TIEs). Rev Environ Contam Toxicol 2008;195:117--78.10.1007/978-0-387-77030-7_518418956Search in Google Scholar

Nigg HN, Knaak JB. Blood cholinesterases as human biomarkers of organophosphorus pesticide exposure. Rev Environ Contam Toxicol 2000;163:29--111.10.1007/978-1-4757-6429-1_210771584Search in Google Scholar

Connelly PW, Maguire GF, Draganov DI. Separation and quantitative recovery of mouse serum arylesterase and carboxylesterase activity. J Lipid Res 2004;45:561--6.10.1194/jlr.M300464-JLR20014703510Search in Google Scholar

Meerson FZ, Abdikaliev NA, Kalvin'sh II, Vovk VI. Bioélektricheskii mekhanizm antiaritmicheskogo deistviia sinteticheskogo analoga atsetilkholina EDIGI [Bioelectrical mechanism of the anti-arrhythmia effect of a synthetic acetylcholine analog EDIHYP, in Russian]. Kardiologiia 1991;31:52--5.Search in Google Scholar

Meerson FZ, Kalvin'sh II, Abdukaliev NA. Ustranenie narushenii élektricheskoi stabil'nosti serdtsa i aritmii s pomoshch'iu sinteticheskogo analoga atsetilkholina [Correction of disorders of electric stability of the heart and arrhythmia by using a synthetic analog of acetylcholine, in Russian]. Biull Eksp Biol Med 1991;111:13--6.10.1007/BF00841227Search in Google Scholar

Abdikaliev NA, Kalvin'sh II, Meerson FZ. [The antiarrhythmic action of the synthetic acetylcholine analog EDIHYP in calcium chlorideand strophanthin-induced heart rhythm disorders, in Russian]. Farmakol Toksikol 1991;54:25--8.Search in Google Scholar

ISSN:
0004-1254
Języki:
Angielski, Slovenian
Częstotliwość wydawania:
4 razy w roku
Dziedziny czasopisma:
Medicine, Basic Medical Science, other