Technology and Biological Weapons: Future Threats [PDF]
Ye
Davison, N., Millett, P., Nixdorff, K.
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Imaging Cholinergic Receptors in the Brain by Positron Emission Tomography. [PDF]
Zhang JJ +13 more
europepmc +1 more source
Longterm central cholinergic hypofunction induced in mice by ethylcholine aziridinium ion (AF64A) in vivo [PDF]
ABBREVIATIONS: ACh, acetylcholine; Ch, choline; HAChT, high-affinity Ch transport system; SIMS, secondary ion mass spectrometry; ChAT, choline acetyltransferase; QNB, quinuclidinyl benzilate ...
Abraham Fisher +3 more
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Cymbopogon citratus Essential Oil: Extraction, GC-MS, Phytochemical Analysis, Antioxidant Activity, and In Silico Molecular Docking for Protein Targets Related to CNS. [PDF]
Cortes-Torres AG +7 more
europepmc +1 more source
Allosteric Modulation of Muscarinic Receptors by Cholesterol, Neurosteroids and Neuroactive Steroids. [PDF]
Szczurowska E +4 more
europepmc +1 more source
Comparison of efficacy of acetylcholinesterase inhibitors tacrine, rivastigmine and donepezil for the treatment of cognitive disorders induced by 3-quinuclidinyl benzylate in rat [PDF]
Univerzita Karlova v Praze Farmaceutická fakulta v Hradci Králové Katedra farmakologie a toxikologie Studentka: Mgr. Stela Pavlíčková Školitel: PharmDr.Marie Vopršálová, CSc. Školitel specialista: RNDr. Jan Misík, Ph.D.
Pavlíčková, Stela
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神経細胞内M1 受容体量を指標とした幼若マウス中枢神経系の拘束ストレス応答の解析 [PDF]
福井大学生命科学複合研究教育センター平成23年度研究費助成事業「脳発達プロジェクト研究」research ...
67803 +5 more
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A Glutamate <i>N</i>-Methyl-d-Aspartate (NMDA) Receptor Subunit 2B-Selective Inhibitor of NMDA Receptor Function with Enhanced Potency at Acidic pH and Oral Bioavailability for Clinical Use. [PDF]
Myers SJ +11 more
europepmc +1 more source
Chronic exposure to the anti-M3 muscarinic acetylcholine receptor autoantibody in pemphigus vulgaris contributes to disease pathophysiology. [PDF]
Chernyavsky A +3 more
europepmc +1 more source
The Effect of Trimethyltin on the Cholinergic System of the Rat Hippocampus [PDF]
Trimethyltin (TMT) is a neurotoxin occurring in the environment. Exposure to (TMT) is known to destroy specific neuronal components of the hippocampus in the rat and to cause clinical symptoms in exposed humans, including mnemonic deficits, that indicate
Cannon, Richard L.
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