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Titlebook: Neural Membranes; Grace Y. Sun,Nicolas Bazan,Albert Y. Sun Book 1983 The Humana Press Inc. 1983 Nervous System.attention.brain.brain edema

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書目名稱Neural Membranes
編輯Grace Y. Sun,Nicolas Bazan,Albert Y. Sun
視頻videohttp://file.papertrans.cn/664/663665/663665.mp4
叢書名稱Experimental and Clinical Neuroscience
圖書封面Titlebook: Neural Membranes;  Grace Y. Sun,Nicolas Bazan,Albert Y. Sun Book 1983 The Humana Press Inc. 1983 Nervous System.attention.brain.brain edema
描述One of the most active and productive areas of biological science in the past decade has been the study of the biochemical and biophysical prop- erties of cell membranes. There is little doubt that membranes are essen- tial components of all cellular systems and that each type of membrane manifests specific and characteristic cellular functions. In the nervous system, important events such as neurotransmission, receptor binding, ion transport, axonal transport, and cell uptake are all known to take place within the neural cell membrane. Phospholipids, one of the major components of membranes, not only provide the membrane with its structural integrity and physical proper- ties, but also play an important role in regulating membrane function. Attention has recently been focused on the asymmetric localization of these molecules, the identification of discrete metabolic pools of phospholipids within the membrane matrix, and their involvement in sig- nal transmission. Although synaptic membranes generally lack an active mechanism for the de novo biosynthesis of phospholipids, a number of enzymic routes are present for their interconversions and for facilitating metabolic turnover. Meta
出版日期Book 1983
關(guān)鍵詞Nervous System; attention; brain; brain edema; catecholamines; central nervous system; dopamine; membrane; m
版次1
doihttps://doi.org/10.1007/978-1-4612-5636-6
isbn_softcover978-1-4612-5638-0
isbn_ebook978-1-4612-5636-6
copyrightThe Humana Press Inc. 1983
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The Effect of Dietary Choline on Brain Phospholipid Contentects upon acetylcholine synthesis, choline is a phospholipid precursor, and may also act as a weak cholinergic agonist (Krnjevic and Reinhardt, 1979). Despite the controversy regarding the effect of choline on acetylcholine synthesis, choline may be clinically beneficial in treating those conditions which are hypochol inergic.
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Solubilization, Purification and Properties of Membrane-Bound Brain Enzymes which Biosynthesize Phosation, stimulated phosphoinositide degradation and subsequent cellular events, such as mobilization of cytosolic Ca . or liberation of arachidonic acid as precursor to prostaglandin formation, has become a significant problem in membrane biochemistry and is discussed in another chapter in this volume (Hauser 1983).
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