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Titlebook: Biochemistry of the Lanthanides; C. H. Evans Book 1990 Springer Science+Business Media New York 1990 19th century.Atom.amino acid.biochemi

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期刊全稱(chēng)Biochemistry of the Lanthanides
影響因子2023C. H. Evans
視頻videohttp://file.papertrans.cn/187/186737/186737.mp4
學(xué)科分類(lèi)Biochemistry of the Elements
圖書(shū)封面Titlebook: Biochemistry of the Lanthanides;  C. H. Evans Book 1990 Springer Science+Business Media New York 1990 19th century.Atom.amino acid.biochemi
影響因子By a happy coincidence, the completion of this text coincided with the 200th anniversary of the discovery of gadolinite, the mineral with which the lanthanide story begins. For a group of elements which occur in only trace amounts biologically, and which have no known metabolic role, the lanthanides have spawned a surprisingly large biochemicalliterature. Se- rious interest in the biochemical properties ofthese elements can be traced to concerns about the safety of radioactive lanthanides toward the end of World War 11. As recent events at Chernobyl indicate, this concern re- mains topical. However, the literature on lanthanide biochemistry pre- dates the atomic era, beginning with sporadic, medically motivated studies in the latter part of the 19th century. Much of the present biochemical activity involving the lanthanides centers around their ability to provide 2 important information on the interactions of Ca + with macromolecules and with eukafyotic cells. With the increasing industrial use of the lan- thanides, their toxicological properties will need to be examined more closely. Rare earth pneumonoconiosis has already been identified as a disease produced by industrial exposu
Pindex Book 1990
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Biochemistry of the Elementshttp://image.papertrans.cn/b/image/186737.jpg
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https://doi.org/10.1007/978-94-017-7132-0kery, 1953; Spedding and Daane, 1961), and numerous reviews exist (e.g., Moeller, 1973; Morris, 1976). In addition, many standard textbooks on inorganic chemistry have good sections on the lanthanides (e.g., Phillips and Williams, 1966; Cotton and Wilkinson, 1980). It is neither possible nor necessa
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https://doi.org/10.1007/978-3-642-18679-0ently, they have attracted the attention of biochemists not because of their physiological functions, but because of their several extremely valuable experimental uses. The most important of these exploit their ability to serve as informative spectroscopic probes of the interactions of Ca. and, to a
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,Ich fühle mich schlecht – bin ich krank?,ealization that the metabolically active forms of many nucleotides are ones in which a metal ion is coordinated. Best studied is the ATP-Mg complex which forms the physiologically active substrate for ATP-requiring reactions. As Mg., like Ca., is spectroscopically un-informative, it, too, has been r
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