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Titlebook: Clinical Aspects of Albumin; S. H. Yap,C. L. H. Majoor,J. H. M. Tongeren Book 1978 Martinus Nijhoff Publishers bv, The Hague. 1978 Infusio

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发表于 2025-3-21 18:46:05 | 显示全部楼层 |阅读模式
书目名称Clinical Aspects of Albumin
编辑S. H. Yap,C. L. H. Majoor,J. H. M. Tongeren
视频videohttp://file.papertrans.cn/228/227781/227781.mp4
图书封面Titlebook: Clinical Aspects of Albumin;  S. H. Yap,C. L. H. Majoor,J. H. M. Tongeren Book 1978 Martinus Nijhoff Publishers bv, The Hague. 1978 Infusio
描述Albumin is the most abundant serum protein produced by the liver. In clinical practice the serum level of albumin continues to be used as an important marker of the presence, progress or ofthe improvement of many diseases, even though it is the complex end result of synthesis, degradation a. nd distribution between intra- and extravascular space. The clinical history of albumin began as early as in 1837, when Ancell first recognized "albumen" and noted that this protein is needed for trans­ port functions, for maintaining fluidity of the vascular system and for the prevention of edema. However, the important physiological properties of serum proteins and their role in the regulation ofthe oncotic pressure were demonstrated later by the physiologist E. H. Starling in 1895. In 1917 the clinician A. A. Epstein first described the edema in patients with the nephro­ tic syndrome as being a result of a very low level of serum albumin. Al­ though the determination of serum albumin concentration became more popular after Howe in 1921 introduced the technique of separation of serum globulins from albumin by sodium sulfate, the first preparations of human serum albumin were made available fo
出版日期Book 1978
关键词Infusion; biosynthesis; development; diseases; distribution; drug; fat; liver; metabolic disease; patients; pl
版次1
doihttps://doi.org/10.1007/978-94-009-9744-8
isbn_softcover978-94-009-9746-2
isbn_ebook978-94-009-9744-8
copyrightMartinus Nijhoff Publishers bv, The Hague. 1978
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Molecular approach to the study of albumin synthesis,echanism for albumin synthesis in the past 10–15 years. The purpose of this chapter is to describe methods developed recently to study albumin synthesis at the molecular level. However, since classical methods still have more clinical relevance, we would like to mention briefly some of these approac
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Rat liver albumin messenger RNA: subcellular distribution and changes in various models of metaboli into two main processes: 1) transcription of DNA into “messenger” RNA, and 2) translation of “messenger” RNA into specific polypeptide chains composed of the appropriate mixture of amino acids. In differentiated cells this process yields proteins for functions common to all eukaryotic cells (“house
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The colloid osmotic pressure in cardiac disease,On the one side cardiac failure causes retention of water and salt and consequently a hemodilution. As a result, the central venous pressure (CVP) rises and the total protein content and also the colloid osmotic pressure (COP) of the plasma fall. If the cardiac function is restored, the edema is exc
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