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Titlebook: Mast Cells, Mediators and Disease; S. T. Holgate (MRC Clinical Reasearch Professor of Book 1988 Kluwer Academic Publishers 1988 allergy.ce

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发表于 2025-3-21 18:16:56 | 显示全部楼层 |阅读模式
书目名称Mast Cells, Mediators and Disease
编辑S. T. Holgate (MRC Clinical Reasearch Professor of
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丛书名称Immunology and Medicine
图书封面Titlebook: Mast Cells, Mediators and Disease;  S. T. Holgate (MRC Clinical Reasearch Professor of Book 1988 Kluwer Academic Publishers 1988 allergy.ce
描述In 1879 Paul Ehrlich first described the mast cell as a tissue fixed cell contain­ ing many granules which, when stained with basic dyes, such as toluidine blue, changed the colour spectrum of the dye in a process called meta­ chromasia. Since this early description, pathologists, physicians and pharmacologists have been fascinated by this cell on account of its central involvement in human allergic diseases. Approximately four decades after Ehrlich‘s first description of the mast cell, Prausnitz and Kiistner reported their pioneer experiment, demonstrating that the immediate skin wheal response to allergen could be passively transferred with serum. They named the antigen-specific serum factor reagin. A further four and one half decades had to pass before the connection between the mast cell and reagin could be made with the identification of reagin as an immunoglobulin E by Johansson and Ishizaka and its unique property to bind with high affinity to specific receptors on mast cells and basophils. Meanwhile in the 1920s Coca published a series of papers in which he described the clinical features of acute allergic responses and first used the term atopy. This, together with the fun
出版日期Book 1988
关键词allergy; cell; cells; diseases; drugs; immunoglobulin; inflammation; phylogeny; tissue; treatment
版次1
doihttps://doi.org/10.1007/978-94-009-1287-8
isbn_softcover978-94-010-7072-0
isbn_ebook978-94-009-1287-8
copyrightKluwer Academic Publishers 1988
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978-94-010-7072-0Kluwer Academic Publishers 1988
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https://doi.org/10.1007/978-94-009-1287-8allergy; cell; cells; diseases; drugs; immunoglobulin; inflammation; phylogeny; tissue; treatment
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C. Robinsones, but can also have water solubility and biocompatibility that are not owned by their parent molecules. These brilliant properties provide these materials potentials in biomedical applications. Here, we review the atomistic-level structural models for fullerene derivatives, and their applications
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F. L. Pearceflects cutting-edge research from Ukraine, Europe and beyond.This book highlights some of the latest advances in nanotechnology and nanomaterials from leading researchers in Ukraine, Europe and beyond. It features contributions presented at the 9th International Science and Practice Conference Nanot
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R. C. Benyonflects cutting-edge research from Ukraine, Europe and beyond.This book highlights some of the latest advances in nanotechnology and nanomaterials from leading researchers in Ukraine, Europe and beyond. It features contributions presented at the 9th International Science and Practice Conference Nanot
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