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Titlebook: Applied Bioactive Polymeric Materials; Charles G. Gebelein,Charles E. Carraher,Van R. Fos Book 1988 Springer Science+Business Media New Yo

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期刊全称Applied Bioactive Polymeric Materials
影响因子2023Charles G. Gebelein,Charles E. Carraher,Van R. Fos
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学科分类Polymer Science and Technology
图书封面Titlebook: Applied Bioactive Polymeric Materials;  Charles G. Gebelein,Charles E. Carraher,Van R. Fos Book 1988 Springer Science+Business Media New Yo
影响因子The biological and biomedical applications of polymeric materials have increased greatly in the past few years. This book will detail some, but not all, of these recent developments. There would not be enough space in this book to cover, even lightly, all of the major advances that have occurred. Some earlier books and summaries are available by two of this book‘s Editors (Gebelein & Carraher) and these should be consul ted for additional information. The books are: "Bioactive Polymeric Systems" (Plenum, 1985); "Polymeric Materials In Medication" (Plenum, 1985); "Biological Acti vi ties of Polymers" (American Chemical Society, 1982). Of these three, "Bioacti ve Polymeric Systems" should be the most useful to a person who is new to this field because it only contains review articles written at an introductory level. The present book primarily consists of recent research results and applications, with only a few review or summary articles. Bioactive polymeric materials have existed from the creation of life itself. Many firmly believe that life could not even exist unless poly­ meric materials are used to form the basic building blocks. Although this assumption can not be rigorously
Pindex Book 1988
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https://doi.org/10.1057/9781137500427containing testosterone propionate, (2) evoked an anabolic effect in heifers, (3) maintained male sexual behavior in female ruminants and (4) prenatally androgenized female ruminants. The poly(dimethylsiloxane) implants not only facilitated therapy but also enhanced efficacy and in some cases elimin
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https://doi.org/10.1057/9781137500427ences in the release profiles are caused by differences in the basic nature of the two kinds of systems and the mechanisms of the release of the 5-FU from each. These differences and the mechanisms of the release are discussed in detail.
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Combined Matrix Concept in Delivery of Bioactive Polypeptides,ut PCL erosion did not occur as intended. Therefore, PCL served only as a passive component of the implant. while PVA was eroded with the release of MB. Consequently, it was inferred that a polymer may not be required as a passive component. Tests with insulin in a compressed solid admixture with pa
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