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Titlebook: Recent Advances in Drug Delivery Systems; James M. Anderson,Sung Wan Kim Book 1984 Plenum Press, New York 1984 Insulin.Motivation.antibiot

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书目名称Recent Advances in Drug Delivery Systems
编辑James M. Anderson,Sung Wan Kim
视频video
图书封面Titlebook: Recent Advances in Drug Delivery Systems;  James M. Anderson,Sung Wan Kim Book 1984 Plenum Press, New York 1984 Insulin.Motivation.antibiot
描述The evident rapid expansion of scientific work and intense interest in both experimental and clinical aspects of new drug delivery systems provided strong motivation for planning this symposium. In designing the program, speakers were identified for their particular expertise in a wide range of topics such as dermal delivery systems, pro-drugs, oral prolonged release, rate-controlled drug delivery, the pharmacokinetics of drug release systems, the synthesis of polymeric drug carriers and the refinement of drug delivery pumps. Because of the considerable involvement of diverse scientists from laboratories around the world where investigations relevant to the topic are now being pursued, a deliberate effort was made to invite international leaders in the field to share their knowledge and experimental outcomes. Thus, plenary papers and panel discussions were offered by organic chemists, bioengineers, patholo­ gists, material scientists, physical chemists, and pharmacokineti­ cists from academic and industrial laboratories in some dozen countries. This book which records the presentations offered at the sym­ posium covers a broad array of topics ranging from general overviews of the p
出版日期Book 1984
关键词Insulin; Motivation; antibiotics; drug; drug delivery; evaluation; kinetics; pharmacokinetics; planning; rese
版次1
doihttps://doi.org/10.1007/978-1-4613-2745-5
isbn_softcover978-1-4612-9700-0
isbn_ebook978-1-4613-2745-5
copyrightPlenum Press, New York 1984
The information of publication is updating

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,Self Regulating Insulin Delivery System — A Chemical Approach,d glycosylated insulin to lectin. The glycosylated insulin bound lectin is encapsulated using biodegradable or nondegradable biomedical polymers. The polymer membranes control glucose influx and insulin efflux while subsequent insulin release depends upon the glucose concentration present, a natural
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Polymer Coated Liposomes for Drug Delivery to Target Specific Organs,ems to be overcome still remain before the liposomal drug-delivery system achieves its usefulness in biological and medicinal usages (1, 2). First of all is to depress the permeability of water soluble materials entrapped in liposomes, and the second is to access an ability for liposomes to specific
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Alternative Approaches to Oral Controlled Drug Delivery: Bioadhesives and In-Situ Systems,tract, it is necessary to have the drug-delivery system adhere to the mucin/epithelial surface of the GI tract. The present study describes procedures utilizing fluorescent probes, such as pyrene, in cultured epithelial cells to study polymer binding to the mucin-epithelial surface. It is shown that
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