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Titlebook: Drug Delivery Applications of Starch Biopolymer Derivatives; Jin Chen,Ling Chen,Xiaoxi Li Book 2019 Springer Nature Singapore Pte Ltd. 201

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書目名稱Drug Delivery Applications of Starch Biopolymer Derivatives
編輯Jin Chen,Ling Chen,Xiaoxi Li
視頻videohttp://file.papertrans.cn/284/283036/283036.mp4
概述Discusses the latest advances in stimuli-responsive and target-specific starch-based drug carriers.Includes examples of advanced starch-based drug delivery systems.Addresses starch-based toxicity and
圖書封面Titlebook: Drug Delivery Applications of Starch Biopolymer Derivatives;  Jin Chen,Ling Chen,Xiaoxi Li Book 2019 Springer Nature Singapore Pte Ltd. 201
描述.This book summarizes the recent advances in applications of starch in state-of-the-art drug carriers (hydrogel, micro- and nano-particulate carriers) with stimulus-responsive and target-specific properties. It also highlights the role of starch and its derivatives in transmucosal administration to improve the bioavailability of drugs. Further, it outlines the principles of effective, advanced, starch-based drug delivery systems and illustrates how these principles are key to the development of future drug delivery strategies. This interesting reference resource is useful for students, researchers and engineers in the fields of carbohydrate chemistry, polymer sciences and drug delivery..
出版日期Book 2019
關(guān)鍵詞Biopolymer Derivatives; Drug Delivery System; Starch-based drug delivery; Stimulus-responsive drug deli
版次1
doihttps://doi.org/10.1007/978-981-13-3657-7
isbn_ebook978-981-13-3657-7
copyrightSpringer Nature Singapore Pte Ltd. 2019
The information of publication is updating

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Starch-Based DDSs with Stimulus Responsiveness,very systems (DDSs) from starch and its derivatives during the past few decades. The biological stimuli at the different organ and cellular compartment-specific levels or pathological conditions including pH, enzyme, temperature, and redox potential have been exploited for the development of starch-
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Starch-Based DDSs with Physiological Interactions,ccessful application of DDSs could be limited in the clinical application due to the complicated environment of the human body. This can be exampled by the short circulation time and low targeting efficiency of target-specific DDSs induced by the RES recognition, or low bioavailability of drugs caus
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Toxicology of Starch-Based DDSs,erials. Yet, to functionalize starch to meet the material needs of smart and well-performed DDSs, starch has to be modified by numerous chemical methods, which may hamper its biocompatibility and biodegradability. Thus, it is vital to evaluate the toxicology of starch-based DDSs for its clinical app
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