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Laterally Sandwich-typed Hydrogel Columns with Liner Poly(N-isopropylacrylamide) Layer:Preparation, Swelling/deswelling Kinetics and Drug Delivery Characteristics

Laterally Sandwich-typed Hydrogel Columns with Liner Poly(N-isopropylacrylamide) Layer:Preparation, Swelling/deswelling Kinetics and Drug Delivery Characteristics
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摘要 A novel thermo-responsive hydrogel column, featured with both ends of linear poly(N- isopropylacrylarnide) (PNIPAM) chains being grafted onto cross-linked PNIPAM chains, was reported. The laterally sandwich-typed hydrogel columns were fabricated by radical polymerization in a three-step process using a method of ice-melting synthesis. The initiating path, morphology and thermoresponsive characteristics of the prepared hydrogel columns were experimentally studied. The results show that the hydrogel column obtained by the initiator inside part has more quick swelling and deswelling rates responsing to temperature cycling than other hydrogels owing to linear PNIPAM chains to form supermacroporous structure. The proposed hydrogel structure provide a new mode of the phase transition behavior for thermo-sensitive "smart" or "intelligent" monodisperse micro-actuators, which is highly attractive for targeting drug delivery systems, chemical separations, and sensors and so on. A novel thermo-responsive hydrogel column, featured with both ends of linear poly(N- isopropylacrylarnide) (PNIPAM) chains being grafted onto cross-linked PNIPAM chains, was reported. The laterally sandwich-typed hydrogel columns were fabricated by radical polymerization in a three-step process using a method of ice-melting synthesis. The initiating path, morphology and thermoresponsive characteristics of the prepared hydrogel columns were experimentally studied. The results show that the hydrogel column obtained by the initiator inside part has more quick swelling and deswelling rates responsing to temperature cycling than other hydrogels owing to linear PNIPAM chains to form supermacroporous structure. The proposed hydrogel structure provide a new mode of the phase transition behavior for thermo-sensitive "smart" or "intelligent" monodisperse micro-actuators, which is highly attractive for targeting drug delivery systems, chemical separations, and sensors and so on.
作者 LI Ying XIAO Xincai 李莹;肖新才(School of Pharmacy,South-Central University for Nationalities,Wuhan 430074,China)
机构地区 School of Pharmacy
出处 《Journal of Wuhan University of Technology(Materials Science)》 SCIE EI CAS 2012年第1期115-119,共5页 武汉理工大学学报(材料科学英文版)
基金 the National Natural Science Foundation of China (No.20976202) the Natural Science Foundation of Hubei Province (No.2009CDB161)
关键词 ice-melting synthesis laterally sandwich-typed hydrogel columns swelling/de-swellingrates poly(N-isopropylacrylamide) ice-melting synthesis laterally sandwich-typed hydrogel columns swelling/de-swellingrates poly(N-isopropylacrylamide)
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