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含聚(N-异丙基丙烯酰胺)的温敏海藻酸钠微球的释放性能

Release property of temperature-sensitive alginate beads containing poly(N-isopropylacrylamide).

作者信息

Kim Mi Hee, Kim Jin-Chul, Lee Hyeon Yong, Kim Jong Dai, Yang Jae Ho

机构信息

Department of Biochemical Engineering, Chonnam National University, Kwangju 500-070, Korea.

出版信息

Colloids Surf B Biointerfaces. 2005 Nov 25;46(1):57-61. doi: 10.1016/j.colsurfb.2005.09.002. Epub 2005 Oct 20.

Abstract

The graft copolymer (APN) of alginate and poly(N-isopropylacrylamide) (PNIPAM) were synthesized and APN beads were prepared by dropping the aqueous solution of the copolymer into an aqueous solution of Ca(2+) solution. Alginate chains were employed to play a role in forming beads by electrostatic interactions with a multivalent ion, Ca(2+). Grafted PNIPAM segments were adopted to act as a valve for the pores of the beads, since they exhibit the properties of thermal contraction and expansion. The percent of release of blue dextran from APN beads was higher at 40 degrees C than at 25 degrees C. The difference in the release between two temperatures became more distinguishable when the content of PNIPAM in APN beads is higher. Below lower critical solution temperature (LCST), the expanded PNIPAM would close the pores of the beads, resulting in a lower release rate. Above LCST, the thermally contracted polymer would open the pores, resulting in a higher release rate. The percent of release from APN beads were investigated when the temperature of the release medium is altered. The release rate was relatively low at 25 degrees C. The temperature, however, changed up to 40 degrees C, a marked increase in the release rate was observed. These trends were found to be reproducible when the temperature was repeatedly altered between 25 and 40 degrees C. As a result, a stepwise response to the temperature alteration was obtained.

摘要

合成了藻酸盐与聚(N-异丙基丙烯酰胺)(PNIPAM)的接枝共聚物(APN),并通过将共聚物水溶液滴入Ca(2+)溶液中来制备APN珠。藻酸盐链通过与多价离子Ca(2+)的静电相互作用在形成珠粒过程中发挥作用。接枝的PNIPAM链段被用作珠粒孔隙的阀门,因为它们具有热收缩和膨胀的特性。APN珠在40℃时蓝色葡聚糖的释放百分比高于25℃时。当APN珠中PNIPAM的含量较高时,两个温度下释放的差异变得更加明显。低于最低临界溶液温度(LCST)时,膨胀的PNIPAM会封闭珠粒的孔隙,导致释放速率较低。高于LCST时,热收缩的聚合物会打开孔隙,导致释放速率较高。当改变释放介质的温度时,研究了APN珠的释放百分比。在25℃时释放速率相对较低。然而,当温度升至40℃时,观察到释放速率显著增加。当温度在25℃和40℃之间反复变化时,发现这些趋势是可重复的。结果,获得了对温度变化的逐步响应。

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