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含有两性聚(二烯丙基胺-co-马来酸)的双层 pH 敏感层层膜。

Dual pH-sensitive layer-by-layer films containing amphoteric poly(diallylamine-co-maleic acid).

机构信息

Graduate School of Pharmaceutical Sciences, Tohoku University, Aramaki, Aoba-ku, Sendai 980-8578, Japan.

出版信息

J Colloid Interface Sci. 2013 Jun 1;399:26-32. doi: 10.1016/j.jcis.2013.02.039. Epub 2013 Mar 5.

DOI:10.1016/j.jcis.2013.02.039
PMID:23528897
Abstract

Layer-by-layer (LbL) thin films were prepared using an amphoteric copolymer consisting of alternating diallylamine and maleic acid monomer units (PDAMA), and pH-induced decomposition of the films was studied. LbL deposition of poly(styrene sulfonate) (PSS) and PDAMA on a solid surface afforded thin films at pH 3.0, while thin films did not form at pH 8.0. In contrast, PDAMA-poly(N-ethyl-4-vinylpyridine) (PEVP) films were constructed by LbL deposition of PDAMA and PEVP at pH 8.0, though films could not be obtained at pH 3.0. These results were explained based on the amphoteric nature of PDAMA, which is net positively and negatively charged at pH 3.0 and 8.0, respectively. PSS-PDAMA films were stable at pH 3.0-4.0 in a 150 mM NaCl solution and decomposed upon immersion in solutions with pH 4.3 or higher as a result of the reversal of the net PDAMA charge from positive to negative. In contrast, PDAMA-PEVP films disintegrated at pH 4.0 or lower. Thus, PDAMA-containing LbL films were found to be dual pH-sensitive: the films can be decomposed at acidic or neutral pH depending on the type of counter polymer in the film. PSS-PDAMA and PDAMA-PEVP films were also sensitive to salt concentration, where a higher concentration of NaCl in the solution in which the films were immersed facilitated decomposition of the films. The effect of salt concentration was attributed to partial breakage of the ion pairing between PDAMA and the counter polymers as a result of competitive binding with Na(+) and Cl(-) ions.

摘要

采用由二烯丙基胺和马来酸单体单元交替组成的两性共聚物(PDAMA),通过层层(LbL)技术制备了薄膜,并研究了薄膜的 pH 诱导分解。在 pH 3.0 下,在固体表面上通过 LbL 沉积聚(苯乙烯磺酸盐)(PSS)和 PDAMA 可以得到薄膜,而在 pH 8.0 下则不能形成薄膜。相比之下,在 pH 8.0 下通过 LbL 沉积 PDAMA 和聚 N-乙基-4-乙烯基吡啶(PEVP)可以构建 PDAMA-PEVP 薄膜,尽管在 pH 3.0 下无法获得薄膜。这些结果基于 PDAMA 的两性性质得到了解释,PDAMA 在 pH 3.0 和 8.0 时分别带有净正电荷和净负电荷。在 150 mM NaCl 溶液中,PSS-PDAMA 薄膜在 pH 3.0-4.0 时稳定,当浸入 pH 4.3 或更高的溶液中时,由于 PDAMA 净电荷从正变为负,薄膜会分解。相比之下,PDAMA-PEVP 薄膜在 pH 4.0 或更低时会分解。因此,含有 PDAMA 的 LbL 薄膜具有双重 pH 敏感性:根据薄膜中反离子聚合物的类型,薄膜可以在酸性或中性 pH 下分解。PSS-PDAMA 和 PDAMA-PEVP 薄膜也对盐浓度敏感,在薄膜浸入的溶液中 NaCl 浓度较高时,有利于薄膜的分解。盐浓度的影响归因于 PDAMA 与反离子聚合物之间的离子配对部分断裂,这是由于与 Na(+)和 Cl(-)离子的竞争结合所致。

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