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DNA-聚(乙烯醇)凝胶基质:释放性能强烈依赖于电解质和阳离子表面活性剂。

DNA-poly(vinyl alcohol) gel matrices: release properties are strongly dependent on electrolytes and cationic surfactants.

机构信息

Department of Chemistry, University of Coimbra, 3004-535 Coimbra, Portugal.

出版信息

Colloids Surf B Biointerfaces. 2013 Jan 1;101:111-7. doi: 10.1016/j.colsurfb.2012.05.039. Epub 2012 Jun 7.

Abstract

The release of DNA from cryogel PVA-DNA gel matrices to different electrolyte aqueous solutions was investigated. The rate of release and the distribution coefficient of DNA have been quantified by using a first order kinetic law equation, developed in the frame of a partition-based model. The release of DNA from gels to 1:1 sodium and nitrate salts shows that the transport properties are dependent on the ability of anions/cations to solubilise the DNA in the aqueous phase which, with the exception of bromide, can be related to the Hofmeister series; in the presence of multivalent electrolytes, or increasing the ionic strength, the condensation of DNA inside the gel, followed by a phase separation as seen by scanning electron microscopy, induces the retention of DNA inside the polymer matrix. The DNA condensation and/or phase separation, which contribute to a decrease in the water volume fraction inside the gel, determined by swelling degree experiments, also lead to a decrease in the rate constant of DNA release; such decrease can be justified by the difficulty of the molecular aggregate to move through out the polymeric structure. The DNA release is also dependent on the pH of the bulk solution. The effect of uni- and di-valent cationic surfactants on the release properties of DNA was also evaluated. Our findings suggest that the kinetics of DNA release depends on a complex balance between different structural properties of the surfactants, namely charge, bulkiness of the headgroup and alkyl chain length.

摘要

研究了 DNA 从 cryogel PVA-DNA 凝胶基质释放到不同电解质水溶液中的情况。通过使用基于分配模型的一阶动力学定律方程,定量了 DNA 的释放速率和分配系数。DNA 从凝胶释放到 1:1 的钠盐和硝酸盐盐中表明,运输性质取决于阴离子/阳离子将 DNA 在水相中的溶解能力,除了溴化物之外,这可以与豪夫迈斯特系列相关;在存在多价电解质或增加离子强度的情况下,DNA 在凝胶内的凝结,随后如扫描电子显微镜所见的相分离,导致 DNA 保留在聚合物基质内。DNA 的凝结和/或相分离,导致凝胶内水体积分数的降低,这通过溶胀度实验确定,也导致 DNA 释放速率常数的降低;这种降低可以通过分子聚集体穿过聚合物结构的难度来解释。DNA 的释放也依赖于本体溶液的 pH 值。还评估了单价和二价阳离子表面活性剂对 DNA 释放性质的影响。我们的研究结果表明,DNA 释放的动力学取决于表面活性剂的不同结构性质之间的复杂平衡,即电荷、头部基团的体积和烷基链长度。

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