Negrini Renata, Sánchez-Ferrer Antoni, Mezzenga Raffaele
ETH Zurich Food & Soft Materials Science, Institute of Food Nutrition & Health , Department of Health Science & Technology, Schmelzbergstrasse 9, LFO E23, 8092 Zürich, Switzerland.
Langmuir. 2014 Apr 22;30(15):4280-8. doi: 10.1021/la5008439. Epub 2014 Apr 9.
The release of positive, negative, and neutral hydrophilic drugs from pH responsive bicontinuous cubic phases was investigated under varying conditions of electrostatic interactions. A weak acid, linoleic acid (LA), or a weak base, pyridinylmethyl linoleate (PML), were added to the neutral monolinolein (ML) in order to form lyotropic liquid-crystalline (LLC) phases, which are negatively charged at neutral pH and positively charged at acidic pH. Release studies at low ionic strength (I = 20 mM) and at different pH values (3 and 7) revealed that electrostatic attraction between a positive drug, proflavine (PF), and the negatively charged LLC at pH = 7 or between a negative drug, antraquinone 2-sulfonic acid sodium salt (AQ2S), and the positively charged LLC at pH = 3 did delay the release behavior, while electrostatic repulsion affects the transport properties only to some extent. Release profiles of a neutral drug, caffeine, were not affected by the surface charge type and density in the cubic LLCs. Moreover, the influence of ionic strength was also considered up to 150 mM, corresponding to a Debye length smaller than the LLC water channels radius, which showed that efficient screening of electrostatic attractions occurring within the LLC water domains results in an increased release rate. Four transport models were applied to fit the release data, providing an exhaustive, quantitative insight on the role of electrostatic interactions in transport properties from pH responsive bicontinuous cubic phases.
在不同静电相互作用条件下,研究了pH响应性双连续立方相中正性、负性和中性亲水性药物的释放情况。向中性单亚油酸甘油酯(ML)中添加弱酸亚油酸(LA)或弱碱吡啶基亚油酸甲酯(PML),以形成溶致液晶(LLC)相,该相在中性pH下带负电荷,在酸性pH下带正电荷。在低离子强度(I = 20 mM)和不同pH值(3和7)下的释放研究表明,正性药物硫酸普罗黄素(PF)与pH = 7时带负电荷的LLC之间或负性药物蒽醌-2-磺酸钠盐(AQ2S)与pH = 3时带正电荷的LLC之间的静电吸引确实会延迟释放行为,而静电排斥仅在一定程度上影响传输性质。中性药物咖啡因的释放曲线不受立方LLC中表面电荷类型和密度的影响。此外,还考虑了高达150 mM的离子强度的影响,这对应于德拜长度小于LLC水通道半径,结果表明对LLC水区域内发生的静电吸引进行有效屏蔽会导致释放速率增加。应用四种传输模型来拟合释放数据,从而对静电相互作用在pH响应性双连续立方相传输性质中的作用提供了详尽的定量见解。