Deo Namita, Ruetsch S, Ramaprasad K R, Kamath Y
TRI/Princeton, 601 Prospect Avenue, P. O. Box 625, Princeton, NJ 08542, USA.
J Cosmet Sci. 2010 Nov-Dec;61(6):421-37.
New thermosensitive, cationic hydrogels were synthesized by the dispersion copolymerization of N-isopropylacrylamide (NIPAM) and (3-acrylamidopropyl)trimethylammonium chloride (AAPTAC). In the polymerization protocol, an amide-based comonomer, (3-acrylamidopropyl)trimethylammonium chloride, was reacted as a new alternative monomer for introducing positive charges into the thermosensitive hydrogel. The hydrogels were synthesized without making any pH adjustment in the aqueous medium. These hydrogel particles exhibited colloidal stability in the pH range of 1.5 to 11.0, while similar cationic hydrogels were reported to be unstable at pHs higher than 6. The stronger cationic character of the selected comonomer provided higher colloidal stability to the poly(NIPAM-co-AAPTAC) hydrogels. Furthermore, these hydrogels displayed sensitivity towards temperature, pH, and salt concentration. Interestingly, the particle size of hydrogels was found to be decreased significantly with an increase in temperature and salt concentration. In addition, using pyrene fluorescence spectroscopy, it was established that the hydrophobicity/hydrophilicity of the hydrogel particles was largely controlled by both pH and temperature. The thermosensitive hydrogels reported in this paper may be suitable for delivering different actives for cosmetic and medical applications. Although direct application of these hydrogel particles in cosmetics has not been shown at this stage, the methodology of making them and controlling their absorption and release properties as a function of temperature and pH has been demonstrated. Furthermore, these hydrogels may also have applications in scavenging organic and inorganic toxics.
通过N-异丙基丙烯酰胺(NIPAM)和(3-丙烯酰胺基丙基)三甲基氯化铵(AAPTAC)的分散共聚合成了新型热敏阳离子水凝胶。在聚合方案中,一种基于酰胺的共聚单体(3-丙烯酰胺基丙基)三甲基氯化铵作为一种新的替代单体,用于将正电荷引入热敏水凝胶中。水凝胶是在水介质中不进行任何pH调节的情况下合成的。这些水凝胶颗粒在1.5至11.0的pH范围内表现出胶体稳定性,而据报道类似的阳离子水凝胶在pH高于6时不稳定。所选共聚单体更强的阳离子特性为聚(NIPAM-co-AAPTAC)水凝胶提供了更高的胶体稳定性。此外,这些水凝胶对温度、pH和盐浓度表现出敏感性。有趣的是,发现水凝胶的粒径随着温度和盐浓度的增加而显著减小。此外,使用芘荧光光谱法确定,水凝胶颗粒的疏水性/亲水性在很大程度上受pH和温度的控制。本文报道的热敏水凝胶可能适用于为化妆品和医疗应用递送不同的活性成分。虽然目前尚未展示这些水凝胶颗粒在化妆品中的直接应用,但已经证明了制备它们以及控制其吸收和释放特性随温度和pH变化的方法。此外,这些水凝胶在清除有机和无机毒物方面也可能有应用。