Department of Bioengineering, Rice University, PO Box 1892, MS 142, Houston, Texas 77251-1892, USA.
Biomacromolecules. 2010 Mar 8;11(3):797-805. doi: 10.1021/bm9014182.
Stimulus responsive materials hold great promise in biological applications as they can react to changes in physiological stimuli to produce a desired effect. Stimulus responsive macromers designed to respond to temperature changes at or around 37 degrees C and the presence of divalent cations were synthesized from N-isopropylacrylamide, pentaerythritol diacrylate monostearate, 2-hydroxyethyl acrylate, and vinylphosphonic acid by free radical polymerization. Monomers were incorporated into the macromers in ratios approximating the molar feed ratios, and macromers underwent thermogelation around normal body temperature (36.2-40.5 degrees C) as determined by rheology and differential scanning calorimetry. Macromers containing vinylphosphonic acid interacted with calcium ions in solution, displaying decreased sol-gel transition temperatures (27.6-34.4 degrees C in 100 mM CaCl(2)), with decreases of greater magnitude observed for macromers with higher relative vinylphosphonic acid content. Critical micellar concentrations also decreased in a dose-dependent manner with increased vinylphosphonic acid incorporation in solutions with CaCl(2) but not in solutions with NaCl. These dually responsive macromers allow examination of the effect of increasing vinylphosphonic acid content in a macromer, which holds promise in biological applications such as drug and cell delivery or tissue engineering due to the macromer responsiveness at physiological temperatures and concentrations of calcium.
刺激响应材料在生物应用中具有很大的应用前景,因为它们可以对生理刺激的变化做出反应,从而产生所需的效果。刺激响应性大分子是由 N-异丙基丙烯酰胺、季戊四醇二丙烯酸酯单硬脂酸酯、2-羟乙基丙烯酸酯和乙烯基膦酸通过自由基聚合合成的,它们可以响应 37°C 左右的温度变化和二价阳离子的存在。单体以接近摩尔进料比的比例掺入大分子中,并且大分子在正常体温(36.2-40.5°C)附近发生热凝胶化,这是通过流变学和差示扫描量热法确定的。含有乙烯基膦酸的大分子与溶液中的钙离子相互作用,显示出较低的溶胶-凝胶转变温度(在 100mM CaCl2 中为 27.6-34.4°C),对于含有较高相对乙烯基膦酸含量的大分子,观察到的降低幅度更大。在含有 CaCl2 的溶液中,临界胶束浓度也以剂量依赖性的方式降低,但在含有 NaCl 的溶液中则没有。这些双重响应性大分子允许研究在大分子中增加乙烯基膦酸含量的效果,由于大分子在生理温度和钙浓度下的响应性,它们在药物和细胞递送或组织工程等生物应用中具有很大的应用前景。