Kojima Chie, Fu Yunshen, Tamaki Mamiko
Department of Applied Chemistry, Graduate School of Engineering, Osaka Prefecture University, 1-1, Gakuen-cho, Naka-ku, Sakai 599-8531, Osaka, Japan.
Polymers (Basel). 2022 Jun 15;14(12):2426. doi: 10.3390/polym14122426.
Stimuli-sensitive materials, such as pH- and temperature-responsive polymers, are useful as smart materials. Phenylalanine (Phe)-modified polyamidoamine (PAMAM) dendrimers with succinic acid termini, PAMAM-Phe-Suc, have been reported as unique pH-switchable lower critical solution temperature (LCST)-/upper critical solution temperature (UCST)-type thermosensitive polymers. Regulating the phase transition behavior of dendrimers is important for their applications. This study investigated the relationship between the dendrimer structure and stimuli sensitivity. Phe-modified PAMAM dendrimers with cyclohexanedicarboxylate termini (PAMAM-Phe-CHex) and sulfonate termini (PAMAM-Phe-SONa) were synthesized. The temperature-dependent transmittance of these aqueous dendrimer solutions was examined at various pH values. PAMAM-Phe-CHex with Phe at all termini (PAMAM-Phe64-CHex) demonstrated a broad UCST-like phase transition at pH 7.0 but lacked an LCST-type phase transition. PAMAM-Phe-CHex with ≤ 27 Phe residues showed both LCST- and UCST-like phase transitions at different pH values, but the phase transition was broad. PAMAM-Phe-SONa showed both LCST- and UCST-type phase transitions at different pH values, and the transition temperature increased as the bound Phe number decreased. Thus, the phase transition behavior of PAMAM-Phe-SONa dendrimers can be regulated by varying the Phe/PAMAM ratios.
刺激敏感材料,如pH值和温度响应型聚合物,可用作智能材料。据报道,具有琥珀酸端基的苯丙氨酸(Phe)修饰的聚酰胺胺(PAMAM)树枝状大分子PAMAM-Phe-Suc是独特的pH可切换的低临界溶液温度(LCST)/高临界溶液温度(UCST)型热敏聚合物。调节树枝状大分子的相变行为对其应用很重要。本研究调查了树枝状大分子结构与刺激敏感性之间的关系。合成了具有环己烷二羧酸端基(PAMAM-Phe-CHex)和磺酸酯端基(PAMAM-Phe-SONa)的Phe修饰的PAMAM树枝状大分子。在不同pH值下检测了这些树枝状大分子水溶液的温度依赖性透光率。所有端基都带有Phe的PAMAM-Phe-CHex(PAMAM-Phe64-CHex)在pH 7.0时表现出宽泛的类似UCST的相变,但缺乏类似LCST的相变。Phe残基≤27的PAMAM-Phe-CHex在不同pH值下均表现出类似LCST和UCST的相变,但相变较宽泛。PAMAM-Phe-SONa在不同pH值下均表现出类似LCST和UCST的相变,且转变温度随着结合的Phe数量减少而升高。因此,PAMAM-Phe-SONa树枝状大分子的相变行为可通过改变Phe/PAMAM比例来调节。