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苯丙氨酸修饰的两性离子树枝状大分子的pH可切换的低临界溶液温度/上临界溶液温度型热敏行为

pH-Switchable LCST/UCST-type thermosensitive behaviors of phenylalanine-modified zwitterionic dendrimers.

作者信息

Tamaki Mamiko, Kojima Chie

机构信息

Department of Applied Chemistry, Graduate School of Engineering, Osaka Prefecture University 1-1 Gakuen-cho, Naka-ku Sakai Osaka 599-8531 Japan

出版信息

RSC Adv. 2020 Mar 11;10(18):10452-10460. doi: 10.1039/d0ra00499e.

Abstract

Thermosensitive polymers are useful as intelligent materials. Dendrimers have well-defined structures, which can work as multifunctional polymers. In this study, we designed and synthesized various phenylalanine (Phe)-modified zwitterionic dendrimers as pH- and thermo-sensitive polymers. First, polyamidoamine (PAMAM) dendrimers were modified with Phe and succinic anhydride (Suc) to prepare carboxy-terminal Phe-modified dendrimers (PAMAM-Suc-Phe and PAMAM-Phe-Suc). Both these dendrimers showed upper critical solution temperature (UCST)-type thermosensitivity. Interestingly, PAMAM-Phe-Suc demonstrated lower critical solution temperature (LCST)-type thermosensitivity at lower pH, but PAMAM-Suc-Phe did not. This indicates that PAMAM-Phe-Suc can switch LCST/UCST-type thermosensitivity according to the solution's pH. PAMAM-Phe-SONa with sulfonic acid termini also demonstrated LCST/UCST-type thermosensitivity switched by pH, with a higher sensitivity than PAMAM-Phe-Suc. Coacervation occurred during the phase separation. The quaternized dendrimers (QPAMAM-Phe-Suc and QPAMAM-Phe-SONa) and dendrimers conjugating isoleucine or 4-(amino methyl)benzoic acid did not show the unique thermosensitive properties, indicating that the tertiary amines in the dendrimer core and the Phe residues at the termini are indispensable. PAMAM-Phe-SONa could separate a model compound (rose bengal) from an aqueous solution because of its encapsulation ability. This is the first report of pH-switchable LCST/UCST-type thermosensitive dendrimers.

摘要

热敏聚合物作为智能材料很有用。树枝状大分子具有明确的结构,可作为多功能聚合物。在本研究中,我们设计并合成了各种苯丙氨酸(Phe)修饰的两性离子树枝状大分子作为pH和温度敏感聚合物。首先,用Phe和琥珀酸酐(Suc)对聚酰胺胺(PAMAM)树枝状大分子进行修饰,以制备羧基末端Phe修饰的树枝状大分子(PAMAM-Suc-Phe和PAMAM-Phe-Suc)。这两种树枝状大分子均表现出上临界溶液温度(UCST)型热敏性。有趣的是,PAMAM-Phe-Suc在较低pH下表现出下临界溶液温度(LCST)型热敏性,但PAMAM-Suc-Phe没有。这表明PAMAM-Phe-Suc可以根据溶液的pH值切换LCST/UCST型热敏性。带有磺酸末端的PAMAM-Phe-SONa也表现出由pH切换的LCST/UCST型热敏性,且比PAMAM-Phe-Suc具有更高的灵敏度。相分离过程中发生了凝聚。季铵化树枝状大分子(QPAMAM-Phe-Suc和QPAMAM-Phe-SONa)以及缀合异亮氨酸或4-(氨基甲基)苯甲酸的树枝状大分子没有表现出独特的热敏性质,这表明树枝状大分子核心中的叔胺和末端的Phe残基是必不可少的。PAMAM-Phe-SONa由于其包封能力,可以从水溶液中分离出模型化合物(孟加拉玫瑰红)。这是关于pH可切换的LCST/UCST型热敏树枝状大分子的首次报道。

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