Biomacromolecules. 2019 Jan 14;20(1):365-374. doi: 10.1021/acs.biomac.8b01549. Epub 2018 Dec 11.
An understanding of thermally induced aggregation and consequent F magnetic resonance imaging (MRI) performance is essential for improved design of thermoresponsive F MRI contrast agents. Herein we describe a series of novel thermoresponsive perfluoropolyether (PFPE)-based comb-shaped poly(2-oxazoline)s (POxs) with different side-chain structures (2-methyl- (MeOx), 2-ethyl- (EtOx), and 2-( n-propyl)-2-oxazoline (nPrOx)). The comb polymers were prepared through reversible addition-fragmentation chain transfer (RAFT) polymerization of the respective oligo(2-oxazoline)acrylates using a perfluoropolyether macro-RAFT agent. The fluoropolyether chain end drives aggregation of the polymers, with small aggregates forming at 300 K for both poly(OMeOxA)-PFPE and poly(OEtOxA)-PFPE. The aggregates decrease in size and display increases in F MRI intensity with temperature, and at 350 K the MeOx polymers are in the form of unimers in solution, similar to the oligoethylene glycol (OEG)-based PFPE polymer. Above the T of poly(OEtOxA)-PFPE, the polymer forms large aggregates, and the F MR imaging performance is degraded. Likewise, poly(OnPrOxA)-PFPE is above the LCST at all temperatures studied (300-350 K), and so weak imaging intensity is obtained. This report of novel thermoresponsive POx-based PFPE polymers highlights the importance of understanding self-association of polymers in solution and provides important insights for the development of "smart" thermoresponsive F MRI contrast agents.
理解热诱导聚集以及随之而来的 F 磁共振成像 (MRI) 性能对于改进热响应型 F MRI 对比剂的设计至关重要。在此,我们描述了一系列具有不同侧链结构的新型热响应性全氟聚醚 (PFPE) 梳状聚 (2-恶唑啉) (POx)(2-甲基-(MeOx)、2-乙基-(EtOx)和 2-(正丙基)-2-恶唑啉(nPrOx))。通过使用全氟聚醚大分子 RAFT 试剂,分别将相应的寡 2-恶唑啉丙烯酸酯进行可逆加成-断裂链转移 (RAFT) 聚合制备梳状聚合物。氟聚醚链端驱动聚合物聚集,对于聚 (OMeOxA)-PFPE 和聚 (OEtOxA)-PFPE,在 300 K 时形成小的聚集体。随着温度的升高,聚集体的尺寸减小,F MRI 强度增加,在 350 K 时,MeOx 聚合物在溶液中呈单体形式,类似于基于聚乙二醇(OEG)的 PFPE 聚合物。在聚 (OEtOxA)-PFPE 的 T 以上,聚合物形成大的聚集体,并且 F MRI 性能降低。同样,聚 (OnPrOxA)-PFPE 在所有研究温度(300-350 K)下均高于 LCST,因此获得的成像强度较弱。本报告中新型热响应性 POx 基 PFPE 聚合物的研究突出了理解聚合物在溶液中自组装的重要性,并为“智能”热响应型 F MRI 对比剂的开发提供了重要的见解。