Hubei Province Engineering and Technology Research Center for Fluorinated Pharmaceuticals, School of Pharmaceutical Sciences , Wuhan University , Wuhan 430071 , China.
Institute of Pharmacy and Pharmacology , University of South China , Hengyang 421001 , China.
Biomacromolecules. 2019 Mar 11;20(3):1281-1287. doi: 10.1021/acs.biomac.8b01693. Epub 2019 Feb 5.
Thermosensitive and imaging-traceable materials with fine-tunable lower critical solution temperature (LCST) around body temperature are highly valuable in biomedicine. However, such materials are rare because it is challenging to fine-tune the LCST and incorporate suitable imaging modalities. Herein, peptidic monodisperse polyethylene glycol (M-PEG) "combs" with fine-tunable LCST, "hot spot" fluorine-19 magnetic resonance imaging (F MRI), thermoresponsive fluorescent imaging, and drug loading ability were developed through accurately programming their structures during solid phase peptide synthesis (SPPS). The easy availability, structural accuracy, biocompatibility, and versatility provide the M-PEG "combs" with promising prospects as thermoresponsive and imaging-traceable biomaterials for controlled drug delivery.
具有精细可调的体温附近低临界溶液温度(LCST)的热敏和成像可追踪材料在生物医学中具有很高的价值。然而,这样的材料很少见,因为精细调谐 LCST 并结合合适的成像方式具有挑战性。在此,通过固相肽合成(SPPS)过程中精确编程其结构,开发了具有精细可调 LCST、“热点”氟-19 磁共振成像(F MRI)、热响应荧光成像以及载药能力的肽单分散聚乙二醇(M-PEG)“梳状”物。M-PEG“梳状”物易于获得、结构准确、生物相容性好、多功能性强,有望成为用于控制药物释放的热敏和成像可追踪生物材料。