Tigner Thomas J, Scull Grant, Brown Ashley C, Alge Daniel L
Department of Biomedical Engineering, Texas A&M University, College of Engineering, College Station, Texas 77845, United States.
Joint Department of Biomedical Engineering, North Carolina State University and University of North Carolina at Chapel Hill, College of Engineering, Raleigh, North Carolina 27695, United States.
Macromolecules. 2023 Oct 30;56(21):8518-8528. doi: 10.1021/acs.macromol.3c00557. eCollection 2023 Nov 14.
Polymer-polymer aqueous two-phase systems (ATPSs) are attractive for microgel synthesis, but given the complexity of phase separation, predicting microgel material properties from ATPS formulations is not trivial. The objective of this study was to determine how the phase diagram of a poly(ethylene glycol) (PEG) and dextran ATPS is related to the material properties of PEG microgel products. PEG-dextran ATPSs were prepared from four-arm 20 kDa PEG-norbornene and 40 kDa dextran in phosphate buffered saline (PBS), and the phase diagram was constructed. PEG microgels were synthesized from five ATPS formulations using an oligopeptide cross-linker and thiol-norbornene photochemistry. Thermogravimetric analysis (TGA) revealed that the polymer concentration of microgel pellets linearly correlates with the average concentration of PEG in the ATPS rather than the separated phase compositions, as determined from the phase diagram. Atomic force microscopy (AFM) and bulk rheology studies demonstrated that the mechanical properties of microgels rely on both the average concentration of PEG in the ATPS and the ATPS volume ratio as determined from the phase diagram. These findings suggest that PEG-dextran ATPSs undergo homogenization upon mixing, which principally determines the material properties of the microgels upon gelation.
聚合物-聚合物水相两相体系(ATPSs)对微凝胶合成具有吸引力,但鉴于相分离的复杂性,从ATPS配方预测微凝胶材料特性并非易事。本研究的目的是确定聚乙二醇(PEG)和葡聚糖ATPS的相图如何与PEG微凝胶产物的材料特性相关。PEG-葡聚糖ATPS由四臂20 kDa PEG-降冰片烯和40 kDa葡聚糖在磷酸盐缓冲盐水(PBS)中制备,并构建了相图。使用寡肽交联剂和硫醇-降冰片烯光化学从五种ATPS配方合成了PEG微凝胶。热重分析(TGA)表明,微凝胶颗粒的聚合物浓度与ATPS中PEG的平均浓度呈线性相关,而不是与相图确定的分离相组成相关。原子力显微镜(AFM)和本体流变学研究表明,微凝胶的机械性能依赖于ATPS中PEG的平均浓度以及相图确定的ATPS体积比。这些发现表明,PEG-葡聚糖ATPS在混合时会发生均匀化,这主要决定了凝胶化时微凝胶的材料特性。