3,3-双(羟甲基)氧杂环丁烷与缩水甘油的阳离子共聚合:具有高含量伯羟基的生物相容性超支化聚醚多元醇
Cationic Copolymerization of 3,3-Bis(hydroxymethyl)oxetane and Glycidol: Biocompatible Hyperbranched Polyether Polyols with High Content of Primary Hydroxyl Groups.
作者信息
Christ Eva-Maria, Hobernik Dominika, Bros Matthias, Wagner Manfred, Frey Holger
机构信息
Institute of Organic Chemistry, Johannes Gutenberg-University Mainz , Duesbergweg 10-14, D-55128 Mainz, Germany.
Graduate School Materials Science in Mainz (MAINZ), Staudingerweg 9, D-55128 Mainz, Germany.
出版信息
Biomacromolecules. 2015 Oct 12;16(10):3297-307. doi: 10.1021/acs.biomac.5b00951. Epub 2015 Sep 23.
The cationic ring-opening copolymerization of 3,3-bis(hydroxymethyl)oxetane (BHMO) with glycidol using different comonomer ratios (BHMO content from 25 to 90%) and BF3OEt2 as an initiator has been studied. Apparent molecular weights of the resulting hyperbranched polyether copolymers ranged from 1400 to 3300 g mol(-1) (PDI: 1.21-1.48; method: SEC, linear PEG standards). Incorporation of both comonomers is evidenced by MALDI-TOF mass spectroscopy. All hyperbranched polyether polyols with high content of primary hydroxyl groups portray good solubility in water, which correlates with an increasing content of glycerol units. Detailed NMR characterization was employed to elucidate the copolymer microstructures. Kinetic studies via FTIR demonstrated a weak gradient-type character of the copolymers. MTT assays of the copolymers (up to 100 μg mL(-1)) on HEK and fibroblast cell lines (3T3, L929, WEHI) as well as viability tests on the fibroblast cells were carried out to assess the biocompatibility of the materials, confirming excellent biocompatibility. Transfection efficiency characterization by flow cytometry and confocal laser microscopy demonstrated cellular uptake of the copolymers. Antiadhesive properties of the materials on surfaces were assessed by adhesion assays with fibroblast cells.
研究了以三氟化硼乙醚(BF₃OEt₂)为引发剂,3,3-双(羟甲基)氧杂环丁烷(BHMO)与缩水甘油在不同共聚单体比例(BHMO含量为25%至90%)下的阳离子开环共聚反应。所得超支化聚醚共聚物的表观分子量范围为1400至3300 g·mol⁻¹(PDI:1.21 - 1.48;方法:尺寸排阻色谱法,线性聚乙二醇标准品)。基质辅助激光解吸电离飞行时间质谱(MALDI-TOF)证实了两种共聚单体均已掺入。所有具有高伯羟基含量的超支化聚醚多元醇在水中均表现出良好的溶解性,这与甘油单元含量的增加相关。采用详细的核磁共振(NMR)表征来阐明共聚物的微观结构。通过傅里叶变换红外光谱(FTIR)进行的动力学研究表明共聚物具有弱梯度型特征。对共聚物(浓度高达100 μg·mL⁻¹)在人胚肾细胞(HEK)和成纤维细胞系(3T3、L929、WEHI)上进行了MTT检测,并对成纤维细胞进行了活力测试,以评估材料的生物相容性,证实其具有优异的生物相容性。通过流式细胞术和共聚焦激光显微镜对转染效率进行表征,证明了共聚物可被细胞摄取。通过与成纤维细胞进行粘附试验评估了材料在表面的抗粘附性能。