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Supramolecular Hydrogels with Reverse Thermal Gelation Properties from (Oligo)tyrosine Containing Block Copolymers

机译:来自(Oligo)酪氨酸含嵌段共聚物的具有反向热凝胶化性质的超分子水凝胶

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摘要

Novel block copolymers comprising poly(ethylene glycol) (PEG) and an oligo(tyrosine) block were synthesized in different compositions by N-carboxyanhydride (NCA) polymerization. It was shown that PEG2000-Tyr6 undergoes thermoresponsive hydrogelation at a low concentration range of 0.2S—3.0 wt % within a temperature range of 25—50 °C. Cryogenic transmission electron microscopy (Cryo-TEM) revealed a continuous network of fibers throughout the hydrogel sample, even at concentrations as low as 0.25 wt 96. Circular dichroism (CD) results suggest that better packing of the /?-sheet tyrosine block at increasing temperature induces the reverse thermdgelation. A preliminary assessment of the potential of the hydrogel for in vitro application confirmed the hydrogel is not cytotoxic, is biodegradable, and produced a sustained release of a small-molecule drug.
机译:通过N-羧酸酐(NCA)聚合,在不同的组合物中合成了包含聚(乙二醇)(PEG)和寡核苷酸(酪氨酸)嵌段的新型嵌段共聚物。 结果表明,PEG2000-TYR6在25-50℃的温度范围内以0.2s-3.0wt%的低浓度范围进行热响应水滤液。 低温透射电子显微镜(Cryo-TEM)在整个水凝胶样品中揭示了整个水凝胶样品的连续纤维网络,即使浓度低至0.25重量为0.25重量。 温度诱导反向热电图。 对体外施用水凝胶的电位的初步评估证实水凝胶不是细胞毒素,是生物降解的,并产生了小分子药物的持续释放。

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