Mandal Deep, Mandal Subhra Kanti, Ghosh Moumita, Das Prasanta Kumar
Department of Biological Chemistry, Indian Association for the Cultivation of Science, Jadavpur, Kolkata, 700032 (India).
Chemistry. 2015 Aug 17;21(34):12042-52. doi: 10.1002/chem.201501170. Epub 2015 Jul 15.
A pyrene-containing phenylboronic acid (PBA) functionalized low-molecular-weight hydrogelator was synthesized with the aim to develop glucose-sensitive insulin release. The gelator showed the solvent imbibing ability in aqueous buffer solutions of pH values, ranging from 8-12, whereas the sodium salt of the gelator formed a hydrogel at physiological pH 7.4 with a minimum gelation concentration (MGC) of 5 mg mL(-1) . The aggregation behavior of this thermoreversible hydrogel was studied by using microscopic and spectroscopic techniques, including transmission electron microscopy, FTIR, UV/Vis, luminescence, and CD spectroscopy. These investigations revealed that hydrogen bonding, π-π stacking, and van der Waals interactions are the key factors for the self-assembled gelation. The diol-sensitive PBA part and the pyrene unit in the gelator were judiciously used in fluorimetric sensing of minute amounts of glucose at physiological pH. The morphological change of the gel due to addition of glucose was investigated by scanning electron microscopy, which denoted the glucose-responsive swelling of the hydrogel. A rheological study indicated the loss of the rigidity of the native gel in the presence of glucose. Hence, the glucose-induced swelling of the hydrogel was exploited in the controlled release of insulin from the hydrogel. The insulin-loaded hydrogel showed thixotropic self-recovery property, which hoisted it as an injectable soft composite. Encouragingly, the gelator was found to be compatible with HeLa cells.
合成了一种含芘的苯基硼酸(PBA)功能化的低分子量水凝胶剂,旨在实现葡萄糖敏感的胰岛素释放。该凝胶剂在pH值为8 - 12的水性缓冲溶液中表现出溶剂吸收能力,而该凝胶剂的钠盐在生理pH值7.4时形成水凝胶,最低凝胶浓度(MGC)为5 mg mL⁻¹。通过使用显微镜和光谱技术,包括透射电子显微镜、傅里叶变换红外光谱(FTIR)、紫外/可见光谱、发光光谱和圆二色光谱(CD),研究了这种热可逆水凝胶的聚集行为。这些研究表明,氢键、π-π堆积和范德华相互作用是自组装凝胶化的关键因素。凝胶剂中对二醇敏感的PBA部分和芘单元被明智地用于在生理pH值下对微量葡萄糖的荧光传感。通过扫描电子显微镜研究了由于添加葡萄糖导致的凝胶形态变化,这表明水凝胶具有葡萄糖响应性膨胀。流变学研究表明,在葡萄糖存在下,天然凝胶的刚性丧失。因此,利用水凝胶的葡萄糖诱导膨胀来实现胰岛素从水凝胶中的控释。负载胰岛素的水凝胶表现出触变自恢复特性,这使其成为一种可注射的软复合材料。令人鼓舞的是,发现该凝胶剂与HeLa细胞兼容。