Department of Chemistry, Korea Advanced Institute of Science and Technology (KAIST), 291 University Road, Daejeon 34141, Republic of Korea.
R&D Center, InnoTherapy Inc., Seoul 34028, Republic of Korea.
ACS Appl Mater Interfaces. 2022 Jan 12;14(1):236-244. doi: 10.1021/acsami.1c19151. Epub 2021 Dec 22.
Gelatin is one of the most versatile biopolymers in various biomedical applications. A gelatin derivative gelatin-catechol (Gel-C) was developed in this study to further optimize its chemical and physical properties such as thermal reversibility and injectability. We found that Gel-C remains in a solution state at room temperature, and the temperature-dependent gelation capability of gelatin is well preserved in Gel-C. Its gel-forming temperature decreased to about 10 °C (about 30 °C for gelatin), and a series of gelatin derivatives with different gel-forming temperatures (10-30 °C) were formed by mixing gelatin and Gel-C in different ratios. Additionally, irreversible Gel-C hydrogels could be made without the addition of external stimuli by combining the physical cross-linking of gelatin and the chemical cross-linking of catechol. At the same time, properties of Gel-C hydrogels such as thermal reversibility and injectability could be manipulated by controlling the temperature and pH of the precursor solution. By simulating the formation of an irreversible Gel-C hydrogel , an gelling system was fabricated by lowering the local temperature of the hydrogel with cold shock, thus realizing targeted and localized molecular delivery with prolonged retention time. This simple system integrated with the temperature responsiveness of gelatin and chemical cross-linking of catechol groups thus provides a promising platform to fabricate an gelling system for drug delivery.
明胶是各种生物医学应用中用途最广泛的生物聚合物之一。本研究开发了一种明胶衍生物——明胶-儿茶酚(Gel-C),以进一步优化其化学和物理性质,如热可逆性和可注射性。我们发现 Gel-C 在室温下保持溶液状态,并且明胶的温度依赖性凝胶形成能力在 Gel-C 中得到很好的保留。其凝胶形成温度降低到约 10°C(明胶约为 30°C),通过将明胶和 Gel-C 以不同比例混合,可以形成一系列具有不同凝胶形成温度(10-30°C)的明胶衍生物。此外,通过结合明胶的物理交联和儿茶酚的化学交联,无需添加外部刺激即可形成不可逆的 Gel-C 水凝胶。同时,可以通过控制前体溶液的温度和 pH 值来操纵 Gel-C 水凝胶的热可逆性和可注射性等特性。通过模拟不可逆 Gel-C 水凝胶的形成,通过冷休克降低水凝胶的局部温度来制造凝胶系统,从而实现具有延长保留时间的靶向和局部分子递药。该简单系统结合了明胶的温度响应性和儿茶酚基团的化学交联,为制备用于药物输送的凝胶系统提供了一个有前途的平台。