College of Chemistry, Jilin University, Changchun 130012, China.
State Key Laboratory of Integrated Optoelectronics, College of Electronic Science and Engineering, Jilin University, Changchun 130012, China.
ACS Appl Mater Interfaces. 2023 Aug 16;15(32):38821-38832. doi: 10.1021/acsami.3c07523. Epub 2023 Aug 4.
The emergence of precision medicine and personalized pharmacotherapy has led to the development of advanced drug delivery systems that can respond to multiple stimuli. Conductive hydrogels have excellent electrical signal responsiveness and drug storage capabilities; however, current conductive hydrogels suffer from poor mechanical properties, low ionic conductivity, and high voltage. Herein, a covalently crosslinked viologen hydrogel was prepared using electroactive hyperbranched polyamidoamine (EHP) as the crosslinking center in a polymeric network. Attributed to its unique molecular architecture, this hydrogel exhibits improved mechanical properties (high tensile strength and desirable stretchability up to 1280%). Approvable ionic conductivity, biocompatibility, antibacterial properties, and wearable strain-sensing performance were also disclosed, ascribed to the participation of versatile viologen groups in the hydrogel structure. This hydrogel exhibited high efficiency in drug release (81.6%) at a lower voltage of -1.2 V. Moreover, fascinating pH-stimulus drug release behavior was also demonstrated in both acidic and alkalescent environments owing to the dramatic conformational transition of EHP. This work provides a new design strategy for conductive hydrogels for multiple stimulus-responsive drug delivery systems.
精准医学和个性化药物治疗的出现促使先进的药物输送系统得以发展,这些系统可以对多种刺激做出响应。导电水凝胶具有出色的电信号响应能力和药物储存能力;然而,目前的导电水凝胶存在机械性能差、离子电导率低和电压高等问题。在此,我们使用电活性超支化聚酰胺胺 (EHP) 作为聚合物网络中的交联中心,制备了一种共价交联的紫精水凝胶。由于其独特的分子结构,这种水凝胶表现出改善的机械性能(高拉伸强度和高达 1280%的理想拉伸性)。可批准的离子电导率、生物相容性、抗菌性能和可穿戴应变传感性能也被揭示出来,这归因于多功能紫精基团参与了水凝胶结构。该水凝胶在较低的-1.2 V 电压下表现出高效的药物释放(81.6%)。此外,由于 EHP 的剧烈构象转变,该水凝胶在酸性和碱性环境中均表现出引人注目的 pH 刺激药物释放行为。这项工作为多种刺激响应药物输送系统的导电水凝胶提供了新的设计策略。