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将持续释放转变为按需释放:具有多种响应性的自修复鸟嘌呤-硼酸超分子水凝胶用于阿昔洛韦递送。

Transforming sustained release into on-demand release: self-healing guanosine-borate supramolecular hydrogels with multiple responsiveness for Acyclovir delivery.

机构信息

Guangdong Provincial Engineering and Technological Research Center for Drug Carrier Development, Department of Biomedical Engineering, Jinan University, Guangzhou 510632, China.

出版信息

Biomater Sci. 2020 Nov 21;8(22):6190-6203. doi: 10.1039/d0bm00966k. Epub 2020 Sep 23.

Abstract

Supramolecular hydrogels derived from natural biomolecules have promising applications for drug delivery due to their inherent biocompatibility and tunable responsiveness to various stimuli. However, conventional hydrogels only modulate the release kinetics roughly to achieve sustained drug release, exhibiting fast-then-slow release behavior without on/off control. Herein, a guanosine (G)-quartet·Na-borate supramolecular hydrogel (GB hydrogel) cross-linked via a guanosine-borate diester and intertwined by G-nanofibres formed by π-π stacking of G-quartets stabilized by Na is developed for on-demand release of Acyclovir (Acv). This GB hydrogel is facilely prepared by a one-pot hierarchical assembly involving hydrogen bonds, dynamic borate ester bonds and cation coordination, which endow it with tunable mechanical properties, excellent self-healing properties and reversible degradation behavior in response to pH, glucose and ion concentration. Benefiting from that the guanosine analog Acv is able to assemble into a G-quartet by replacing guanosine via reversible hydrogen bonding, the Acv-loaded GB hydrogel showed favorable stability in physiological medium without undesired release and achieved external stimulus-triggered on-demand release with switchable on/off control and tunable release kinetics. Moreover, the GB hydrogel also exhibited excellent in vitro and in vivo biocompatibility. Such a natural nucleoside-based supramolecular hydrogel with on-demand drug release, self-healing property, biodegradability and biocompatibility provides a precisely controlled paradigm to overcome early burst release behavior of conventional hydrogels for the development of injectable hydrogel delivery systems.

摘要

基于天然生物分子的超分子水凝胶由于其固有生物相容性和对各种刺激的可调响应性,在药物传递方面具有广阔的应用前景。然而,传统水凝胶仅通过调节释放动力学来实现药物的持续释放,表现出快速释放然后缓慢释放的行为,而没有开/关控制。在此,通过由 G-四聚体稳定的腺嘌呤核苷-硼酸二酯交联并由 G-四聚体的π-π堆积形成的 G-纳米纤维交织形成的鸟嘌呤(G)-四聚体·Na-硼酸盐超分子水凝胶(GB 水凝胶),用于阿昔洛韦(Acv)的按需释放。该 GB 水凝胶是通过一锅法分级组装制备的,涉及氢键、动态硼酸酯键和阳离子配位,使其具有可调的机械性能、优异的自修复性能和对 pH 值、葡萄糖和离子浓度的可逆降解行为。由于阿昔洛韦类似物 Acv 能够通过可逆氢键取代鸟嘌呤组装成 G-四聚体,负载 Acv 的 GB 水凝胶在生理介质中表现出良好的稳定性,没有不良的释放,并且能够实现外部刺激触发的按需释放,具有可切换的开/关控制和可调的释放动力学。此外,GB 水凝胶还表现出良好的体外和体内生物相容性。这种具有按需药物释放、自修复性、可生物降解性和生物相容性的天然核苷基超分子水凝胶为克服传统水凝胶的早期突释行为提供了一种精确控制的范例,为可注射水凝胶输送系统的发展提供了新的思路。

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