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载药胶束双响应型可注射水凝胶用于按需抗菌活性和加速伤口愈合。

Dual-responsive injectable hydrogels encapsulating drug-loaded micelles for on-demand antimicrobial activity and accelerated wound healing.

机构信息

National Engineering Research Center for Biomaterials, Sichuan University, Chengdu 610064, China.

National Engineering Research Center for Biomaterials, Sichuan University, Chengdu 610064, China.

出版信息

J Control Release. 2020 Aug 10;324:204-217. doi: 10.1016/j.jconrel.2020.05.010. Epub 2020 May 7.

Abstract

Disease microenvironment stimuli-responsive hydrogels are of special interests in enhancing the drug delivery specificity for biomedical applications. In order to achieve specific drug release characteristic at the inflammation region, a smart pH- and reactive oxygen species (ROS)-responsive injectable hydrogel with self-healing and remodeling capability was designed in our present work. By grafting phenylboronic acid to the side chain of the alginate polymer, a highly specific dual-responsive hydrogel with low pH and high ROS was obtained. Moreover, the hydrogel was endowed with antibacterial and anti-inflammatory properties respectively via the effective assembly of antibiotic amikacin (AM), and anti-inflammatory drug naproxen (Nap) which were preloaded into the micelles. Such hydrogel formulation not only preserved the structural integrity and excellent rheological properties of the hydrogel but also allowed for a controllable drug release rate at inflammation sites. The antibacterial experiment results in vitro demonstrated that the hydrogel could effectively kill bacteria by amikacin release, with the inhibitive rate reached to 90% for S. aureus and 98% for P.aeruginosa. Furthermore, the anti-inflammatory drug naproxen was also controllably released from the ROS-responsive micelles within 24 h under pH 5.0, and 10 mM HOin vitro. Most importantly, the smart hydrogels showed good biocompatibility, and greatly promoted the healing of infected wounds in vitro by cell scratch assay. In addition, it efficiently reduced the levels of TNF-α (the pro-inflammatory cytokine) by 2.80 times, and increased IL-10 (anti-inflammatory cytokine) by 2.41 times than the hydrogel control without antibiotic and anti-inflammatory drug. Within the dual-responsiveness of pH and ROS, the hydrogel reduced the inflammation response of the surrounding tissues significantly and accelerated the healing process of the infected area. Collectively, this smart hydrogel formula containing antibiotic and drug-loaded micelles is very promising to be applied topically against various microbial infections. We believe that this strategy can also be applied to various disease treatments.

摘要

疾病微环境刺激响应水凝胶在增强药物输送的生物医学应用的特异性方面具有特殊的意义。为了在炎症区域实现特定的药物释放特性,本研究设计了一种具有自修复和重塑能力的智能 pH 和活性氧(ROS)响应型可注射水凝胶。通过将苯硼酸接枝到海藻酸钠聚合物的侧链上,得到了一种具有低 pH 和高 ROS 双重响应性的高度特异性水凝胶。此外,通过将预载入胶束中的抗生素阿米卡星(AM)和抗炎药萘普生(Nap)的有效组装,水凝胶分别具有抗菌和抗炎特性。这种水凝胶配方不仅保持了水凝胶的结构完整性和优异的流变性能,而且允许在炎症部位控制药物释放速率。体外抗菌实验结果表明,水凝胶通过阿米卡星的释放可以有效地杀死细菌,金黄色葡萄球菌的抑制率达到 90%,铜绿假单胞菌的抑制率达到 98%。此外,在 pH 5.0 和 10 mM HOin vitro 条件下,ROS 响应性胶束中的抗炎药物萘普生也可在 24 小时内实现可控释放。最重要的是,智能水凝胶表现出良好的生物相容性,并通过细胞划痕实验大大促进了体外感染伤口的愈合。此外,与不含抗生素和抗炎药的水凝胶对照相比,它可将 TNF-α(促炎细胞因子)的水平降低 2.80 倍,并将 IL-10(抗炎细胞因子)提高 2.41 倍。在 pH 和 ROS 的双重响应性下,水凝胶可显著减轻周围组织的炎症反应,并加速感染区域的愈合过程。总的来说,这种含有抗生素和载药胶束的智能水凝胶配方有望在治疗各种微生物感染方面得到广泛应用。我们相信,这种策略也可以应用于各种疾病的治疗。

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