Qiulan Tong, Zeng Yi, Lei Ma, Yunfei Tan, Danni Liu, Xiaoyu Cao, Xiaomin Ma, Xudong Li
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引用次数: 0
摘要
包括两种或两种以上活性剂的多相皮克林乳剂对于有效处理复杂伤口具有重要意义。然而,目前基于皮克林乳剂的策略仍不能令人满意,因为它们只涉及非活性颗粒的稳定和油相中疏水性药物的封装。本文将百里香精油(TEO)封装在功能性茶多酚(TP)-姜黄素(Cur)纳米颗粒(TC NPs)的外壳中,开发出一种新型皮克林乳剂(TEO/TC PE)。疏水性的 Cur 与亲水性的 TP 加载后得到 TC NPs,在均质化条件下,这些 TC NPs 吸附在 TEO 液滴表面,形成稳定的核壳结构。由于这种水包油(O/W)结构,pH 响应型崩解 TC NPs 先释放出 Cur,然后从乳液中释放出 TEO,从而产生了 TEO/TC PE 的协同功能,增强了抗菌、消除生物膜、抗氧化和抗炎活性。将这种可注射的 TEO/TC PE 用于治疗感染性全厚皮肤缺损,伤口愈合效果令人满意,血管生成、胶原沉积和皮肤再生迅速。这种完全由植物活性产品构成的 TEO/TC PE 具有生物安全性,有望引领未来新型伤口敷料的发展。
Microenvironment-Responsive Antibacterial, Anti-Inflammatory, and Antioxidant Pickering Emulsion Stabilized by Curcumin-Loaded Tea Polyphenol Particles for Accelerating Infected Wound Healing.
Multiphase Pickering emulsions, including two or more active agents, are of great importance to effectively manage complicated wounds. However, current strategies based on Pickering emulsions are still unsatisfying since they involve only stabilization by inactive particles and encapsulation of the hydrophobic drugs in the oil phase. Herein, thyme essential oil (TEO) was encapsulated in the shell of functional tea polyphenol (TP)-curcumin (Cur) nanoparticles (TC NPs) to exemplarily develop a novel Pickering emulsion (TEO/TC PE). Hydrophobic Cur was loaded with hydrophilic TP to obtain TC NPs, and under homogenization, these TC NPs adsorbed on the surface of TEO droplets to form a stable core-shell structure. Owing to such an oil-in-water (O/W) structure, the sequential release of the first Cur from pH-responsive disintegrated TC NPs and then the leaked TEO from the emulsion yielded synergetic functions of TEO/TC PE, leading to enhanced antibacterial, biofilm elimination, antioxidant, and anti-inflammatory activities. This injectable TEO/TC PE was applied to treat the infected full-thickness skin defects, and satisfactory wound healing effects were achieved with rapid angiogenesis, collagen deposition, and skin regeneration. The present TEO/TC PE constituted entirely of plant-sourced active products is biosafe and expected to spearhead the future development of novel wound dressings.
期刊介绍:
ACS Applied Materials & Interfaces is a leading interdisciplinary journal that brings together chemists, engineers, physicists, and biologists to explore the development and utilization of newly-discovered materials and interfacial processes for specific applications. Our journal has experienced remarkable growth since its establishment in 2009, both in terms of the number of articles published and the impact of the research showcased. We are proud to foster a truly global community, with the majority of published articles originating from outside the United States, reflecting the rapid growth of applied research worldwide.