Yang Yingchao, Chen Jingyi, Wang Shengming, Zhu Yaxin, Wang Yao, Chen Yan, Xia Mingjiang, Yang Ming, Yi Hongliang, Su Kaiming
Department of Otorhinolaryngology Head and Neck Surgery, Shanghai Key Laboratory of Sleep Disordered Breathing, Shanghai Sixth People's Hospital Affiliated to Shanghai Jiao Tong University School of Medicine, 600 Yishan Road, Shanghai 200233, China.
Otolaryngology Institute of Shanghai Jiao Tong University, 600 Yishan Road, Shanghai 200233, China.
Pharmaceutics. 2025 May 24;17(6):690. doi: 10.3390/pharmaceutics17060690.
: Nasal mucosa wound healing faces challenges such as acidic microenvironments and bacterial proliferation. Persistent mucosal defects predispose to complications such as nasal septal perforation. Conventional drug delivery systems suffer from nonspecific release and short-term efficacy. This study aimed to develop a pH-responsive liposome-hydrogel composite (HYD-Lip/DXMS@HG) to integrate pH-triggered dexamethasone (DXMS) delivery, antifouling properties, and mechanical support for refractory injuries. : The composite combined acylhydrazone-modified liposomes with a hydrogel synthesized from hydroxyethylacrylamide (HEAA) and diethylacrylamide (DEAA). In vitro assays evaluated DXMS release kinetics, RPMI 2650 cell migration/proliferation, and antibacterial properties. In vivo rabbit nasal mucosal injury models assessed healing efficacy via histology analyses. RNA sequencing was performed to identify key signaling pathways. : HYD-Lip/DXMS@HG exhibited sustained DXMS release in acidic conditions, accelerating cell migration/proliferation in vitro. In rabbits, the composite reduced TNF- expression and CD45+ leukocyte infiltration, while enhancing collagen alignment and epithelial thickness. RNA sequencing identified upregulated ECM receptor interaction, Hippo, TGF-, and PI3K-Akt pathways, linked to collagen remodeling, anti-apoptosis, and angiogenesis. : This multifunctional platform synergizes pH-triggered drug delivery, mechanical support, and antibacterial activity, offering a promising therapeutic strategy for refractory nasal mucosal injuries and postoperative recovery.
鼻黏膜伤口愈合面临着诸如酸性微环境和细菌增殖等挑战。持续性黏膜缺损易引发鼻中隔穿孔等并发症。传统药物递送系统存在非特异性释放和短期疗效的问题。本研究旨在开发一种pH响应性脂质体-水凝胶复合材料(HYD-Lip/DXMS@HG),以整合pH触发的地塞米松(DXMS)递送、防污性能以及对难治性损伤的机械支撑。:该复合材料将酰腙修饰的脂质体与由羟乙基丙烯酰胺(HEAA)和二乙氨基丙烯酰胺(DEAA)合成的水凝胶相结合。体外试验评估了DXMS释放动力学、RPMI 2650细胞迁移/增殖以及抗菌性能。体内兔鼻黏膜损伤模型通过组织学分析评估愈合效果。进行RNA测序以确定关键信号通路。:HYD-Lip/DXMS@HG在酸性条件下表现出DXMS的持续释放,在体外加速了细胞迁移/增殖。在兔体内,该复合材料降低了TNF-表达和CD45+白细胞浸润,同时增强了胶原排列和上皮厚度。RNA测序确定了与胶原重塑、抗凋亡和血管生成相关的上调的ECM受体相互作用、Hippo、TGF-和PI3K-Akt信号通路。:这个多功能平台协同了pH触发的药物递送、机械支撑和抗菌活性,为难治性鼻黏膜损伤和术后恢复提供了一种有前景的治疗策略。