Dissolving Microneedles Loaded with Lipid Nanoparticles for Co-Delivery of siTNF-α and Dexamethasone as a Dual-Action Therapy for Psoriasis

地塞米松 银屑病 促炎细胞因子 药理学 哈卡特 药品 小干扰RNA 全身给药 药物输送 肿瘤坏死因子α 基因沉默 材料科学 透明质酸 细胞毒性 炎症 免疫系统 医学 化学 毒品携带者 鼻腔给药 纳米技术 癌症研究 联合疗法 细胞 伏立诺他 靶向给药
作者
Yaxin Cheng,Yunfeng Han,Xueying Gu,Yulu Liu,Yidan Tang,Jie Gao,Chenjie Xu,Guodong Zhu,Ying Zheng
出处
期刊:ACS Applied Materials & Interfaces [American Chemical Society]
标识
DOI:10.1021/acsami.6c12530
摘要

Psoriasis, a chronic inflammatory skin disease, presents treatment challenges including systemic side effects and inadequate topical drug delivery. Herein, we developed a hyaluronic acid (HA)-based dissolving microneedle platform delivering tumor necrosis factor-alpha (TNF-α)-targeting small interfering RNA (siRNA) and dexamethasone co-loaded within dual-functional lipid nanoparticles (LNPs). This LNP design innovatively integrates dexamethasone into its lipid structure, combined with siRNA to enhance stability and anti-inflammatory efficacy while minimizing immunogenicity. The HA microneedles enabled localized, minimally invasive delivery of LNPs into psoriatic lesions. Physicochemical characterization confirmed stable co-loading of siRNA and dexamethasone, with dexamethasone enhancing both LNP stability and siRNA protection. In-vitro studies demonstrated a dual-action mechanism: Dexamethasone suppressed inflammatory signaling pathways while siRNA silenced TNF-α expression, leading to superior inhibition of key proinflammatory cytokines. In a psoriasis-like mouse model, this combinatorial strategy significantly reduced disease severity, normalized epidermal hyperplasia, and decreased immune cell infiltration compared to single-agent therapies. The structural incorporation of dexamethasone within LNPs represents a critical advancement, enabling localized immunomodulation that mitigates systemic risks while amplifying TNF-α suppression. This integrated approach achieved sustained therapeutic effects with reduced dosing frequency. By co-delivering gene silencing and pharmacological agents via a patient-compliant dissolving microneedle system, our work establishes a precision medicine strategy for psoriasis management, addressing both inflammatory pathways and drug delivery limitations.
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