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黄花蒿精油纳米制剂缓解咪喹莫特诱导的小鼠银屑病样皮炎。

Artemisia monosperma essential oil nanoformulations alleviate imiquimod-induced psoriasis-like dermatitis in mice.

机构信息

Department of Pharmacognosy, Faculty of Pharmacy, Helwan University., Cairo 11795, Egypt.

Department of Pharmaceutics and Industrial Pharmacy, Faculty of Pharmacy, Helwan University, Cairo 11795, Egypt.

出版信息

Int Immunopharmacol. 2024 Sep 30;139:112733. doi: 10.1016/j.intimp.2024.112733. Epub 2024 Jul 22.

Abstract

Psoriasis is an inflammatory immune-mediated skin disease that affects nearly 2-3 % of the global population. The current study aimed to develop safe and efficient anti-psoriatic nanoformulations from Artemisia monosperma essential oil (EO). EO was extracted using hydrodistillation (HD), microwave-assisted hydrodistillation (MAHD), and head-space solid-phase microextraction (HS-SPME), as well as GC/ MS was used for its analysis. EO nanoemulsion (NE) was prepared using the phase inversion method, while the biodegradable polymeric film (BF) was prepared using the solvent casting technique. A.monosperma EO contains a high percentage of non-oxygenated compounds, being 90.45 (HD), 82.62 (MADH), and 95.17 (HS-SPME). Acenaphthene represents the major aromatic hydrocarbon in HD (39.14 %) and MADH (48.60 %), while sabinene as monoterpene hydrocarbon (44.2 %) is the primary compound in the case of HS-SPME. The anti-psoriatic Effect of NE and BF on the successful delivery of A.monosperma EO was studied using the imiquimod (IMQ)-induced psoriatic model in mice. Five groups (n = 6 mice) were classified into control group, IMQ group, IMQ+standard group, IMQ+NE group, and IMQ+BF group. NE and BF significantly alleviated the psoriatic skin lesions and decreased the psoriasis area severity index, Baker's score, and spleen index. Also, they reduced the expression of Ki67 and attenuated the levels of tumor necrosis factor-alpha, interleukin 6, and interleukin 17. Additionally, NE and NF were able to downregulate the NF-κB and GSK-3β signaling pathways. Despite the healing properties of BF, NE showed a more prominent effect on treating the psoriatic model, which could be referred to as its high skin penetration ability and absorption. These results potentially contribute to documenting experimental and theoretical evidence for the clinical uses of A.monosperma EO nanoformulations for treating psoriasis.

摘要

银屑病是一种炎症性免疫介导的皮肤疾病,影响全球近 2-3%的人口。本研究旨在从黄花蒿精油(EO)中开发安全有效的抗银屑病纳米制剂。EO 采用水蒸馏(HD)、微波辅助水蒸馏(MAHD)和顶空固相微萃取(HS-SPME)提取,并采用 GC/MS 进行分析。EO 纳米乳液(NE)采用相转化法制备,而可生物降解聚合物膜(BF)采用溶剂浇铸技术制备。A.monosperma EO 含有高比例的非氧化化合物,分别为 90.45%(HD)、82.62%(MADH)和 95.17%(HS-SPME)。苊代表 HD(39.14%)和 MADH(48.60%)中主要的芳烃,而单萜烯化合物莰烯(44.2%)是 HS-SPME 的主要化合物。采用咪喹莫特(IMQ)诱导的银屑病模型研究了 NE 和 BF 对 A.monosperma EO 成功传递的抗银屑病作用。将 5 组(n=6 只小鼠)分为对照组、IMQ 组、IMQ+标准组、IMQ+NE 组和 IMQ+BF 组。NE 和 BF 显著缓解了银屑病皮肤损伤,降低了银屑病面积严重指数、贝克评分和脾脏指数。此外,它们降低了 Ki67 的表达,并减弱了肿瘤坏死因子-α、白细胞介素 6 和白细胞介素 17 的水平。此外,NE 和 NF 能够下调 NF-κB 和 GSK-3β 信号通路。尽管 BF 具有愈合特性,但 NE 在治疗银屑病模型方面表现出更显著的效果,这可能与其高皮肤穿透能力和吸收能力有关。这些结果可能有助于为黄花蒿精油纳米制剂治疗银屑病的临床应用提供实验和理论依据。

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