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大黄素纳米晶体通过肺部给药增强了黏液穿透能力,并改善了博来霉素诱导的肺纤维化。

Emodin nanocrystals enhanced mucus penetration and ameliorated bleomycin-induced pulmonary fibrosis by pulmonary delivery.

作者信息

Zhang Chenghao, Wang Yihua, Cui Xinran, Zhang Qing, Cong Huijing, Liu Jiaxin, Ren Jinmei, Tang Jingling

机构信息

School of Pharmacy, Harbin Medical University, Harbin, China.

Liaoning Cancer Hospital &Institute, Shenyang, China.

出版信息

J Drug Target. 2025 Sep;33(8):1421-1431. doi: 10.1080/1061186X.2025.2497369. Epub 2025 Apr 30.

DOI:10.1080/1061186X.2025.2497369
PMID:40266897
Abstract

Pulmonary fibrosis (PF) is a progressive interstitial disease characterised by extracellular matrix deposition and destruction of lung tissue structure. Emodin (Emo) is a natural active compound with anti-inflammatory and antioxidant properties. The initiation of PF is prevented by reducing oxidative stress-induced damage to alveolar epithelial cells." to meet the word count requirement. However, Emo is featured low water solubility, a rapid metabolic rate and low oral bioavailability, which limit its application in the treatment of PF. Therefore, this study formulated emodin as nanocrystals (Emo-NCs) and delivered Emo directly to the lesion site pulmonary delivery to enhance drug efficacy. The Emo-NCs exhibited a square crystal structure with particle sizes suitable for pulmonary absorption and an appropriate polydispersity index. They released 99.38% over 48 h and significantly improved permeability efficiency in simulated pulmonary mucus. The ability of Emo-NCs to inhibit abnormal fibroblast proliferation and oxidative damage was significantly enhanced compared with Emo. In contrast to the BLM group, the inflammatory cells in the lung tissue sections of the Emo-NCs group were significantly reduced, the alveolar structure was largely restored, and no evident collagen fibre deposition was observed. In summary, Emo-NCs could serve as a viable delivery system for site-specific treatment of PF.

摘要

肺纤维化(PF)是一种进行性间质性疾病,其特征在于细胞外基质沉积和肺组织结构破坏。大黄素(Emo)是一种具有抗炎和抗氧化特性的天然活性化合物。通过减少氧化应激诱导的肺泡上皮细胞损伤可预防PF的发生。然而,大黄素具有低水溶性、快速代谢率和低口服生物利用度的特点,这限制了其在PF治疗中的应用。因此,本研究将大黄素制成纳米晶体(Emo-NCs),并通过肺部给药将大黄素直接递送至病变部位,以提高药物疗效。Emo-NCs呈现方形晶体结构,粒径适合肺部吸收,且具有合适的多分散指数。它们在48小时内释放了99.38%,并显著提高了在模拟肺黏液中的渗透效率。与大黄素相比,Emo-NCs抑制成纤维细胞异常增殖和氧化损伤的能力显著增强。与博来霉素组相比,Emo-NCs组肺组织切片中的炎症细胞显著减少,肺泡结构基本恢复,未观察到明显的胶原纤维沉积。总之,Emo-NCs可作为一种可行的递送系统用于PF的位点特异性治疗。

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