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一种工程化丁酸盐衍生的聚合物纳米平台作为黏膜愈合增强剂可增强厚朴酚在炎症性肠病中的治疗效果。

An Engineered Butyrate-Derived Polymer Nanoplatform as a Mucosa-Healing Enhancer Potentiates the Therapeutic Effect of Magnolol in Inflammatory Bowel Disease.

作者信息

Fan Xi, Zhang Zhuangzhuang, Gao Wenxia, Pan Qingqing, Luo Kui, He Bin, Pu Yuji

机构信息

National Engineering Research Center for Biomaterials, College of Biomedical Engineering, Sichuan University, Chengdu 610064, China.

College of Chemistry & Materials Engineering, Wenzhou University, Wenzhou 325027, China.

出版信息

ACS Nano. 2024 Jan 9;18(1):229-244. doi: 10.1021/acsnano.3c05732. Epub 2023 Dec 19.

Abstract

Colonic epithelial damage and dysregulated immune response are crucial factors in the progression and exacerbation of inflammatory bowel disease (IBD). Nanoenabled targeted drug delivery to the inflamed intestinal mucosa has shown promise in inducing and maintaining colitis remission, while minimizing side effects. Inspired by the excellent antioxidative and anti-inflammatory efficacy of naturally derived magnolol (Mag) and gut homeostasis regulation of microbiota-derived butyrate, we developed a pH/redox dual-responsive butyrate-rich polymer nanoparticle (PSBA) as an oral Mag delivery system for combinational therapy of IBD. PSBA showed a high butyrate content of 22% and effectively encapsulated Mag. The Mag-loaded nanoparticles (PSBA@Mag) demonstrated colonic pH and reduction-responsive drug release, ensuring efficient retention and adhesion in the colon of colitis mice. PSBA@Mag not only normalized the level of reactive oxygen species and inflammatory effectors in inflamed colonic mucosa but also restored the epithelial barrier function in both ulcerative colitis and Crohn's disease mouse models. Importantly, PSBA promoted the migration and healing ability of intestinal epithelial cells and , sensitizing the therapeutic efficacy of Mag in animal models. Moreover, transcriptomics and metabolism analyses revealed that PSBA@Mag mitigated inflammation by suppressing the production of pro-inflammatory cytokines and chemokines and restoring the lipid metabolism. Additionally, this nanomedicine modulated the gut microbiota by inhibiting pathogenic and and promoting the proliferation of beneficial probiotics, including and . Overall, our findings highlight the potential of butyrate-functionalized polymethacrylates as versatile and effective nanoplatforms for colonic drug delivery and mucosa repair in combating IBD and other gastrointestinal disorders.

摘要

结肠上皮损伤和免疫反应失调是炎症性肠病(IBD)进展和恶化的关键因素。纳米靶向药物递送系统将药物递送至发炎的肠黏膜,在诱导和维持结肠炎缓解的同时,最大限度地减少副作用,展现出良好的应用前景。受天然来源的厚朴酚(Mag)出色的抗氧化和抗炎功效以及微生物群衍生的丁酸盐对肠道内环境稳态调节作用的启发,我们开发了一种pH/氧化还原双响应的富含丁酸盐的聚合物纳米颗粒(PSBA),作为口服Mag递送系统用于IBD的联合治疗。PSBA的丁酸盐含量高达22%,并能有效包封Mag。载有Mag的纳米颗粒(PSBA@Mag)表现出结肠pH和还原响应性药物释放,确保在结肠炎小鼠结肠中有效滞留和黏附。PSBA@Mag不仅使发炎的结肠黏膜中的活性氧水平和炎症效应物正常化,还在溃疡性结肠炎和克罗恩病小鼠模型中恢复了上皮屏障功能。重要的是,PSBA促进了肠上皮细胞的迁移和愈合能力,增强了Mag在动物模型中的治疗效果。此外,转录组学和代谢分析表明,PSBA@Mag通过抑制促炎细胞因子和趋化因子的产生以及恢复脂质代谢来减轻炎症。此外,这种纳米药物通过抑制病原菌和促进有益益生菌(包括 和 )的增殖来调节肠道微生物群。总体而言,我们的研究结果突出了丁酸盐功能化聚甲基丙烯酸酯作为多功能且有效的纳米平台在结肠药物递送和黏膜修复以对抗IBD及其他胃肠道疾病方面的潜力。

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