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用于溃疡性结肠炎治疗的双靶向纳米粒包裹微粒系统

Dual-Targeted Nanoparticle-in-Microparticle System for Ulcerative Colitis Therapy.

作者信息

Zhang Yawen, Wu Yue, Yan Yuping, Ma Yijing, Tu Linglan, Shao Jingjing, Tang Xuanyu, Chen Lingfeng, Liang Guang, Yin Lina

机构信息

School of Pharmacy, Hangzhou Medical College, 182 Tianmushan Rd, Hangzhou, 310013, China.

School of Laboratory Medicine and Bioengineering, Hangzhou Medical College, Hangzhou, 310013, China.

出版信息

Adv Healthc Mater. 2023 Dec;12(31):e2301518. doi: 10.1002/adhm.202301518. Epub 2023 Sep 18.

Abstract

Conventional oral therapy for ulcerative colitis (UC) is associated with premature release or degradation of drugs in the harsh gastrointestinal environment, resulting in reduced therapeutic effectiveness. Consequently, the present study aims to develop a dual-targeted delivery system with a nanoparticle-in-microparticle (nano-in-micro) structure. The prepared Asiatic Acid-loaded delivery system (AA/CDM-BT-ALG) has pH-sensitive properties. Cellular uptake evaluation confirms that nanoparticles exhibit targeted absorption by macrophages and Caco-2 cells through mannose (Man) receptor and biotin-mediated endocytosis, respectively. Therefore, this mechanism effectively enhances intracellular drug concentration. Additionally, the biodistribution study conducted on the gastrointestinal tract of mice indicates that the colon of the microspheres group shows higher fluorescence intensity with longer duration than the other groups. This finding indicates that the microspheres exhibit selective accumulation in areas of colon inflammation. In vivo experiments in colitis mice showed that AA/CDM-BT-ALG significantly alleviates the histopathological characteristics of the colon, reduced neutrophil, and macrophage infiltration, and decreases pro-inflammatory cytokine expression. Furthermore, the effect of AA/CDM-BT-ALG on colitis is validated to be closely related to the TLR4/MyD88/NF-κB signaling pathway. The present findings suggest that the development of a dual-targeted delivery system is accomplished effectively, with the potential to serve as a drug-controlled release system for treating UC.

摘要

溃疡性结肠炎(UC)的传统口服疗法与药物在恶劣的胃肠道环境中过早释放或降解有关,从而导致治疗效果降低。因此,本研究旨在开发一种具有纳米颗粒包载于微粒(纳米-微)结构的双靶向递送系统。所制备的负载积雪草苷的递送系统(AA/CDM-BT-ALG)具有pH敏感特性。细胞摄取评估证实,纳米颗粒分别通过甘露糖(Man)受体和生物素介导的内吞作用,表现出被巨噬细胞和Caco-2细胞靶向吸收。因此,这种机制有效地提高了细胞内药物浓度。此外,在小鼠胃肠道上进行的生物分布研究表明,微球组的结肠显示出比其他组更高的荧光强度且持续时间更长。这一发现表明微球在结肠炎症区域表现出选择性积累。在结肠炎小鼠体内实验表明,AA/CDM-BT-ALG显著减轻了结肠的组织病理学特征,减少了中性粒细胞和巨噬细胞浸润,并降低了促炎细胞因子表达。此外,AA/CDM-BT-ALG对结肠炎的作用被证实与TLR4/MyD88/NF-κB信号通路密切相关。目前的研究结果表明,双靶向递送系统的开发有效地完成,有潜力作为治疗UC的药物控释系统。

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