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一种用于炎症性疾病治疗的、跨越多个微环境屏障的靶向纳米载体屏蔽级联。

A shielded cascade of targeted nanocarriers spanning multiple microenvironmental barriers for inflammatory disease therapy.

作者信息

Liu Fengyi, Wang Xu, Ren Mingxing, He Ping, Li Yuzhou, Cui Jing, Yang Sheng

机构信息

College of Stomatology, Chongqing Medical University, 426#Songshibei Road, Yubei District, Chongqing, 401147, China.

Chongqing Key Laboratory of Oral Diseases, Chongqing, China.

出版信息

J Nanobiotechnology. 2024 Dec 23;22(1):789. doi: 10.1186/s12951-024-03075-2.

Abstract

BACKGROUND

The multi-biological barriers present in the inflammatory microenvironment severely limit the targeted aggregation of anti-inflammatory drugs in the lesion area. However, conventional responsive drug carriers inevitably come into contact with several pro-responsive stimulatory mediators simultaneously, leading to premature drug release and loss of most therapeutic effects. Breaking through the multi-level barriers of the inflammatory microenvironment is essential to improve the enrichment and bioavailability of drugs.

RESULTS

In this study, we propose a novel two-stage structural strategy to build shielded cascades of targeted nanocarriers (FA-PTP@Que) through inflammatory mediators, using cascade structures to cross multiple environmental barriers. The cascade structure of FA-PTP@Que is responsive to inflammatory mediators and exhibits ideal pathological microenvironmental response and drug release properties. FA-PTP@Que has shown good macrophage regulation and anti-inflammatory effects by efficiently targeting macrophages, scavenging intracellular reactive oxygen species (ROS), and down-regulating the secretion of pro-inflammatory factors. Significantly, in mice with arthritis and colitis, FA-PTP@Que enriches and targets macrophages at the sites of arthritis and colitis, showing significant anti-inflammatory effects.

CONCLUSION

FA-PTP@Que combines active chemotaxis of nanocarriers to inflammatory tissues and active targeting of effector cells, acting precisely at each barrier level in different microenvironments by responding to inflammatory mediators and overcoming the multiple barriers in the inflammatory microenvironment. This innovative strategy can effectively break through various inflammatory microenvironments and has the potential application to other inflammatory diseases.

摘要

背景

炎症微环境中存在的多种生物屏障严重限制了抗炎药物在病变区域的靶向聚集。然而,传统的响应性药物载体不可避免地会同时与多种促响应刺激介质接触,导致药物过早释放并失去大部分治疗效果。突破炎症微环境的多层次屏障对于提高药物的富集和生物利用度至关重要。

结果

在本研究中,我们提出了一种新颖的两阶段结构策略,通过炎症介质构建靶向纳米载体(FA-PTP@Que)的屏蔽级联,利用级联结构跨越多个环境屏障。FA-PTP@Que的级联结构对炎症介质有响应,并表现出理想的病理微环境响应和药物释放特性。FA-PTP@Que通过有效靶向巨噬细胞、清除细胞内活性氧(ROS)以及下调促炎因子的分泌,显示出良好的巨噬细胞调节和抗炎作用。值得注意的是,在患有关节炎和结肠炎的小鼠中,FA-PTP@Que在关节炎和结肠炎部位富集并靶向巨噬细胞,显示出显著的抗炎作用。

结论

FA-PTP@Que将纳米载体对炎症组织的主动趋化作用与对效应细胞的主动靶向作用相结合,通过对炎症介质的响应精确作用于不同微环境中的每个屏障水平,克服炎症微环境中的多种屏障。这种创新策略可以有效突破各种炎症微环境,具有应用于其他炎症性疾病的潜力。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1f8d/11665124/6c2d81ebd907/12951_2024_3075_Sch1_HTML.jpg

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