Stomatological Hospital, Southern Medical University, Guangzhou 510280, China.
Guangdong Provincial Key Laboratory of Construction and Detection in Tissue Engineering, Guangzhou 510515, China.
ACS Nano. 2022 Oct 25;16(10):15627-15652. doi: 10.1021/acsnano.2c05317. Epub 2022 Sep 19.
Biological barriers are essential physiological protective systems and obstacles to drug delivery. Nanoparticles (NPs) can access the paracellular route of biological barriers, either causing adverse health impacts on humans or producing therapeutic opportunities. This Review introduces the structural and functional influences of NPs on the key components that govern the paracellular route, mainly tight junctions, adherens junctions, and cytoskeletons. Furthermore, we evaluate their interaction mechanisms and address the influencing factors that determine the ability of NPs to open the paracellular route, which provides a better knowledge of how NPs can open the paracellular route in a safer and more controllable way. Finally, we summarize limitations in the research models and methodologies of the existing research in the field and provide future research direction. This Review demonstrates the in-depth causes for the reversible opening or destruction of the integrity of barriers generated by NPs; more importantly, it contributes insights into the design of NP-based medications to boost paracellular drug delivery efficiency.
生物屏障是重要的生理保护系统和药物输送的障碍。纳米颗粒(NPs)可以进入生物屏障的细胞旁途径,要么对人类健康产生不利影响,要么产生治疗机会。本综述介绍了 NPs 对控制细胞旁途径的关键成分的结构和功能影响,主要是紧密连接、黏着连接和细胞骨架。此外,我们评估了它们的相互作用机制,并讨论了决定 NPs 打开细胞旁途径能力的影响因素,这为更好地了解 NPs 如何以更安全、更可控的方式打开细胞旁途径提供了知识。最后,我们总结了现有研究领域研究模型和方法学的局限性,并提供了未来的研究方向。本综述展示了 NPs 产生的屏障完整性可逆打开或破坏的深层次原因;更重要的是,它为基于 NP 的药物设计提供了见解,以提高细胞旁药物输送效率。