Wang Luyao, Shi Youyuan, Jiang Jingzhen, Li Chan, Zhang Hengrui, Zhang Xinhui, Jiang Tao, Wang Liang, Wang Yinyan, Feng Lin
School of Mechanical Engineering & Automation, Beihang University, Beijing, 100191, China.
Beijing Shijitan Hospital, Capital Medical University, Beijing, 100038, China.
Small. 2022 Nov;18(45):e2203678. doi: 10.1002/smll.202203678. Epub 2022 Sep 14.
The greatest obstacle to using drugs to treat brain tumors is the blood-brain barrier (BBB), making it difficult for conventional drug molecules to enter the brain. Therefore, how to safely and effectively penetrate the BBB to achieve targeted drug delivery to brain tumors has been a challenging research problem. With the intensive research in micro- and nanotechnology in recent years, nano drug-targeted delivery technologies have shown great potential to overcome this challenge, such as inorganic nanocarriers, organic polymer-carriers, liposomes, and biobased carriers, which can be designed in different sizes, shapes, and surface functional groups to enhance their ability to penetrate the BBB and targeted drug delivery for brain tumors. In this review, the composition and overcoming patterns of the BBB are detailed, and then the hot research topics of drug delivery carriers for brain tumors in recent years are summarized, and their mechanisms of action on the BBB and the factors affecting drug delivery are described in detail, and the effectiveness of targeted therapy for brain tumors is evaluated. Finally, the challenges and dilemmas in developing brain tumor drug delivery systems are discussed, which will be promising in the future for targeted drug delivery to brain tumors based on micro-nanocarriers technology.
使用药物治疗脑肿瘤的最大障碍是血脑屏障(BBB),这使得传统药物分子难以进入大脑。因此,如何安全有效地穿透血脑屏障以实现对脑肿瘤的靶向药物递送一直是一个具有挑战性的研究问题。近年来,随着对微纳米技术的深入研究,纳米药物靶向递送技术在克服这一挑战方面显示出巨大潜力,例如无机纳米载体、有机聚合物载体、脂质体和生物基载体,它们可以设计成不同的尺寸、形状和表面官能团,以增强其穿透血脑屏障的能力并实现对脑肿瘤的靶向药物递送。在这篇综述中,详细阐述了血脑屏障的组成和克服方式,然后总结了近年来脑肿瘤药物递送载体的热门研究课题,并详细描述了它们对血脑屏障的作用机制以及影响药物递送的因素,同时评估了脑肿瘤靶向治疗的有效性。最后,讨论了开发脑肿瘤药物递送系统面临的挑战和困境,基于微纳米载体技术的脑肿瘤靶向药物递送在未来将具有广阔前景。
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