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蛋白质冠阻碍了转铁蛋白修饰的纳米颗粒通过血脑屏障的转胞吞作用,并减弱了它们对脑肿瘤的靶向能力。

The protein corona hampers the transcytosis of transferrin-modified nanoparticles through blood-brain barrier and attenuates their targeting ability to brain tumor.

机构信息

Key Laboratory of Drug-Targeting and Drug Delivery System of the Education Ministry, Sichuan Engineering Laboratory for Plant-Sourced Drug and Sichuan Research Center for Drug Precision Industrial Technology, West China School of Pharmacy, Sichuan University, Chengdu, 610041, PR China.

Key Laboratory of Drug-Targeting and Drug Delivery System of the Education Ministry, Sichuan Engineering Laboratory for Plant-Sourced Drug and Sichuan Research Center for Drug Precision Industrial Technology, West China School of Pharmacy, Sichuan University, Chengdu, 610041, PR China.

出版信息

Biomaterials. 2021 Jul;274:120888. doi: 10.1016/j.biomaterials.2021.120888. Epub 2021 May 18.

Abstract

The modification of targeting ligands on nanoparticles (NPs) is anticipated to enhance the delivery of therapeutics to diseased tissues. However, once exposed to the blood stream, NPs can immediately adsorb proteins to form the "protein corona," which may greatly hinder the targeting ligand from binding to its receptor. For brain-targeting delivery, nanotherapeutics must traverse the blood-brain barrier (BBB) to enter the brain parenchyma and then target the diseased cells. However, it remains elusive whether, apart from receptor recognition, the protein corona can affect other processes involved in BBB transcytosis, such as endocytosis, intracellular trafficking, and exocytosis. Furthermore, the targeting ability of NPs toward diseased cells after transcytosis remains unclear. Herein, transferrin (Tf), a brain-targeting ligand, was coupled to NPs to evaluate BBB transcytosis and brain tumor targeting ability. Different impacts of the in vitro and in vivo protein corona on receptor targeting, lysosomal escape, and BBB transcytosis were found. The in vitro protein corona abolished the Tf-mediated effects of the abovementioned processes, whereas the in vivo protein corona attenuated these effects. After crossing the BBB, Tf retained its targeting specificity towards brain tumor cells. Together, these results revealed that several bound apolipoproteins, especially apolipoprotein A-I, may help NPs traverse the BBB, thereby providing novel insights into the development of brain-targeted delivery.

摘要

靶向配体在纳米颗粒(NPs)上的修饰有望增强治疗剂递送到病变组织的能力。然而,一旦暴露于血流中,NPs 会立即吸附蛋白质形成“蛋白冠”,这可能极大地阻碍靶向配体与其受体的结合。对于脑靶向递药,纳米药物必须穿越血脑屏障(BBB)进入脑实质,然后靶向病变细胞。然而,除了受体识别之外,蛋白冠是否会影响 BBB 胞吞作用中涉及的其他过程,如内吞作用、细胞内转运和胞吐作用,仍然难以捉摸。此外,纳米药物穿越 BBB 后对病变细胞的靶向能力仍然不清楚。在此,转铁蛋白(Tf)作为脑靶向配体被偶联到 NPs 上,以评估 BBB 胞吞作用和脑肿瘤靶向能力。发现了体外和体内蛋白冠对受体靶向、溶酶体逃逸和 BBB 胞吞作用的不同影响。体外蛋白冠消除了 Tf 介导的上述过程的作用,而体内蛋白冠则减弱了这些作用。穿越 BBB 后,Tf 仍然保留其对脑肿瘤细胞的靶向特异性。总之,这些结果表明,几种结合的载脂蛋白,特别是载脂蛋白 A-I,可能有助于 NPs 穿越 BBB,从而为脑靶向递药的发展提供了新的见解。

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