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通过脂质纳米颗粒介导的siRNA和白藜芦醇共递送靶向脉络丛血脑脊液屏障的调节及脑脊液分泌过多

Targeting modulation of the choroid plexus blood-CSF barrier and CSF hypersecretion via lipid nanoparticle-mediated co-delivery of siRNA and resveratrol.

作者信息

Wang Qiguang, Xia Xue, Zhang Huan, Li Yue, Zhu Lei, Shi Yulong, Tang Yuzhao, Cheng Jian, Hui Xuhui, Gao Huile

机构信息

Department of Neurosurgery, West China Hospital, Sichuan University, Chengdu, China.

Key Laboratory of Drug Targeting and Drug Delivery Systems, West China School of Pharmacy, Sichuan University, Chengdu, China.

出版信息

Nat Commun. 2025 Jul 10;16(1):6389. doi: 10.1038/s41467-025-61543-1.

Abstract

Hydrocephalus is one of the most common neurological disorders, but pharmacotherapy options are currently lacking due to the complex pathogenesis. The blood-CSF barrier (BCSFB), consisting of choroid plexus (ChP) epithelial cells, is a crucial gate for the entry of peripheral immune cells and its dysfunction emerges as an important contributor to hydrocephalus pathology. Meanwhile, SPAK-mediated CSF hypersecretion in ChP epithelial cells plays an important role in hydrocephalus. Here, we fabricated a transferrin receptor-targeted nano-drug (siR/RSV@TNP) that can intelligently navigate to the blood-CSF barrier and prepared for combined delivery of resveratrol (RSV) and SPAK siRNA (siSPAK) for synergetic hydrocephalus therapy. As expected, siR/RSV@TNP fulfilled its function of knocking down SPAK expression, relieving inflammation and oxidative stress, retrieving blood-CSF barrier integrity, and ultimately preventing ventriculomegaly and hydrocephalus in male mice. Here, we demonstrate that targeting the choroid plexus blood-CSF barrier and cerebrospinal fluid hypersecretion offers a promising approach for alleviating hydrocephalus.

摘要

脑积水是最常见的神经系统疾病之一,但由于发病机制复杂,目前缺乏药物治疗选择。由脉络丛(ChP)上皮细胞组成的血脑屏障(BCSFB)是外周免疫细胞进入的关键通道,其功能障碍是脑积水病理的重要促成因素。同时,SPAK介导的ChP上皮细胞脑脊液分泌过多在脑积水中起重要作用。在此,我们制备了一种靶向转铁蛋白受体的纳米药物(siR/RSV@TNP),它可以智能地导航至血脑屏障,并准备联合递送白藜芦醇(RSV)和SPAK小干扰RNA(siSPAK)用于协同治疗脑积水。正如预期的那样,siR/RSV@TNP实现了其敲低SPAK表达、减轻炎症和氧化应激、恢复血脑屏障完整性的功能,并最终预防了雄性小鼠的脑室扩大和脑积水。在此,我们证明靶向脉络丛血脑屏障和脑脊液分泌过多为缓解脑积水提供了一种有前景的方法。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8150/12246246/eebb812c16f2/41467_2025_61543_Fig1_HTML.jpg

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