The People's Hospital of Gaozhou, Guangdong Medical University, Maoming, 525200, China.
Department of Neurosurgery, First Affiliated Hospital of Harbin Medical University, Harbin, 150001, China.
Adv Sci (Weinh). 2023 Jul;10(19):e2301348. doi: 10.1002/advs.202301348. Epub 2023 Apr 20.
Ischemic stroke is a refractory disease that endangers human health and safety owing to cerebral ischemia. Brain ischemia induces a series of inflammatory reactions. Neutrophils migrate from the circulatory system to the site of cerebral ischemia and accumulate in large numbers at the site of inflammation across the blood-brain barrier. Therefore, hitchhiking on neutrophils to deliver drugs to ischemic brain sites could be an optimal strategy. Since the surface of neutrophils has a formyl peptide receptor (FPR), this work modifies a nanoplatform surface by the peptide cinnamyl-F-(D)L-F-(D)L-F (CFLFLF), which can specifically bind to the FPR receptor. After intravenous injection, the fabricated nanoparticles effectively adhered to the surface of neutrophils in peripheral blood mediated by FPR, thereby hitchhiking with neutrophils to achieve higher accumulation at the inflammatory site of cerebral ischemia. In addition, the nanoparticle shell is composed of a polymer with reactive oxygen species (ROS)-responsive bond breaking and is encased in ligustrazine, a natural product with neuroprotective properties. In conclusion, the strategy of hitching the delivered drugs to neutrophils in this study could improve drug enrichment in the brain, thereby providing a general delivery platform for ischemic stroke or other inflammation-related diseases.
缺血性脑卒中是一种危害人类健康和安全的难治性疾病,其发病机制与脑缺血有关。脑缺血会引发一系列炎症反应。中性粒细胞从循环系统迁移到脑缺血部位,并穿过血脑屏障在炎症部位大量聚集。因此,利用中性粒细胞将药物递送到缺血性脑部位可能是一种最佳策略。由于中性粒细胞表面具有甲酰肽受体(FPR),因此本工作通过肽肉桂酰基-F-(D)L-F-(D)L-F(CFLFLF)对纳米平台表面进行修饰,该肽可以特异性结合 FPR 受体。静脉注射后,由 FPR 介导,所制备的纳米颗粒可有效地黏附在外周血中的中性粒细胞表面,从而搭乘中性粒细胞的便车,实现更高水平地聚集在脑缺血的炎症部位。此外,纳米颗粒外壳由具有活性氧(ROS)响应键断裂的聚合物组成,并包裹着具有神经保护作用的天然产物川芎嗪。总之,本研究中利用中性粒细胞传递药物的策略可以提高药物在大脑中的富集度,从而为缺血性脑卒中或其他炎症相关疾病提供了一种通用的递药平台。