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通过序贯靶向表面工程化外泌体调节小胶质细胞极化可改善缺血性脑卒中的治疗效果。

Modulation of microglial polarization by sequential targeting surface-engineered exosomes improves therapy for ischemic stroke.

机构信息

School of Pharmacy, Jinzhou Medical University, Jinzhou, 121000, People's Republic of China.

School of Veterinary Medicine, Jinzhou Medical University, Jinzhou, 121000, People's Republic of China.

出版信息

Drug Deliv Transl Res. 2024 Feb;14(2):418-432. doi: 10.1007/s13346-023-01408-6. Epub 2023 Aug 16.

DOI:10.1007/s13346-023-01408-6
PMID:37587291
Abstract

Microglia are important cells that act on regulating neuroinflammation and neurofunction after the induction of ischemic stroke (IS). Consequently, the efficient accumulation of drugs within ischemic regions, particularly in microglia, serves as a valuable approach for achieving effective therapy by attenuating microglia-mediated cerebral ischemic injury. In this study, we designed mannose (man)-conjugated luteolin (lut)-loaded platelet-derived exosomes (lut/man-pEXO) as surface engineered multifunctional cascade-delivery drug carriers to target ischemic blood vessels and subsequent microglia to enhance drug accumulation and induce neuroprotection of neurovascular unit (NVU) against IS. The results revealed that as platelets naturally gathered in pathological ischemic cerebral vessels, lut/man-pEXO could bind to platelets and efficiently target ischemic injury sites. Moreover, owing to the selective binding affinity of mannose present in lut/man-pEXO towards the mannose receptor expressed on microglia, lut/man-pEXO exhibited superior microglia-targeting properties, inducing the increased uptake of lut by microglia. As a result, lut/man-pEXO regulated microglia by inhibiting the activation of detrimental M1 and promoting the transition towards the anti-inflammatory type (M2), thus attenuating ischemic damage of NVU by reducing the infarct area, rescuing the damage of blood-brain barrier (BBB) and preventing inflammatory transformation of astrocytes.

摘要

小胶质细胞是在诱导缺血性脑卒中(IS)后调节神经炎症和神经功能的重要细胞。因此,药物在缺血区域的有效积累,特别是在小胶质细胞中,是通过减轻小胶质细胞介导的脑缺血损伤来实现有效治疗的一种有价值的方法。在本研究中,我们设计了甘露糖(man)修饰的木樨草素(lut)负载的血小板衍生外泌体(lut/man-pEXO)作为表面工程多功能级联递药载体,以靶向缺血血管和随后的小胶质细胞,增强药物积累并诱导神经血管单元(NVU)对 IS 的神经保护作用。结果表明,由于血小板自然聚集在病理性缺血性脑血管中,lut/man-pEXO 可以与血小板结合,并有效地靶向缺血损伤部位。此外,由于 lut/man-pEXO 中甘露糖与小胶质细胞上表达的甘露糖受体的选择性结合亲和力,lut/man-pEXO 表现出优越的小胶质细胞靶向特性,诱导小胶质细胞对 lut 的摄取增加。因此,lut/man-pEXO 通过抑制有害 M1 的激活并促进向抗炎型(M2)转化来调节小胶质细胞,从而通过减少梗死面积、挽救血脑屏障(BBB)损伤和防止星形胶质细胞的炎症转化来减轻 NVU 的缺血损伤。

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本文引用的文献

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