A One-Stone-Two-Birds Strategy of Targeting Microbubbles with “Dual” Anti-Inflammatory and Blood–Brain Barrier “Switch” Function for Ischemic Stroke Treatment

微气泡 血脑屏障 炎症 小胶质细胞 药物输送 医学 靶向给药 冲程(发动机) 药理学 药品 材料科学 内科学 缺血 免疫学 放射科 中枢神经系统 超声波 纳米技术 工程类 机械工程
作者
Zhongbin An,Qiong He,Ling Jiang,Yuan Wang,Yongyue Zhang,Yang Sun,Mengxin Wang,Shiyuan Yang,Lijie Huang,Huiwen Li,Yu Hao,Xiaolong Liang,Shumin Wang
出处
期刊:ACS Biomaterials Science & Engineering [American Chemical Society]
卷期号:10 (3): 1774-1787 被引量:1
标识
DOI:10.1021/acsbiomaterials.3c01561
摘要

Inflammation is considered to be the main target of the development of new stroke therapies. There are three key issues in the treatment of stroke inflammation: the first one is how to overcome the blood-brain barrier (BBB) to achieve drug delivery, the second one is how to select drugs to treat stroke inflammation, and the third one is how to achieve targeted drug delivery. In this study, we constructed hydrocortisone-phosphatidylserine microbubbles and combined them with ultrasound (US)-targeted microbubble destruction technology to successfully open the BBB to achieve targeted drug delivery. Phosphatidylserine on the microbubbles was used for its "eat me" effect to increase the targeting of the microvesicles. In addition, we found that hydrocortisone can accelerate the closure of the BBB, achieving efficient drug delivery while reducing the entry of peripheral toxins into the brain. In the treatment of stroke inflammation, it was found that hydrocortisone itself has anti-inflammatory effects and can also change the polarization of microglia from the harmful pro-inflammatory M1 phenotype to the beneficial anti-inflammatory M2 phenotype, thus achieving dual anti-inflammatory effects and enhancing the anti-inflammatory effects in ischemic areas after stroke, well reducing the cerebellar infarction volume by inhibiting the inflammatory response after cerebral ischemia. A confocal microendoscope was used to directly observe the polarization of microglial cells in living animal models for dynamic microscopic visualization detection showing the advantage of being closer to clinical work. Taken together, this study constructed a multifunctional targeted US contrast agent with the function of "one-stone-two-birds", which can not only "on-off" the BBB but also have "two" anti-inflammatory functions, providing a new strategy of integrated anti-inflammatory targeted delivery and imaging monitoring for ischemic stroke treatment.
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