多巴胺包裹的普鲁士蓝纳米粒子促进新生儿和成人缺血性中风模型的功能恢复

IF 8.1 Q1 ENGINEERING, BIOMEDICAL Biomaterials research Pub Date : 2024-09-18 eCollection Date: 2024-01-01 DOI:10.34133/bmr.0079
Yijing Zhao, Cong Song, Haijun Wang, Chengcheng Gai, Tingting Li, Yahong Cheng, Junjie Liu, Yan Song, Qian Luo, Bing Gu, Weiyang Liu, Liwei Chai, Dexiang Liu, Zhen Wang
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摘要

缺血性中风是一种破坏性疾病,也是全球死亡的主要原因之一。活性氧的过度产生和炎症反应会造成缺血性损伤后的二次损伤。具有强大抗氧化应激特性的纳米酶具有治疗缺血性损伤的可能性。然而,纳米酶在神经元线粒体中的积累不足阻碍了它们的应用。在此,我们构建了多巴胺包被普鲁士蓝纳米颗粒(PB@PDA NPs),以实现针对神经元线粒体的缺血性中风治疗,并具有抗氧化和抗炎特性。与PB NP组相比,PB@PDA NPs给药后在脑内的蓄积量要高得多。此外,与 PB NPs 相比,PB@PDA NPs 能有效减轻新生小鼠缺氧缺血(HI)后的脑梗塞。PB@PDA NPs在体内和体外主要与神经元线粒体结合。除了减轻氧化应激,PB@PDA NPs 还能抑制神经元凋亡和抗炎,从而有效促进 HI 小鼠短期和长期的功能恢复。此外,通过尾静脉注射 PB@PDA NPs 对成年缺血小鼠也有疗效。总之,这些研究结果表明,PB@PDA NPs 通过系统注射在神经元线粒体中积累,对缺血性脑卒中有益。
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Polydopamine-Cloaked Nanoarchitectonics of Prussian Blue Nanoparticles Promote Functional Recovery in Neonatal and Adult Ischemic Stroke Models.

Ischemic stroke is a devastating disease and one of the leading causes of mortality worldwide. Overproduction of reactive oxygen species and inflammatory response contribute to secondary damage following ischemic insult. Nanozymes with robust anti-oxidative stress properties possess therapeutic possibility for ischemic insult. However, insufficiency of nanozyme accumulation in the neuronal mitochondria hindered their application. Herein, we constructed polydopamine-coated Prussian blue nanoparticles (PB@PDA NPs) to realize the targeting neuronal mitochondria for ischemic stroke, with the properties of antioxidant and anti-inflammation. After administration, much higher accumulation of PB@PDA NPs in the brain was observed compared to that in the PB NP group. Moreover, PB@PDA NPs effectively attenuated brain infarct than that of PB NPs in neonatal mice following hypoxia-ischemia (HI) insult. PB@PDA NPs mainly colocated with neuronal mitochondria in vivo and in vitro. Apart from attenuating oxidative stress, PB@PDA NPs also suppressed neuronal apoptosis and counteracted inflammation, which effectively promote a short- and long-term functional recovery in HI mice. Further, the therapeutic efficacy of PB@PDA NPs was also found in adult ischemic mice via tail vein injection. Collectively, these findings illustrate that PB@PDA NPs via system injection accumulate in neuronal mitochondria and are beneficial for ischemic stroke.

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