神经保护
药理学
下调和上调
医学
小胶质细胞
缺血
生物利用度
冲程(发动机)
体内
槲皮素
缺血性中风
炎症
细胞因子
材料科学
缺血性损伤
药品
药物输送
再灌注损伤
作者
Tianhao Zhang,Shiwen Fan,Haipeng Ji,Liu W,Xiangdong Chen,Daan Fu
标识
DOI:10.1021/acsbiomaterials.5c01855
摘要
Ischemic stroke is the key cause of increased disability and mortality in society. Quercetin (Qu), a natural compound with neuroprotective effects, shows promise for treating ischemic stroke. However, Qu's hydrophobicity may be an important factor limiting its therapeutic efficacy. Here, a novel quercetin nanodrug (Qu-Me NPs) is constructed by a facile self-assembly with mecobalamin (a FDA-approved drug for peripheral neuropathy), aiming to overcome the hydrophobicity and improve the bioavailability of Qu. Qu-Me NPs exhibits excellent dispersibility, uniform particle size, and stability in physiological media. Qu-Me NPs markedly attenuated infarct size, reduced neuroinflammation, and improved functional recovery at a 1/10 dose of free quercetin in the mouse middle cerebral artery occlusion (MCAO) model. Mechanistically, Qu-Me NPs modulated anti-inflammatory and antioxidative stress pathways, including suppression of microglial M1 polarization by the downregulation of Panx1 and attenuation of pro-inflammatory cytokine production (IL-1β, IL-6). These findings suggest that Qu-Me NPs is a new formulation of Qu, safe, and efficient therapeutic nanodrug for treating MCAO with a ready-to-be-clinically translated potential.
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