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首页> 外文期刊>American Journal of Physiology >Oral delivery of nanoparticle urolithin A normalizes cellular stress and improves survival in mouse model of cisplatin-induced AKI
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Oral delivery of nanoparticle urolithin A normalizes cellular stress and improves survival in mouse model of cisplatin-induced AKI

机译:纳米颗粒尿凿素尿素的口服递送归一化细胞应激,提高顺铂诱导的AKI小鼠模型中的存活

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摘要

The popular anticancer drug cisplatin causes many adverse side effects, the most serious of which is acute kidney injury (AKI). Emerging evidence from laboratory and clinical studies suggests that the AKI pathogenesis involves oxidative stress pathways; therefore, regulating such pathways may offer protection. Urolithin A (UA), a gut metabolite of the dietary tannin ellagic acid, possesses antioxidant properties and has shown promise in mouse models of AKI. However, therapeutic potential of UA is constrained by poor bioavailability. We aimed to improve oral bioavailability of UA by formulating it into biodegradable nanoparticles that use a surface-conjugated ligand targeting the gut-expressed transferrin receptor. Nanoparticle encapsulation of UA led to a sevenfold enhancement in oral bioavailability compared with native UA. Treatment with nanoparticle UA also significantly attenuated the histopathological hallmarks of cisplatin-induced AKI and reduced mortality by 63% in the mouse model.
机译:受欢迎的抗癌药物顺铂导致许多不良副作用,最严重的是急性肾损伤(AKI)。来自实验室和临床研究的新出现的证据表明,AKI发病机制涉及氧化应激途径;因此,调节这种途径可以提供保护。尿道素A(UA)是膳食单宁鞣酸的肠道代谢物,具有抗氧化性能,并在AKI的小鼠模型中显示出许可。然而,UA的治疗潜力受到差的生物利用度。我们旨在通过将其制定到使用靶向肠道表达的转移蛋白受体的可生物降解的纳米颗粒中的可生物降解的纳米颗粒来提高UA的口服生物利用度。与天然UA相比,UA的纳米粒子封装导致口腔生物利用度的七倍增强。纳米粒子UA的处理也显着减弱了小铂诱导的AKI的组织病理学标志,并在小鼠模型中减少了63%的死亡率。

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