Engineered exosomes mediated targeted delivery of neuroprotective peptide NR2B9c for the treatment of traumatic brain injury

神经保护 创伤性脑损伤 医学 体内 微泡 药理学 药物输送 外体 神经科学 化学 纳米技术 生物 小RNA 生物化学 材料科学 生物技术 精神科 基因
作者
Haroon Khan,Haoran Zheng,Shengju Wu,Ze Liu,Yaohui Tang,Guo‐Yuan Yang,Yingli Liu,Zhijun Zhang
出处
期刊:International Journal of Pharmaceutics [Elsevier BV]
卷期号:649: 123656-123656 被引量:34
标识
DOI:10.1016/j.ijpharm.2023.123656
摘要

Neuroprotection is one of the core treatment strategies for brain injuries including traumatic brain injury (TBI). NR2B9c is a promising neuroprotective peptide but its clinical translation is limited because of poor brain penetrability. Exosomes are naturally occurring nanovesicles having therapeutic potential for TBI as well as an efficient drug delivery carrier to the brain. Here, we engineered exosomes with neuron targeting peptide rabies virus glycoprotein (RVG29) via bio-orthogonal click chemistry technique and loaded it with NR2B9c, developing RVG-ExoNR2B9c. RVG29 conjugated exosome had higher neuron targeting efficiency compared to naïve exosomes both in vivo and in vitro. RVG-ExoNR2B9c had great cytoprotective effect against oxygen glucose deprived Neuro2a cells. Intravenous administration of RVG-ExoNR2B9c significantly improved behavioral outcomes and reduced the lesion volume after TBI injury in a mice controlled cortical impact model. Due to their multifunctionality and significant efficacy, we anticipate that RVG-ExoNR2B9c have the potential to be translated both as therapeutic agent as well as cargo delivery system to the brain for the treatment of TBI.
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