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Engineered Extracellular Vesicles Loaded with MiR-100-5p Antagonist Selectively Target the Lesioned Region to Promote Recovery from Brain Damage.

作者信息

Cheng Yahong, Gai Chengcheng, Zhao Yijing, Li Tingting, Song Yan, Luo Qian, Xin Danqing, Jiang Zige, Chen Wenqiang, Liu Dexiang, Wang Zhen

机构信息

Department of Physiology, School of Basic Medical Sciences, Cheeloo College of Medicine, Shandong University, Jinan, 250012, China.

Department of Medical Psychology and Ethics, School of Basic Medicine Sciences, Cheeloo College of Medicine, Shandong University, Jinan, 250012, China.

出版信息

Neurosci Bull. 2025 Apr 1. doi: 10.1007/s12264-025-01376-6.


DOI:10.1007/s12264-025-01376-6
PMID:40167866
Abstract

Hypoxic-ischemic (HI) brain damage poses a high risk of death or lifelong disability, yet effective treatments remain elusive. Here, we demonstrated that miR-100-5p levels in the lesioned cortex increased after HI insult in neonatal mice. Knockdown of miR-100-5p expression in the brain attenuated brain injury and promoted functional recovery, through inhibiting the cleaved-caspase-3 level, microglia activation, and the release of proinflammation cytokines following HI injury. Engineered extracellular vesicles (EVs) containing neuron-targeting rabies virus glycoprotein (RVG) and miR-100-5p antagonists (RVG-EVs-Antagomir) selectively targeted brain lesions and reduced miR-100-5p levels after intranasal delivery. Both pre- and post-HI administration showed therapeutic benefits. Mechanistically, we identified protein phosphatase 3 catalytic subunit alpha (Ppp3ca) as a novel candidate target gene of miR-100-5p, inhibiting c-Fos expression and neuronal apoptosis following HI insult. In conclusion, our non-invasive method using engineered EVs to deliver miR-100-5p antagomirs to the brain significantly improves functional recovery after HI injury by targeting Ppp3ca to suppress neuronal apoptosis.

摘要

相似文献

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[5]
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[10]
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本文引用的文献

[1]
MiR-100-5p-rich small extracellular vesicles from activated neuron to aggravate microglial activation and neuronal activity after stroke.

J Nanobiotechnology. 2024-9-3

[2]
Engineered exosomes mediated targeted delivery of neuroprotective peptide NR2B9c for the treatment of traumatic brain injury.

Int J Pharm. 2024-1-5

[3]
Bio-clickable, small extracellular vesicles-COCKTAIL therapy for ischemic stroke.

J Control Release. 2023-11

[4]
MR imaging and outcome in neonatal HIBD models are correlated with sex: the value of diffusion tensor MR imaging and diffusion kurtosis MR imaging.

Front Neurosci. 2023-9-15

[5]
Cerebral endothelial cell-derived extracellular vesicles regulate microglial polarization and promote autophagy via delivery of miR-672-5p.

Cell Death Dis. 2023-9-29

[6]
miR-100-5p activation of the autophagy response through inhibiting the mTOR pathway and suppression of cerebral infarction progression in mice.

Aging (Albany NY). 2023-8-22

[7]
Embryonic stem cell-derived extracellular vesicles rejuvenate senescent cells and antagonize aging in mice.

Bioact Mater. 2023-7-1

[8]
Up-Regulation of miR-9-5p Inhibits Hypoxia-Ischemia Brain Damage Through the DDIT4-Mediated Autophagy Pathways in Neonatal Mice.

Drug Des Devel Ther. 2023

[9]
Extracellular vesicle-based delivery of silencing sequences for the treatment of Machado-Joseph disease/spinocerebellar ataxia type 3.

Mol Ther. 2023-5-3

[10]
The Circadian System Is Essential for the Crosstalk of VEGF-Notch-mediated Endothelial Angiogenesis in Ischemic Stroke.

Neurosci Bull. 2023-9

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