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外泌体携带的 miR-18a-5p 通过阻断 ENC1/p62 轴减轻蛛网膜下腔出血后的早期脑损伤。

miR-18a-5p shuttled by mesenchymal stem cell-derived extracellular vesicles alleviates early brain injury following subarachnoid hemorrhage through blockade of the ENC1/p62 axis.

机构信息

Clinical Genetics Laboratory, Affiliated Hospital & Clinical Medical College of Chengdu University, Sichuan Province, No. 82, North Section 2, 2nd Ring Road, Chengdu, 610081, People's Republic of China.

Department of Radiation Protection Medicine, Faculty of Preventive Medicine, Air Force Medical University, Xi'an, 710032, People's Republic of China.

出版信息

Cell Tissue Res. 2023 Jun;392(3):671-687. doi: 10.1007/s00441-023-03754-w. Epub 2023 Feb 16.

Abstract

Mesenchymal stem cell-derived extracellular vesicles (MSC-EVs) have therapeutic potential in various diseases due to their capacity to transfer bioactive cargoes such as microRNAs (miRNAs or miRs) to recipient cells. The present study isolated EVs from rat MSCs and aimed to delineate their functions and molecular mechanisms in early brain injury following subarachnoid hemorrhage (SAH). We initially determined the expression of miR-18a-5p and ENC1 in hypoxia/reoxygenation (H/R)-induced brain cortical neurons and rat models of SAH induced by the endovascular perforation method. Accordingly, increased ENC1 and decreased miR-18a-5p were detected in H/R-induced brain cortical neurons and SAH rats. After MSC-EVs were co-cultured with cortical neurons, the effects of miR-18a-5p on neuron damage, inflammatory response, endoplasmic reticulum (ER) stress, and oxidative stress markers were evaluated based on ectopic expression and depletion experiments. miR-18a-5p overexpression in brain cortical neurons co-cultured with MSC-EVs was shown to impede neuron apoptosis, ER stress and oxidative stress while augmenting neuron viability. Mechanistically, miR-18a-5p bound to the 3'UTR of ENC1 and reduced its expression, weakening the interaction between ENC1 and p62. Through this mechanism, transfer of miR-18a-5p by MSC-EVs contributed to the eventual inhibition of early brain injury and neurological impairment following SAH. Overall, miR-18a-5p/ENC1/p62 may be a possible mechanism underlying the cerebral protective effects of MSC-EVs against early brain injury following SAH.

摘要

间充质干细胞衍生的细胞外囊泡(MSC-EVs)因其能够将生物活性物质(如 microRNAs miRNAs 或 miRs)传递到受体细胞而在各种疾病中具有治疗潜力。本研究从大鼠 MSC 中分离 EVs,并旨在描绘它们在蛛网膜下腔出血(SAH)后早期脑损伤中的功能和分子机制。我们首先确定了 miR-18a-5p 和 ENC1 在缺氧/复氧(H/R)诱导的脑皮质神经元和血管内穿孔法诱导的 SAH 大鼠中的表达。相应地,在 H/R 诱导的脑皮质神经元和 SAH 大鼠中检测到 ENC1 增加和 miR-18a-5p 减少。在 MSC-EVs 与皮质神经元共培养后,根据异位表达和耗尽实验评估了 miR-18a-5p 对神经元损伤、炎症反应、内质网(ER)应激和氧化应激标志物的影响。在与 MSC-EVs 共培养的脑皮质神经元中过表达 miR-18a-5p 可阻止神经元凋亡、ER 应激和氧化应激,同时增强神经元活力。从机制上讲,miR-18a-5p 与 ENC1 的 3'UTR 结合并降低其表达,从而削弱了 ENC1 和 p62 之间的相互作用。通过这种机制,MSC-EVs 转移的 miR-18a-5p 有助于抑制 SAH 后早期脑损伤和神经功能障碍。总体而言,miR-18a-5p/ENC1/p62 可能是 MSC-EVs 对 SAH 后早期脑损伤的脑保护作用的潜在机制。

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