Exosomes derived from human placental mesenchymal stem cells in combination with hyperbaric oxygen therapy enhance neuroregeneration in a rat model of sciatic nerve crush injury

IF 3.4 3区 环境科学与生态学 Q3 CELL & TISSUE ENGINEERING Regenerative Therapy Pub Date : 2024-11-30 DOI:10.1016/j.reth.2024.11.021
Fereshteh Talebpour Amiri , Aref Jafari , Fahimeh Ahmadi , Hossein Mokhtari , Amir Raoofi , Farshad Moharrami Kasmaie , Maryam Omran , Mohammad Amin Alimohammadi , Davood Nasiry
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Abstract

Peripheral nerve damage continues to be a significant challenge in the field of medicine, with no currently available effective treatment. Currently, we investigated the beneficial effects of human placenta mesenchymal stem cells (PMSCs)- derived exosomes along with hyperbaric oxygen therapy (HBOT) in a sciatic nerve injury model. Seventy-five male mature Sprague-Dawley rats were allocated into five equal groups. In addition to the control group that received no intervention, damaged animals were allocated into four groups as follows: crush group, exosome group, HBOT group, and Exo+HBOT group. After the last neurological evaluations, tissue samples (sciatic nerve and dorsal root ganglion (DRG)) at the injury side, as well as spinal cord segments related to the sciatic nerve were collected to investigate histological, immunohistochemical, biochemical, and molecular characteristics. We found that the volume of the sciatic nerve, the thickness of the myelin sheath, the densities of nerve fibers and Schwann cells, the numerical densities of sensory neurons and glial cells in the DRG, as well as the numerical density of motor neurons in the anterior horn of the spinal cord, the levels of antioxidative factors (GSH, SOD, and CAT) in the sciatic nerve, as well as the neurological functions (EMG latency and SFI) in the treatment groups, especially the Exo+HBOT group, were significantly improved compared to the crush group. This is while the numerical density of glial cells in the spinal cord, the levels of an oxidative factor (MDA), and pro-inflammatory cytokines (IL-1β, TNF-α, and IFN- γ) considerably decreased in the treatment groups, particularly the Exo+HBOT group, compared to the crush group. We conclude that co-administration of PMSCs-derived exosomes and HBOT has synergistic neuroprotective effects in animals undergoing sciatic nerve injury.
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来自人胎盘间充质干细胞的外泌体联合高压氧治疗可增强坐骨神经挤压损伤大鼠模型的神经再生
周围神经损伤仍然是医学领域的一个重大挑战,目前尚无有效的治疗方法。目前,我们研究了人胎盘间充质干细胞(PMSCs)来源的外泌体与高压氧治疗(HBOT)在坐骨神经损伤模型中的有益作用。将75只成年雄性Sprague-Dawley大鼠分为5组。在不进行干预的对照组基础上,将损伤动物分为粉碎组、外泌体组、HBOT组、Exo+HBOT组。最后一次神经学评估后,收集损伤侧组织样本(坐骨神经和背根神经节(DRG))以及与坐骨神经相关的脊髓节段,研究组织学、免疫组织化学、生化和分子特征。我们发现坐骨神经的体积,髓鞘的厚度,神经纤维和雪旺细胞的密度,密度数值诊断相关的感觉神经元和神经胶质细胞,以及数值密度脊髓前角运动神经元的,抗氧化因子的水平(谷胱甘肽、SOD和CAT)在坐骨神经,以及神经功能(EMG延迟和SFI)治疗组,尤其是挂式+ HBOT组,与挤压组相比均有显著改善。与挤压组相比,治疗组(尤其是Exo+HBOT组)脊髓胶质细胞的数量密度、氧化因子(MDA)和促炎细胞因子(IL-1β、TNF-α和IFN- γ)的水平显著降低。我们得出结论,pmscs来源的外泌体和HBOT共同给药对坐骨神经损伤动物具有协同的神经保护作用。
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来源期刊
Regenerative Therapy
Regenerative Therapy Engineering-Biomedical Engineering
CiteScore
6.00
自引率
2.30%
发文量
106
审稿时长
49 days
期刊介绍: Regenerative Therapy is the official peer-reviewed online journal of the Japanese Society for Regenerative Medicine. Regenerative Therapy is a multidisciplinary journal that publishes original articles and reviews of basic research, clinical translation, industrial development, and regulatory issues focusing on stem cell biology, tissue engineering, and regenerative medicine.
期刊最新文献
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