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小白菊内酯对周围神经变性的抑制作用。

Inhibitory effect of parthenolide on peripheral nerve degeneration.

作者信息

Kim Jung Min, Choi Jae Sun, Jung Junyang, Yeo Seung Geun, Kim Sang Hoon

机构信息

Department of Otorhinolaryngology, Head and Neck Surgery, Kyung Hee University School of Medicine, Kyung Hee University Medical Center, Seoul, 02447, Korea.

Clinical Research Institute, Kyung Hee Medical Center, Seou, 02447, Korea.

出版信息

Anat Sci Int. 2023 Sep;98(4):529-539. doi: 10.1007/s12565-023-00718-6. Epub 2023 Apr 6.

Abstract

Traumatic axonal damage disrupts connections between neurons, leading to the loss of motor and sensory functions. Although damaged peripheral nerves can regenerate, recovery depends on the variety and severity of nerve damage. Thus, many phytochemicals have been studied for their ability to reduce peripheral nerve degeneration, and among them, Parthenolide (PTL), which is extracted from Feverfew has effects against production of free radicals, inflammation, and apoptosis. Thus, we conducted a study to investigate whether PTL has an inhibitory effect on peripheral nerve degeneration during peripheral nerve damage. To verify the effect of PTL on peripheral nerve degeneration process, a morphological comparison of peripheral nerves with and without PTL was performed. PTL significantly reduced the quantity of fragmented ovoid formations at 3DIV (days in vitro). Immunostaining for MBP revealed that the ratio of intact myelin sheaths increased significantly in sciatic nerve with PTL compared with absence of PTL at 3DIV. Furthermore, nerve fibers in the presence of PTL maintained the continuity of Neurofilament (NF) compared to those without at 3DIV. Immunostaining for LAMP1 and p75 NTR showed that the expression of LAMP1 and p75 NTR decreased in the nerve after PTL addition at 3DIV. Lastly, immunostaining for anti-Ki67 revealed that PTL inhibited Ki67 expression at 3DIV compared to without PTL. These results confirm that PTL inhibits peripheral nerve degenerative processes. PTL may be a good applicant to inhibit peripheral nerve degeneration. Our study examined the effect of Parthenolide in preventing degeneration of peripheral nerves by inhibiting the breakdown of peripheral axons and myelin, also inhibiting Schwann cell trans-dedifferentiation and proliferation.

摘要

创伤性轴突损伤会破坏神经元之间的连接,导致运动和感觉功能丧失。尽管受损的周围神经可以再生,但其恢复情况取决于神经损伤的种类和严重程度。因此,许多植物化学物质因其减少周围神经变性的能力而受到研究,其中,从小白菊中提取的小白菊内酯(PTL)具有对抗自由基产生、炎症和细胞凋亡的作用。因此,我们开展了一项研究,以调查PTL对周围神经损伤期间周围神经变性是否具有抑制作用。为了验证PTL对周围神经变性过程的影响,我们对有或没有PTL的周围神经进行了形态学比较。PTL在体外培养3天时显著减少了碎片化卵圆形结构的数量。髓鞘碱性蛋白(MBP)免疫染色显示,与体外培养3天无PTL的坐骨神经相比,有PTL的坐骨神经中完整髓鞘的比例显著增加。此外,与体外培养3天无PTL的神经纤维相比,有PTL的神经纤维保持了神经丝(NF)的连续性。溶酶体相关膜蛋白1(LAMP1)和p75神经营养因子受体(p75 NTR)免疫染色显示,体外培养3天添加PTL后,神经中LAMP1和p75 NTR的表达降低。最后,抗Ki67免疫染色显示,与无PTL相比,体外培养3天PTL抑制了Ki67的表达。这些结果证实PTL抑制周围神经退行性过程。PTL可能是抑制周围神经变性的良好候选物。我们的研究通过抑制周围轴突和髓鞘的分解,以及抑制雪旺细胞去分化和增殖,研究了小白菊内酯在预防周围神经变性方面的作用。

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