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产前母体补充物和原代海马培养物中通过 BDNF/TrkB 信号通路的百里酚对种子提取物中神经元分化和生长的影响。

Neuronal Differentiation and Outgrowth Effect of Thymol in Seed Extract via BDNF/TrkB Signaling Pathway in Prenatal Maternal Supplementation and Primary Hippocampal Culture.

机构信息

Department of Anatomy, Dongguk University College of Medicine, Gyeongju 38066, Republic of Korea.

Department of Fisheries Biology and Genetics, Patuakhali Science and Technology University, Patuakhali 8602, Bangladesh.

出版信息

Int J Mol Sci. 2023 May 10;24(10):8565. doi: 10.3390/ijms24108565.

Abstract

Reviving the neuronal functions in neurodegenerative disorders requires the promotion of neurite outgrowth. Thymol, which is a principal component of seed extract (TASE), is reported to have neuroprotective effects. However, the effects of thymol and TASE on neuronal differentiation and outgrowth are yet to be studied. This study is the first report investigating the neuronal growth and maturation effects of TASE and thymol. Pregnant mice were orally supplemented with TASE (250 and 500 mg/kg), thymol (50 and 100 mg/kg), vehicle, and positive controls. The supplementation significantly upregulated the expression of brain-derived neurotrophic factor (BDNF) and early neuritogenesis markers in the pups' brains at post-natal day 1 (P1). Similarly, the BDNF level was significantly upregulated in the P12 pups' brains. Furthermore, TASE (75 and 100 µg/mL) and thymol (10 and 20 µM) enhanced the neuronal polarity, early neurite arborization, and maturation of hippocampal neurons in a dose-dependent manner in primary hippocampal cultures. The stimulatory activities of TASE and thymol on neurite extension involved TrkB signaling, as evidenced by attenuation via ANA-12 (5 µM), which is a specific TrkB inhibitor. Moreover, TASE and thymol rescued the nocodazole-induced blunted neurite extension in primary hippocampal cultures, suggesting their role as a potent microtubule stabilizing agent. These findings demonstrate the potent capacities of TASE and thymol in promoting neuronal development and reconstruction of neuronal circuitry, which are often compromised in neurodegenerative diseases and acute brain injuries.

摘要

在神经退行性疾病中恢复神经元功能需要促进神经突生长。百里香酚是种子提取物(TASE)的主要成分之一,据报道具有神经保护作用。然而,百里香酚和 TASE 对神经元分化和生长的影响尚未得到研究。本研究首次报道了 TASE 和百里香酚对神经元生长和成熟的影响。怀孕的老鼠经口补充 TASE(250 和 500mg/kg)、百里香酚(50 和 100mg/kg)、载体和阳性对照。补充后,在出生后第 1 天(P1),幼鼠大脑中的脑源性神经营养因子(BDNF)和早期神经突发生标志物的表达显著上调。同样,在 P12 幼鼠的大脑中,BDNF 水平也显著上调。此外,TASE(75 和 100μg/mL)和百里香酚(10 和 20μM)在原代海马培养物中以剂量依赖性方式增强了神经元极性、早期神经突分支和成熟。TASE 和百里香酚对神经突延伸的刺激活性涉及 TrkB 信号,这一点通过特异性 TrkB 抑制剂 ANA-12(5μM)的衰减得到证明。此外,TASE 和百里香酚挽救了长春新碱诱导的原代海马培养物中神经突延伸的减弱,表明它们作为一种有效的微管稳定剂的作用。这些发现表明 TASE 和百里香酚具有促进神经元发育和重建神经元回路的强大能力,而神经元回路在神经退行性疾病和急性脑损伤中经常受到损害。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f55d/10218397/af4ac16320b4/ijms-24-08565-g001.jpg

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