Novel donepezil-tacrine hybrid (TAHB3) induces neurodifferentiation, neuroprotective effects, and activates the PI3K/AKT pathway on PC12 cells.

IF 2.8 Q2 NEUROSCIENCES
Journal of Alzheimer's disease reports Pub Date : 2025-01-13 eCollection Date: 2025-01-01 DOI:10.1177/25424823241309268
Renata Melo Dos Santos Ono, Natália Chermont Dos Santos Moreira, Ivone Carvalho, Geraldo Aleixo Passos, Elza Tiemi Sakamoto-Hojo
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引用次数: 0

Abstract

Background: Alzheimer's disease (AD) is a neurodegenerative disease characterized by the impairment of cognitive functions and neuronal loss. AD has no cure; current treatments like acetylcholinesterase inhibitors (AChEI) alleviate symptoms but do not halt disease progression.

Objective: We aimed to evaluate the effects and mechanisms of two novel AChEI hybrid compounds (TAHB3 and TA8Amino), regarding cytotoxicity, neuroprotection and neurodifferentiation in PC12 cells.

Methods: The effects of TAHB3 and TA8Amino on neurodifferentiation were analyzed on PC12 cells which were treated with AChEI compounds for seven days, following morphological, and quantitative analyses to calculate the differentiation percentages, neurite length, and protein expression. Regarding cytotoxicity and neuroprotection assays, PC12 cells were differentiated into mature neurons, then treated with TAHB3 or TA8Amino, following a posttreatment with H2O2 (an inducer of oxidative damage); the analyses were performed using the XTT assay and flow cytometry.

Results: The hybrid compound TAHB3 induced differentiation of PC12 cells, but TA8Amino did not cause the same effect. Both compounds did not show cytotoxic effects to PC12 cells and did not change the cell cycle progression, nor induce cell death. Only TAHB3 showed neuroprotective potential against induced-oxidative damage, and TAHB3 increased the levels of p-AKT, suggesting its action through the activation of the PI3K/AKT pathway.

Conclusions: Our results showed that TAHB3 can induce neurodifferentiation, besides a neuroprotective activity, indicating the potential of AChEI hybrid compounds as novel candidates to be explored for the establishment of novel therapeutic strategies for patients with AD.

新型多奈哌齐-他克林杂合体(TAHB3)诱导PC12细胞的神经分化,发挥神经保护作用,并激活PI3K/AKT通路。
背景:阿尔茨海默病(AD)是一种以认知功能损害和神经元丧失为特征的神经退行性疾病。阿尔茨海默病无法治愈;目前的治疗方法如乙酰胆碱酯酶抑制剂(AChEI)可以缓解症状,但不能阻止疾病进展。目的:研究两种新型乙酰胆碱合成酶杂化化合物(TAHB3和TA8Amino)对PC12细胞的细胞毒性、神经保护和神经分化作用及其机制。方法:分析TAHB3和TA8Amino对经AChEI化合物处理7 d的PC12细胞神经分化的影响,并进行形态学和定量分析,计算分化百分率、神经突长度和蛋白表达。在细胞毒性和神经保护实验方面,将PC12细胞分化为成熟神经元,然后用TAHB3或TA8Amino处理,再用H2O2(一种氧化损伤诱导剂)后处理;采用XTT法和流式细胞术进行分析。结果:杂化化合物TAHB3对PC12细胞有诱导分化作用,而TA8Amino对PC12细胞无诱导分化作用。这两种化合物对PC12细胞没有细胞毒性作用,不会改变细胞周期进程,也不会诱导细胞死亡。只有TAHB3对诱导氧化损伤具有神经保护作用,并且TAHB3增加了p-AKT的水平,表明其通过激活PI3K/AKT通路发挥作用。结论:我们的研究结果表明,TAHB3除了具有神经保护活性外,还能诱导神经分化,这表明AChEI杂化化合物有潜力成为AD患者新治疗策略的新候选物。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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