Inhibition of hippocampal melatonin synthesis by siRNA induced learning and memory deficits in male rats

IF 4.6 Q2 MATERIALS SCIENCE, BIOMATERIALS ACS Applied Bio Materials Pub Date : 2024-07-03 DOI:10.1016/j.yhbeh.2024.105599
Tahereh Ghorbandaiepour , Esmaeil Sadroddiny , Maryam Zahmatkesh , Gholamreza Hassanzadeh
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Abstract

Melatonin, the multi-functional neurohormone, is synthesized in the extra-pineal tissues such as the hippocampus. The key enzyme in hippocampal melatonin synthesis is arylalkylamine-N-acetyltransferase (AANAT). The importance of melatonin synthesis in the hippocampus has not yet been determined. We investigated hippocampal AANAT role in cognitive function using gene silencing small interference RNA (siRNA) technology.

The hippocampal local melatonin synthesis was inhibited by AANAT-siRNA injection. The time-gene silencing profile of AANAT-siRNA was obtained by RT-PCR technique. The cytotoxicity of siRNA dose was determined by MTT assay on the B65 neural cells. Animals received the selected dosage of AANAT-siRNA. Then, the spatial working memory (Y maze), object recognition memory and spatial reference memory (Morris's water maze, MWM) were evaluated. The anxiety-like behaviors were evaluated by the elevated plus maze. After one week, following the probe test of MWM, the rats were sacrificed for histological analysis. The hippocampal melatonin levels were measured using the liquid chromatography–mass spectrometry technique.

The hippocampal melatonin levels in the AANAT-siRNA group decreased. Animals receiving the AANAT-siRNA showed deficits in spatial learning and working memory which were verified by increased escape latency and reduced spontaneous alternations, respectively. There was an increase in anxiety-like behaviors as well as a deficit in recognition memory in the AANAT-siRNA group. The Nissl staining and immunohistochemistry of activated caspase-3 showed the neuronal loss and cell apoptosis in hippocampal tissue of the AANAT-siRNA group. The 18F-FDG-PET imaging displayed lower glucose metabolism following the reduction in AANAT mRNA. Data suggest that the AANAT mRNA and hippocampal melatonin synthesis might be an essential factor for learning, memory and some aspects of cognition, as well as homeostasis of hippocampal cells.

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siRNA 抑制海马褪黑激素合成会导致雄性大鼠学习和记忆障碍
褪黑素是一种多功能神经激素,在海马等松果体外组织中合成。海马褪黑激素合成的关键酶是芳基烷基胺-N-乙酰转移酶(AANAT)。海马中褪黑激素合成的重要性尚未确定。我们利用基因沉默小干扰 RNA(siRNA)技术研究了海马 AANAT 在认知功能中的作用。注射AANAT-siRNA抑制了海马局部褪黑激素的合成。通过RT-PCR技术获得了AANAT-siRNA的基因沉默时间曲线。siRNA 剂量的细胞毒性通过 MTT 法检测 B65 神经细胞。动物接受选定剂量的AANAT-siRNA。然后,评估动物的空间工作记忆(Y迷宫)、物体识别记忆和空间参照记忆(莫里斯水迷宫,MWM)。焦虑样行为通过高架加迷宫进行评估。一周后,在进行了莫里斯水迷宫的探针测试后,大鼠被处死以进行组织学分析。采用液相色谱-质谱联用技术测定海马褪黑激素水平。AANAT-siRNA 组大鼠海马褪黑激素水平下降。接受AANAT-siRNA的动物在空间学习和工作记忆方面表现出缺陷,这分别通过逃逸潜伏期增加和自发交替减少得到验证。AANAT-siRNA 组动物的焦虑样行为增加,识别记忆出现缺陷。Nissl染色和活化的caspase-3免疫组化显示AANAT-siRNA组海马组织中神经元丢失和细胞凋亡。18F-FDG-PET 成像显示,AANAT mRNA 减少后,葡萄糖代谢降低。数据表明,AANAT mRNA和海马褪黑激素的合成可能是学习、记忆和认知的某些方面以及海马细胞稳态的重要因素。
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来源期刊
ACS Applied Bio Materials
ACS Applied Bio Materials Chemistry-Chemistry (all)
CiteScore
9.40
自引率
2.10%
发文量
464
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