Circ-KANAL1敲除通过miR-98-5p/PRDM5调节轴减少神经元凋亡并减轻脊髓损伤。

IF 2.4 4区 生物学 Q3 BIOCHEMISTRY & MOLECULAR BIOLOGY Molecular Biotechnology Pub Date : 2024-10-01 Epub Date: 2023-09-27 DOI:10.1007/s12033-023-00895-9
MinBo Jiang, Yang Li, WenWen Fan, XiaoYan Shen, Kai Jiang, DeGuo Wang
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引用次数: 0

摘要

脊髓损伤是一种常见的中枢神经系统疾病。circRNA在神经系统疾病中起着至关重要的作用。本研究旨在探讨circ-KATNAL1在SCI中的作用及其调控机制。对Sprague-Dawley大鼠T10椎板切除术后T9-L10脊髓段进行压缩或挫伤,建立SCI大鼠模型。然后将大鼠分为SCI组、si-NC组、si-circ-KATNAL1组、si-circ-KATNAL1组 + antagomir NC组,si-circ-KATNAL1 + miR-98-5p抗病毒组,si-circ-KATNAL1 + oe-NC组和si-circ-KATNAL1 + oe-PRDM5组,每组6只。还有一个假手术组没有接受任何治疗。Basso、Beattie和Bresnahan(BBB)评分用于评估大鼠的神经功能。此外,还对脊髓组织的病理变化、神经元凋亡和炎症反应进行了相应的观察和分析。对circ-KATNAL1、miR-98-5p和PRDM5水平进行了定量测量,并分析了它们之间的相互关系。Circ-KATNAL1在SCI大鼠脊髓组织中表达上调,敲低Circ-KATNAL1可改善SCI大鼠的神经功能,减轻脊髓组织的病理变化,抑制神经元凋亡和炎症反应。对于miR-98-5p,circ-KATNAL1是上游因子,而PRDM5是下游因子。miR-98-5p缺乏或PRDM5恢复损害了circ-KATNAL1敲低对SCI的缓解作用。Circ-KANAL1敲低通过miR-98-5p/PRDM5调节轴减少神经元凋亡并减轻SCI。
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Circ-KATNAL1 Knockdown Reduces Neuronal Apoptosis and Alleviates Spinal Cord Injury Through the miR-98-5p/PRDM5 Regulatory Axis.

Spinal cord injury (SCI) is a common disease of the central nervous system. circRNAs play a crucial role in neurological disease. The purpose of this study was to investigate the role of circ-KATNAL1 in SCI and its regulatory mechanism. T9-L10 spinal segment of Sprague Dawley rats was compressed or contused after T10 laminectomy to establish the SCI rat model. Then, rats were divided into SCI group, si-NC group, si-circ-KATNAL1 group, si-circ-KATNAL1 + antagomir NC group, si-circ-KATNAL1 + miR-98-5p antagomir group, si-circ-KATNAL1 + oe-NC group, and si-circ-KATNAL1 + oe-PRDM5 group, with 6 rats in each group. There was another sham operation group that received no treatment. Basso, Beattie, and Bresnahan (BBB) scores were used to evaluate the neural function of rats. In addition to that, the pathological changes of spinal cord tissue, neuronal apoptosis, and inflammatory responses were correspondingly observed and analyzed. Quantitative measurements of circ-KATNAL1, miR-98-5p, and PRDM5 levels were conducted, as well as analyses of their interrelationship. Circ-KATNAL1 was up-regulated in the spinal cord tissue of SCI rats, and circ-KATNAL1 knockdown could improve neural function, alleviate pathological changes of spinal cord tissue, and inhibit neuronal apoptosis and inflammatory responses in SCI rats. For miR-98-5p, circ-KATNAL1 was an upstream factor, while PRDM5 was a downstream actor. miR-98-5p deficiency or PRDM5 restoration impaired the remission effect of circ-KATNAL1 knockdown on SCI. Circ-KATNAL1 knockdown reduces neuronal apoptosis and alleviates SCI through miR-98-5p/PRDM5 regulatory axis.

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来源期刊
Molecular Biotechnology
Molecular Biotechnology 医学-生化与分子生物学
CiteScore
4.10
自引率
3.80%
发文量
165
审稿时长
6 months
期刊介绍: Molecular Biotechnology publishes original research papers on the application of molecular biology to both basic and applied research in the field of biotechnology. Particular areas of interest include the following: stability and expression of cloned gene products, cell transformation, gene cloning systems and the production of recombinant proteins, protein purification and analysis, transgenic species, developmental biology, mutation analysis, the applications of DNA fingerprinting, RNA interference, and PCR technology, microarray technology, proteomics, mass spectrometry, bioinformatics, plant molecular biology, microbial genetics, gene probes and the diagnosis of disease, pharmaceutical and health care products, therapeutic agents, vaccines, gene targeting, gene therapy, stem cell technology and tissue engineering, antisense technology, protein engineering and enzyme technology, monoclonal antibodies, glycobiology and glycomics, and agricultural biotechnology.
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