微rna在麻醉致脑损伤中的作用:综述。

IF 0.9 Q3 ANESTHESIOLOGY
Elvan Öçmen, Bilge Karaçiçek, Burak İbrahim Arıöz, Hale Aksu, Şermin Genç
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引用次数: 0

摘要

麻醉剂是医疗干预和手术中常用的药物。在宫内晚期或儿童早期接触麻醉剂可能导致发育中的大脑神经退行性变。神经细胞凋亡和神经抑制由多种机制提供,microrna (miRNAs)在这种环境中起着至关重要的作用。mirna在麻醉暴露反应中起关键作用。通过这篇综述,我们对PubMed数据库进行了系统的检索,以研究麻醉剂在大脑中的作用及其与mirna的关系。关键词是“麻醉剂”、“miRNA”和“大脑”。在这里,我们总结了体内和体外研究中暴露于麻醉剂下mirna的作用和相互作用。研究的麻醉药物包括七氟醚、异氟醚、氯胺酮和异丙酚。许多microrna在麻醉诱导的神经毒性中具有调节作用。文献研究支持mirna在麻醉给药中发挥重要的神经保护和神经毒性作用的观点。miRNA在麻醉神经毒性中的确切作用和意义需要阐明,以获得更多关于该领域的知识。未来需要通过基础、临床和转译分析来填补一些知识空白,以破译mirna在麻醉诱导神经毒性中的确切作用及其功能。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
The Role of microRNA in Anaesthetics-induced Brain Injury: A Narrative Review.

Anaesthetics are commonly used agents during medical interventions and surgeries. Exposure to anaesthetic agents in late intrauterine life or early childhood may cause neurodegeneration in developing brains. Neuroapoptosis and neural inhibition provided by several mechanisms and microRNAs (miRNAs) have crucial roles in this milieu. miRNAs have critical roles in response to anaesthetic exposure. Through this review, we performed a systematic search of the PubMed database for studies on the role of anaesthetics in the brain and their relation with miRNAs. The terms "anesthetic", "miRNA", and "brain" were searched. Here we summarized the roles and interactions of miRNAs under exposure to anaesthetics in vivo and in vitro studies. Anaesthetic agents studied included sevoflurane, isoflurane, ketamine, and propofol. Many microRNAs were identified to have regulatory roles in anaesthesia-induced neurotoxicity. The literature study supports the idea that miRNAs play crucial functions in neuroprotection and neurotoxicity in anaesthesia administration. The exact role and implication of miRNA in anaesthesia neurotoxicity needs to be elucidated to gain more knowledge about the area. Several gaps in knowledge should be filled by conducting basic, clinical, and translational analyses in the future to decipher the definite role of miRNAs and their functions in the context of anaesthesia-induced neurotoxicity.

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