曲马多暴露会对海马产生不利影响吗?回顾性研究。

Addiction and Health Pub Date : 2024-07-01 Epub Date: 2024-07-29 DOI:10.34172/ahj.1481
Samira Ezi, Mehri Shadi, Masood Vafaei-Nezhad, Saeed Vafaei-Nezhad
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引用次数: 0

摘要

背景:曲马多是最常见的阿片类止痛药之一,可作用于中枢神经系统(CNS)中的μ受体,缓解术后疼痛、关节炎和肌肉疼痛等各种情况下的相关疼痛。此外,曲马多还可用于治疗抑郁症和焦虑症。大量研究表明,曲马多可能会对中枢神经系统的不同区域造成不可逆的伤害,包括大脑、小脑、杏仁核,尤其是海马体形成。然而,这些影响背后的确切机制仍不清楚。在本研究中,我们全面考察了曲马多对中枢神经系统的影响,特别是对海马形成的影响:在本研究中,我们通过使用特定关键词(包括曲马多、盐酸曲马多、中枢神经系统、海马和海马形成)在各种数据库中进行检索,收集了 2000 年至 2022 年间发表的相关文章:研究结果:这项研究提出了曲马多可能影响中枢神经系统的几个过程,包括诱导细胞凋亡、自噬、自由基过量产生和细胞器功能紊乱。这些过程最终会导致神经细胞功能紊乱,尤其是在海马区。此外,研究还发现,服用曲马多会导致大脑和脊髓各区域的神经细胞数量和体积显著减少:结论:服用曲马多会导致神经细胞数量和大脑及脊髓内不同区域的体积显著减少,从而可能出现神经心理障碍,如记忆形成、注意力缺陷和认知障碍。这一发现凸显了曲马多对神经结构的潜在影响,值得进一步研究。
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Does Tramadol Exposure Have Unfavorable Effects on Hippocampus? A Review Study.

Background: Tramadol, one of the most common opioid pain relievers, acts upon the µ-receptor in the central nervous system (CNS) to alleviate pain associated with various situations like postoperative pain, arthritis, and muscular pain. Additionally, it has been utilized to address depression and anxiety disorders. Extensive research has shown that tramadol can potentially inflict irreversible harm on different regions of the CNS, including the cerebrum, cerebellum, amygdala, and, notably, the hippocampal formation. However, the precise mechanism behind these effects remains unclear. Within this study, we conducted a comprehensive examination of the impacts of tramadol on the CNS, specifically focusing on hippocampal formation.

Methods: In this study, we collected relevant articles published between 2000 and 2022 by conducting searches using specific keywords, including tramadol, tramadol hydrochloride, central nervous system, hippocampus, and hippocampal formation, in various databases.

Findings: The results of this study proposed several processes by which tramadol may impact the CNS, including the induction of apoptosis, autophagy, excessive production of free radicals, and dysfunction of cellular organelles. These processes ultimately lead to disturbances in neural cell function, particularly within the hippocampus. Furthermore, it is revealed that tramadol administration led to a significant decrease in the neural cell count and the volume of various regions within the brain and spinal cord.

Conclusion: Consequently, neuropsychological impairments, such as memory formation, attention deficits, and cognitive impairment, may happen. This finding highlights the potential impacts of tramadol on neural structures and warrants further investigation.

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