齐墩果酸-3-葡萄糖苷是一种人工合成的齐墩果酸类皂甙,可改善甲基汞引起的小鼠突触传递功能障碍。

IF 4.8 3区 医学 Q1 PHARMACOLOGY & PHARMACY Toxicology Pub Date : 2024-06-19 DOI:10.1016/j.tox.2024.153867
Ryosuke Nakamura , Takashi Iwai , Yasukazu Takanezawa , Tatsuya Shirahata , Naruki Konishi , Yuka Ohshiro , Shimpei Uraguchi , Mitsuo Tanabe , Yoshinori Kobayashi , Kenji Sakamoto , Tsutomu Nakahara , Megumi Yamamoto , Masako Kiyono
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引用次数: 0

摘要

甲基汞(MeHg)广泛分布于自然界,已知会导致神经中毒。本研究旨在通过评估齐墩果酸-3-葡萄糖苷(一种人工合成的齐墩果酸型皂甙衍生物)对甲基汞中毒小鼠模型的运动功能、病理和电生理特性的影响,研究其抗甲基汞活性。给小鼠口服 2 或 4mg-kg-1-d-1 MeHg,同时口服或不口服 100µg-kg-1-d-1 OA3Glu,每周 5 次,连续四周。通过横梁行走和动态负重(DWB)测试评估运动功能。在横梁行走测试中,暴露于高剂量甲基汞会显著增加后腿跨梁的频率,而在动态负重测试中,自由移动时前肢的重量会增加。在这两项运动功能测试中,OA3Glu治疗缓解了高剂量甲基汞暴露导致的运动异常。此外,OA3Glu还减少了MeHg处理组小脑中经常观察到的挛缩浦肯野细胞的数量,尽管所有实验组的小脑组织学结果相似。小脑中的突触电位振幅随着甲基汞暴露量的增加而降低,而 OA3Glu 治疗则可使其恢复。即使在未观察到甲基汞影响的大脑中,场电位的振幅也会随着甲基汞暴露量的增加而受到抑制,但经 OA3Glu 处理后又会恢复。综上所述,研究结果表明,OA3Glu 可通过保护小脑中的浦肯野细胞来改善与甲基汞暴露相关的神经传递和运动障碍,同时还能改善在组织水平未观察到变化的大脑皮层中突触前/后缺陷,从而有可能提供一种减轻甲基汞毒性的治疗方法。
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Oleanolic acid-3-glucoside, a synthetic oleanane-type saponin, ameliorates methylmercury-induced dysfunction of synaptic transmission in mice

Methylmercury (MeHg) is widely distributed in nature and is known to cause neurotoxic effects. This study aimed to examine the anti-MeHg activity of oleanolic acid-3-glucoside (OA3Glu), a synthetic oleanane-type saponin derivative, by evaluating its effects on motor function, pathology, and electrophysiological properties in a mouse model of MeHg poisoning. Mice were orally administered 2 or 4 mg·kg−1·d−1 MeHg with or without 100 µg·kg−1·d−1 OA3Glu 5x/week for four weeks. Motor function was evaluated using beam-walking and dynamic weight-bearing (DWB) tests. High-dose MeHg exposure significantly increased the frequency of stepping off the hind leg while crossing the beam in the beam-walking test, and increased weight on forelegs when moving freely in the DWB test. OA3Glu treatment alleviated motor abnormality caused by high-dose MeHg exposure in both motor function tests. Additionally, OA3Glu treatment reduced the number of contracted Purkinje cells frequently observed in the cerebellum of MeHg-treated groups, although cerebrum histology was similar in all experimental groups. The synaptic potential amplitude in the cerebellum decreased as MeHg exposure increased, which was restored by OA3Glu treatment. Even in the cerebrum, where the effects of MeHg were not observed, the amplitude of the field potential was suppressed with increasing MeHg exposure but was restored with OA3Glu treatment. Taken together, the study findings suggest that OA3Glu improves neurotransmission and movement disorders associated with MeHg exposure via protection of Purkinje cells in the cerebellum while ameliorating pre/post-synaptic deficits in the cerebral cortex in which no changes were observed at the tissue level, potentially providing a treatment to mitigate MeHg toxicity.

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来源期刊
Toxicology
Toxicology 医学-毒理学
CiteScore
7.80
自引率
4.40%
发文量
222
审稿时长
23 days
期刊介绍: Toxicology is an international, peer-reviewed journal that publishes only the highest quality original scientific research and critical reviews describing hypothesis-based investigations into mechanisms of toxicity associated with exposures to xenobiotic chemicals, particularly as it relates to human health. In this respect "mechanisms" is defined on both the macro (e.g. physiological, biological, kinetic, species, sex, etc.) and molecular (genomic, transcriptomic, metabolic, etc.) scale. Emphasis is placed on findings that identify novel hazards and that can be extrapolated to exposures and mechanisms that are relevant to estimating human risk. Toxicology also publishes brief communications, personal commentaries and opinion articles, as well as concise expert reviews on contemporary topics. All research and review articles published in Toxicology are subject to rigorous peer review. Authors are asked to contact the Editor-in-Chief prior to submitting review articles or commentaries for consideration for publication in Toxicology.
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