Faculty of Life Science and Technology, Kunming University of Science and Technology, Kunming Yunnan 650500, China.
First Affiliated Hospital of Kunming Medical University, Kunming Yunnan 650032, China.
Zool Res. 2019 May 18;40(3):231-235. doi: 10.24272/j.issn.2095-8137.2019.038. Epub 2019 Mar 28.
Early brain development after birth is extremely dynamic, suggesting that potential functional changes occur during this period. In this study, the maximal electroshock seizure threshold (MEST) was used to explore the electrophysiological variation among three developmental stages in young mice (no more than 5 weeks old). The induced electroshock seizure (ES) behavior of early postnatal mice (1-2-weeks old) differed from that during weaning (3 weeks old) and early puberty (4-5-weeks old). Thus, we further explored their respective characteristic responses to the ES parameters. When the stimulation current (SC) was limited to 4.0 mA, only the 1-2-week-old mice were induced to exhibit ES behavior at voltages of 30 V and 40 V, indicating they were more sensitive to maximal electroshock seizure (MES) (response to lower voltage). Surprisingly, however, they showed substantially lower mortality than the older groups under higher voltage conditions (60, 100, 160, and 200 V), suggesting better tolerance to the SC. We also found that when the current limit decreased to 3.5 mA, the 4-5-week-olds mice exhibited stable ES behavior with low mortality, while for 3-week-olds mice, the SC limit required to be reduced to 1.5 mA. In conclusion, our findings showed that neural sensitivity to MES was significantly different in young mice before puberty. Thus, greater attention should be given to distinguishing the developmental period of mice, especially in electrophysiological examination.
出生后大脑早期发育极为活跃,提示该时期可能发生潜在的功能变化。本研究采用最大电休克惊厥阈(MEST)来探索年轻小鼠(不超过 5 周龄)三个发育阶段的电生理变化。新生后 1-2 周龄(早期哺乳期)的电休克惊厥(ES)行为与断奶期(3 周龄)和早期青春期(4-5 周龄)的不同。因此,我们进一步探索了它们对 ES 参数的各自特征反应。当刺激电流(SC)限制在 4.0 mA 以内时,只有 1-2 周龄的小鼠在 30 V 和 40 V 电压下才会被诱导出现 ES 行为,这表明它们对最大电休克惊厥(MES)更敏感(对较低电压的反应)。然而,令人惊讶的是,在更高电压条件下(60、100、160 和 200 V),它们的死亡率明显低于年龄较大的组,表明对 SC 的耐受性更好。我们还发现,当电流限制降低到 3.5 mA 时,4-5 周龄的小鼠表现出稳定的 ES 行为和较低的死亡率,而对于 3 周龄的小鼠,则需要将 SC 限制降低到 1.5 mA。总之,我们的研究结果表明,青春期前的年轻小鼠对 MES 的神经敏感性存在显著差异。因此,在电生理检查中,应更加注意区分小鼠的发育阶段。