New Role of D-Cycloserine: Shorten Adaptation Process and Extend Maintenance Time of Motion Sickness.

IF 2.9 4区 医学 Q2 PHARMACOLOGY & PHARMACY Pharmacology Pub Date : 2023-01-01 DOI:10.1159/000530575
Yilin Lu, Zehua Chen, Leilei Pan, Ling Zhang, Shuifeng Xiao, Ruirui Qi, Yiling Cai, Junqin Wang
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Abstract

Introduction: The aim of the study was to investigate the role of D-cycloserine (DCS) in the adaptation process and maintenance of motion sickness (MS).

Methods: In experiment 1, 120 SD rats were used to study the promoting effect of DCS on the adaptation process of MS in rats. They were randomly divided into four groups, DCS-rotation (DCS-Rot), DCS-static, saline-rotation (Sal-Rot), and saline-static, and further divided into three subgroups according to the adaptation time (4 days, 7 days, and 10 days) in each group. After being given DCS (0.5 mg/kg) or 0.9% saline, they were rotated or kept static according to the group. Their fecal granules, total distance, and total activity of spontaneous activity were recorded and analyzed. In experiment 2, other 120 rats were used. The experimental grouping and specific experimental method were the same as experiment 1. According to the grouping of the adaptive maintenance duration, the animals of 14 days, 17 days, and 21 days groups were measured on the corresponding date of the changes in the animals' exploratory behavior.

Results: In experiment 1, the fecal granules, total distance, and total activity of spontaneous activity of Sal-Rot returned to the control level on 9 days, and the DCS-Rot group returned to the control level on 6 days, indicating that DCS could shorten the adaptation time of MS rats from 9 days to 6 days. In experiment 2, the Sal-Rot could not maintain the adaptive state after 14 days' absence from the seasickness environment. The fecal granules of DCS-Rot increased significantly, and total distance and total activity of spontaneous activity of DCS-Rot decreased significantly from 17 days. These illustrate that DCS can prolong the adaptive maintenance time from within 14 days to 17 days in MS rats.

Conclusion: 0.5 mg/kg DCS injected intraperitoneally can shorten the MS adaptation process and extend the maintenance time of adaptation of SD rats.

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d -环丝氨酸的新作用:缩短运动病的适应过程和延长维持时间。
前言:本研究旨在探讨d -环丝氨酸(DCS)在运动病(MS)的适应过程和维持中的作用。方法:实验1采用120只SD大鼠,研究DCS对大鼠MS适应过程的促进作用。随机分为dcs -轮作(DCS-Rot)、dcs -静态、盐-轮作(Sal-Rot)和盐-静态4组,并根据每组适应时间(4 d、7 d、10 d)再分为3个亚组。给予DCS (0.5 mg/kg)或0.9%生理盐水后,按组旋转或静止。记录和分析它们的粪便颗粒、总距离和自发活动的总活性。实验2另取大鼠120只。实验分组及具体实验方法与实验1相同。根据适应性维持时间的分组,在相应的日期测量14天、17天和21天组动物的探索行为变化。结果:实验1中,Sal-Rot的粪便颗粒、总距离、总自发活性在第9天恢复到对照水平,DCS- rot组在第6天恢复到对照水平,说明DCS可将MS大鼠的适应时间从9天缩短到6天。在实验2中,盐腐菌在离开晕船环境14天后仍不能保持适应状态。从17 d开始,粪便中DCS-Rot颗粒显著增加,总距离和总自发活性显著降低。说明DCS可将MS大鼠的适应性维持时间从14天延长至17天。结论:腹腔注射0.5 mg/kg DCS可缩短SD大鼠MS适应过程,延长适应维持时间。
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来源期刊
Pharmacology
Pharmacology 医学-药学
CiteScore
5.60
自引率
0.00%
发文量
52
审稿时长
6-12 weeks
期刊介绍: ''Pharmacology'' is an international forum to present and discuss current perspectives in drug research. The journal communicates research in basic and clinical pharmacology and related fields. It covers biochemical pharmacology, molecular pharmacology, immunopharmacology, drug metabolism, pharmacogenetics, analytical toxicology, neuropsychopharmacology, pharmacokinetics and clinical pharmacology. In addition to original papers and short communications of investigative findings and pharmacological profiles the journal contains reviews, comments and perspective notes; research communications of novel therapeutic agents are encouraged.
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