Slc6a4, Tph2, Htr1b, Htr2a genes expression in the mouse spinal cord after microgravity exposure simulation on earth

M. Kuznetsov, Кузнецов Максим Сергеевич, A. N. Lisyukov, Лисюков Артур Николаевич, M. Davleeva, Давлеева Мария Александровна, A. Izmailov, Измайлов Андрей Александрович
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Abstract

Aim. To determine the level of gene expression of the serotonergic neurotransmission system (Slc6a4, Tph2, Htr1b, Htr2a) in the cervical and lumbar enlargement of the spinal cord for mice after 30-day microgravity exposure simulation by using the antiorthostatic unloading model by Morey-Holton et al. and a subsequent 7-dayrecovery period. Methods. The experimental animals were divided into three groups: “Unloading” group with mice undergoes hindlimb-unloading procedure for 30 days (n=5); “Recovery” group with mice undergoes hindlimb-unloading procedure for 30 days, followed by readaptation within 7 days (n=5); “Control” group with mice kept at standard vivarium conditions (n=5). The expression level of genes encoding synaptic proteins in the central nervous system was estimated by a real-time polymerase chain reaction. Results. There were no statistically significant differences between the studied groups regarding the Tph2, Htr1b, and Htr2a expressions in the cervical and lumbar enlargement of the spinal cord. Compared to the “Control” group, a statistically significant increase (6.3 times) in the level of Slc6a4 expression in the lumbar spinal cord was revealed after microgravity exposure simulation (“Unloading” group), followed by a 3-fold decrease during the readaptation period (“Recovery” group ). Conclusion. The expression level of the Slc6a4 gene, which encodes carrier protein involved in the function of serotonergic synapses, may indicate the potential involvement of this neurotransmitter system in the pathogenesis of movement disorders after microgravity exposure simulation on earth.
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模拟地球微重力暴露后小鼠脊髓中Slc6a4、Tph2、Htr1b、Htr2a基因的表达
的目标。通过Morey-Holton等人的反直立卸载模型和随后的7天恢复期模拟30天微重力暴露后,测定小鼠颈腰椎增大脊髓中5 -羟色胺能神经传递系统(Slc6a4, Tph2, Htr1b, Htr2a)基因表达水平。方法。实验动物分为三组:“卸载”组小鼠后肢卸载30 d (n=5);“恢复”组小鼠卸后肢30 d, 7 d内重新适应(n=5);对照组(n=5):按标准饲养条件饲养。通过实时聚合酶链反应测定中枢神经系统突触蛋白编码基因的表达水平。结果。Tph2、Htr1b、Htr2a在脊髓颈、腰椎肿大组的表达差异无统计学意义。与“对照组”相比,微重力暴露模拟后(“卸载”组)腰椎脊髓Slc6a4表达水平有统计学意义的升高(6.3倍),再适应期(“恢复”组)Slc6a4表达水平下降3倍。结论。Slc6a4基因编码参与血清素能突触功能的载体蛋白,其表达水平可能表明该神经递质系统可能参与模拟地球微重力暴露后运动障碍的发病机制。
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