Therapeutic Hypothermia and Cell Therapy Change Cognitive Functions of Spontaneously Hypertensive Rats

O. Kudokotseva, I. Lomakin, V. Babiichuk, L. Babiichuk, Igor Kandybko
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Abstract

The paper presents the research results of spatial memory and learning processes for the comprehensive analysis of cognitive function of spontaneously hypertensive rats under the influence of independent and combined use of rhythmic craniocerebral hypothermia (RCH) and the introduction of cryopreserved cord blood nucleated cells (cCBNCs). It was shown that SHR rats have a cognitive deficit, which is manifested in reduced speed of the learning process and memory formation in the Morris water maze (MWM). The administration of therapeutic RCH and/or cell therapy (cCBNCs introduction) 30 days before training in the MWM improved the cognitive functions of SHR rats: the target search strategy changed, and the time to search for a platform hidden under water was significantly reduced. These changes indicated the acceleration of the processes of information perception, learning, and the formation of spatial memory. The preservation and reproduction of long-term memory and as a result of the formed strategy of direct finding of the target in the MWM was most influenced by certain therapy with the samples of cryopreserved cord blood in combination with the procedure of therapeutic hypothermia. It was established that this approach exerted a neuroprotective effect, contributing to the partial elimination of cognitive deficits in SHR by improving spatial memory and accelerating learning processes.
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治疗性低温和细胞疗法改变自发性高血压大鼠的认知功能
本文介绍了空间记忆和学习过程的研究成果,以全面分析自发性高血压大鼠在独立和联合使用节律性颅脑低温(RCH)和引入冷冻保存的脐带血有核细胞(cCBNCs)影响下的认知功能。研究表明,SHR 大鼠存在认知缺陷,表现为莫里斯水迷宫(MWM)学习过程和记忆形成的速度降低。在MWM训练前30天服用治疗性RCH和/或细胞疗法(引入cCBNCs)可改善SHR大鼠的认知功能:目标搜索策略发生改变,搜索隐藏在水下的平台的时间显著缩短。这些变化表明,信息感知、学习和空间记忆的形成过程加快了。使用冷冻保存的脐带血样本并结合治疗性低温程序进行的某些治疗对长期记忆的保存和再现影响最大,这也是在马氏体膜中直接寻找目标的策略形成的结果。研究证实,这种方法具有神经保护作用,通过改善空间记忆和加速学习过程,有助于部分消除SHR的认知缺陷。
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来源期刊
Problems of Cryobiology and Cryomedicine
Problems of Cryobiology and Cryomedicine Medicine-Medicine (miscellaneous)
CiteScore
0.60
自引率
0.00%
发文量
9
期刊介绍: The Journal publishes the reviews and original papers on cryobiological and cryomedical research, in particular the elucidation of mechanisms of injuries occurring in biological objects and caused by the influence of low and ultra low temperatures; natural resistance of biologicals to cold and their recovery post effect; the development of effective methods of cryoprotection and technology of storage of biological resources under hypothermic and ultra low temperatures, application of hypothermia, cryotherapy and cryopreserved biologicals for treating various pathologies; cell and tissue based therapies and other issues of low-temperature biology and medicine, as well as development of devices and equipment for low temperature biology and medicine. The journal covers all topics related to low temperature biology, medicine and engineering. These include but are not limited to: low temperature storage of biologicals (human, animal or plant cells, tissues, and organs), including preparation for storage, thawing/warming, cell and tissue culturing etc. response of biologicals to low temperature; cold adaptation of animals and plants; utilisation of low temperature in medicine; experimental and clinical transplantation, cell and tissue based therapies; developing of cryobiological and cryomedical devices; organisation and functioning of low temperature banks etc.
期刊最新文献
Quarter-Century Experience in Cryopreservation of Human Oocytes by Vitrifi cation. What Has Been Achieved and What is Next? Therapeutic Hypothermia and Cell Therapy Change Cognitive Functions of Spontaneously Hypertensive Rats Can Cold-Tolerant Hybrids Be Created by Crossing Cold-Tolerant Parental Lines? Brain Cortex Morphology in Rats After Cold Exposures Cryobiology and Cryomedicine Techniques’ Boosting in Wartime
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