首页> 外文期刊>Neuroscience: An International Journal under the Editorial Direction of IBRO >PROBIOTICS TREATMENT IMPROVES DIABETES-INDUCED IMPAIRMENT OF SYNAPTIC ACTIVITY AND COGNITIVE FUNCTION: BEHAVIORAL AND ELECTROPHYSIOLOGICAL PROOFS FOR MICROBIOME-GUT-BRAIN AXIS
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PROBIOTICS TREATMENT IMPROVES DIABETES-INDUCED IMPAIRMENT OF SYNAPTIC ACTIVITY AND COGNITIVE FUNCTION: BEHAVIORAL AND ELECTROPHYSIOLOGICAL PROOFS FOR MICROBIOME-GUT-BRAIN AXIS

机译:益生菌治疗可改善糖尿病引起的突触活性和认知功能的损害:微生物-肠-脑轴的行为和电生理学变化

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Diabetes mellitus-induced metabolic disturbances underlie the action of many systems including some higher functions of the brain such as learning and memory. Plenty of evidence supports the effects of probiotics on the function of many systems including the nervous system. Here we report the effect of probiotics treatment on the behavioral and electrophysiological aspects of learning and memory disorders. Diabetic rats were made through intraperitoneal injection of streptozocin. The control and diabetic rats were fed with either normal regimen (control rats recieving normal regimen (CO) and diabetics rats receiving normal regimen (DC), respectively) or normal regimen plus probiotic supplementation for 2 months (control rats receiving probiotic supplementation (CP) and diabetics rats recieving probiotic supplementation (DP), respectively). The animals were first introduced to spatial learning task in the Morris water maze. Then, in electrophysiological experiments, stimulating the Schaffer collaterals the basic and potentiated excitatory postsynaptic potential (EPSPs) were recorded in the CA1 area of the hippocampus. Finally, the serum levels of glucose, insulin, superoxide dismutase and 8-hydroxy-2'-deoxyguanosine (8-OHdG) were measured. We found that probiotics administration considerably improved the impaired spatial memory in the diabetic animals. The probiotics supplementation in the diabetic rats recovered the declined basic synaptic transmission and further restored the hippocampal long-term potentiation (LTP). While the probiotics administration enhanced the activation of superoxide dismutase and increased the insulin level of serum it decreased both the glucose level of serum and the 8-OHdG factor. From the present results we concluded that probiotics efficiently reverse deteriorated brain functions in the levels of cognitive performances and their proposed synaptic mechanisms in diabetes mellitus. These considerations imply on the necessity of an optimal function of the microbiome-gut-brain axis in the behavioral as well as electrophysiological aspects of brain action.
机译:糖尿病引起的代谢紊乱是许多系统(包括大脑的某些较高功能,如学习和记忆)的作用的基础。大量证据支持益生菌对包括神经系统在内的许多系统功能的影响。在这里,我们报告益生菌治疗对学习和记忆障碍的行为和电生理方面的影响。通过腹膜内注射链佐星制备糖尿病大鼠。对照组和糖尿病大鼠饲喂正常方案(分别接受正常方案(CO)的对照大鼠和接受正常方案(DC)的糖尿病大鼠)或正常方案加益生菌补充剂两个月(接受补充益生菌(CP)的对照大鼠)和糖尿病大鼠分别接受益生菌补充剂(DP)。首先在莫里斯水迷宫中将动物引入空间学习任务。然后,在电生理实验中,刺激Schaffer侧支,在海马CA1区记录了基本的和增强的兴奋性突触后电位(EPSP)。最后,测量血清葡萄糖,胰岛素,超氧化物歧化酶和8-羟基-2'-脱氧鸟苷(8-OHdG)的水平。我们发现,益生菌的施用大大改善了糖尿病动物的空间记忆受损。糖尿病大鼠中补充益生菌可恢复基本突触传递的下降,并进一步恢复海马的长期增强作用。虽然施用益生菌可以增强超氧化物歧化酶的激活并增加血清胰岛素水平,但同时降低了血清葡萄糖水平和8-OHdG因子。根据目前的结果,我们得出结论,益生菌有效地逆转了糖尿病患者认知功能水平及其拟议的突触机制中退化的脑功能。这些考虑暗示了在大脑动作的行为以及电生理方面,微生物组-肠-脑轴的最佳功能的必要性。

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