To evaluate the effect of a new pyrimidine derivative on the change of mitochondrial function in experimental chronic traumatic encephalopathy. The study was performed on male mice of the BALB/c line (acute toxicity was assessed) and male rats of the Wistar line, which were modeled chronic traumatic encephalopathy by the method of free fall of the load (weight 150 g from a 50 cm height). The injury to rats was reproduced once a day for 7 days. Further, cognitive functions, changes in sensorimotor deficiency, cerebral blood flow, neuron-specific enolase(NSE), S100β, glial fibrillary acidic protein (GFAP) (in blood serum) and β-amyloid, adenosine triphosphate (ATP) (in brain tissue supernatant) were evaluated. Mitochondrial respiration was also measured. Choline alfoscerate (100 mg/kg) was used as a reference drug. The study found that the use of a new pyrimidine derivative contributed to the preservation of the mitochondrial respirometric function and cognitive functions in rats. In addition, against the administration of test-object marked increase in the concentration of ATP, the velocity of cerebral blood flow was 4.2 times ( 0.05) and 35.6% ( 0.05), respectively, as well as reduced concentration and GFAP,NSE, S100β, β-amyloid and sensorimotor deficit at 2.7 ( 0.05) times; 2 times ( 0.05); 2.4 times ( 0.05); of 30.4% ( 0.05 and 46.5% ( 0.05), respectively. The LD (per os) for the test-object was 4973.56 ± 573.72 mg/kg. Based on the obtained data, high therapeutic efficacy and low systemic toxicity of the application are assumed 4-{2-[2-(3,4-dimethoxyphenyl)-vinyl]-6-ethyl-4-oxo-5-phenyl-4H-pyrimidine-1-Il}benzsulfamide in chronic traumatic encephalopathy.

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http://www.ncbi.nlm.nih.gov/pmc/articles/PMC6681389PMC
http://dx.doi.org/10.3390/medicina55070386DOI Listing

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