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Effect of a new aminoethanol and dicarboxylic acid derivative on physical performance in aerobic training loads

Abstract

The influence of the new aminoethanol and dicarboxylic acids derivative (FDES) on endurance, swimming speed, morphological and biochemical changes in the animals during aerobic training loads was evaluated in comparison to the synthetic adaptogen with strong actoprotective action - ethylthiobenzimidalozol hydrochloride. As a result, it was found that an increase in physical performance in the application of FDES is comparable to that in the application of ethylthiobenzimidalozol hydrochloride. Animals endurance, estimated by the number of passed pools and an increase in the total swimming time, in group, which received FDES, increased by 1.92 and 3.14 times, respectively. Changes in swimming speed were not noticed in both groups. The application of FDES during training process contributes to the development of compensatory hypertrophy of myocardium.

About the Authors

S. V. Radko
ФГБОУ ВО «Санкт-Петербургская государственная химико-фармацевтическая академия» Минздрава России
Russian Federation


S. V. Okovitiy
ФГБОУ ВО «Санкт-Петербургская государственная химико-фармацевтическая академия» Минздрава России
Russian Federation


E. O. Gorshkova
ФГБОУ ВО «Санкт-Петербургская государственная химико-фармацевтическая академия» Минздрава России
Russian Federation


M. M. Lyubishin
ФГБОУ ВО «Санкт-Петербургская государственная химико-фармацевтическая академия» Минздрава России
Russian Federation


Yu. D. Bolotina
ФГБОУ ВО «Санкт-Петербургская государственная химико-фармацевтическая академия» Минздрава России
Russian Federation


I. A. Berzin
ФГБОУ ВО «Санкт-Петербургская государственная химико-фармацевтическая академия» Минздрава России
Russian Federation


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41. Tonack S., Tang C., Offermanns S. Endogenous metabolites as ligands for G protein-coupled receptors modulating risk factors for metabolic and cardiovascular disease. Heart and Circulatory Physiology - Am. J. of Physiology. 2012. V. 304. No. 4. Pp. 501-513.

42. Yang L., Yu D., Fan H.H., Feng Y., Hu L., Zhang W-Y., Zhou K., Mo X-M. Triggering the succinate receptor GPR91 enhances pressure overload-induced right ventricular hypertrophy. Int. J. of Clinical and Experimental Pathology. 2014. V. 9. No. 7. Pp. 5414-28.


Review

For citations:


Radko S.V., Okovitiy S.V., Gorshkova E.O., Lyubishin M.M., Bolotina Yu.D., Berzin I.A. Effect of a new aminoethanol and dicarboxylic acid derivative on physical performance in aerobic training loads. Journal Biomed. 2018;(3):101-109. (In Russ.)

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