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  4. C<sub>60</sub> fullerene improves the contractile activity of the injured rat muscle gastrocnemius
 
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Параметри

C<sub>60</sub> fullerene improves the contractile activity of the injured rat muscle gastrocnemius

Журнал/Серія :
Nanotechnology
Том :
36
ISSN :
1361-6528
Початкова сторінка :
1
Кінцева сторінка :
11
Дата випуску :
27 січня 2025 р.
Автор(и) :
Prylutskyy, Yuriy 
Taras Shevchenko National University of Kyiv
Nozdrenko, Dmytro 
Taras Shevchenko National University of Kyiv
Motuziuk, Oleksandr
Lesia Ukrainka Volyn National University, Taras Shevchenko National University of Kyiv
Prylutska Svitlana
Faculty of Plant Protection, Biotechnology and Ecology and Faculty of Veterinary Medicine, National University of Life and Environmental Science of Ukraine
Nurishchenko, Nataliya 
Taras Shevchenko National University of Kyiv
Franskevych Daria
ESC ‘Institute of Biology and Medicine’, Taras Shevchenko National University of Kyiv
Soroca Vasil
ESC ‘Institute of Biology and Medicine’, Taras Shevchenko National University of Kyiv
Cherepanov, Vsevolod
Institute of Physics, NAS of Ukraine
Kalinin Ihor
Faculty of Plant Protection, Biotechnology and Ecology and Faculty of Veterinary Medicine, National University of Life and Environmental Science of Ukraine
Korzhyk Olha
Faculty of Biology and Forestry, Lesya Ukrainka Volyn National University
Ritter, Uwe
Анотація :
The powerful antioxidant properties of C<jats:sub>60</jats:sub> fullerenes have been widely used in biomedical nanotechnology. Owing to the negative effects of free radicals in oxidative stress processes, antioxidants are required to protect injured muscles. Here, the effect of water-soluble C<jats:sub>60</jats:sub> fullerenes (daily oral dose 1 mg kg<jats:sup>−1</jats:sup>) on the process of restoration of contractile activity of skeletal muscle of rats (<jats:italic>muscle gastrocnemius</jats:italic>) 15 d after the initiation of open trauma of different severity was studied for the first time. The structural organization of C<jats:sub>60</jats:sub> fullerene nanoparticles in aqueous solution was analyzed by dynamic light scattering and atomic force microscopy techniques. Such biomechanical parameters of <jats:italic>muscle gastrocnemius</jats:italic> contraction as integrated muscle power, levels of generation of its maximum and minimum force, and time interval until reaching 50% of the level of force response of the muscle were analyzed. Such biochemical indices as concentrations of c-reactive protein, creatinine, and lactate in the rat blood, as well as indices of pro- and antioxidant balance (activities of superoxide dismutase and catalase, the concentration of reduced glutathione) in the blood and muscle tissue of experimental animals, were investigated. It was found that application of water-soluble C<jats:sub>60</jats:sub> fullerenes statistically significantly improves biomechanical parameters of contraction of injured <jats:italic>muscle gastrocnemius</jats:italic> at the level of 30–45 ± 3%, which is confirmed by normalization of biochemical indices in the blood and muscle tissue of rats at the level of 35–50 ± 3% and 20–37 ± 3%, correspondingly, relative to the open injury group. These findings open the possibility of using C<jats:sub>60</jats:sub> fullerenes as potential therapeutic nanoagents capable of correcting pathological states of the muscular system during the physiological repair of open injuries.
Цитування :
Prylutskyy, Y., Nozdrenko, D., Motuziuk, O., Prylutska, S., Nurishchenko, N., Franskevych, D., ... Ritter, U. (2024). C60 fullerene improves the contractile activity of the injured rat muscle gastrocnemius. Nanotechnology. 36. 125101 (11pp). doi:10.1088/1361-6528/ada29a
Проєкт(и) :
№2022.01/0004
Фінансування :
НФДУ
Ключові слова :

C60 fullerene

muscle gastrocnemius

open muscle injury

biomechanical paramet...

blood and muscle tiss...

dynamic light scatter...

atomic force microsco...

eKNUTSHIR URL :
https://ir.library.knu.ua/handle/15071834/5859
DOI :
10.1088/1361-6528/ada29a
Файл(и) :
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Розмір :

2.46 MB

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(MD5):d0ae18fa4f79726364a853784f62ee3f

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