Параметри
Effect of C60 Fullerene on Muscle Injury-Induced Rhabdomyolysis and Associated Acute Renal Failure
Журнал/Серія :
International Journal of Nanomedicine
Том :
19
ISSN :
1178-2013
Початкова сторінка :
8043
Кінцева сторінка :
8058
Дата випуску :
серпень 2024 р.
Автор(и) :
Olexandr Omelchuk
Svitlana Prylutska
Olexandr Motuziuk
Vasil Soroсa
Viktoria Stetska
Uwe Ritter
Jacek Piosik
Анотація :
Introduction: Rhabdomyolysis, as an acute stage of myopathy, causes kidney damage. It is known that this pathology is caused by the accumulation of muscle breakdown products and is associated with oxidative stress. Therefore, the present study evaluated the effect of intraperitoneal administration (dose 1 mg/kg) of water-soluble C60 fullerenes, as powerful antioxidants, on the development of rat kidney damage due to rhabdomyolysis caused by mechanical trauma of the muscle soleus of different severity (crush syndrome lasting 1 min under a pressure of 2.5, 3.5, and 4.5 kg/cm2, respectively).
Methods: Using tensometry, biochemical and histopathological analyses, the biomechanical parameters of muscle soleus contraction (contraction force and integrated muscle power), biochemical indicators of rat blood (concentrations of creatinine, creatine phosphokinase, urea and hydrogen peroxide, catalase and superoxide dismutase activity), glomerular filtration rate and fractional sodium excretion value, as well as pathohistological and morphometric features of muscle and kidney damages in rats on days 1, 3, 6 and 9 after the initiation of the injury were studied.
Results: Positive changes in biomechanical and biochemical parameters were found during the experiment by about 27–30 ± 2%, as well as a decrease in pathohistological and morphometric features of muscle and kidney damages in rats treated with water-soluble C60 fullerenes.
Conclusion: These findings indicate the potential application of water-soluble C60 fullerenes in the treatment of pathological conditions of the muscular system caused by rhabdomyolysis and the associated oxidative stress.
Methods: Using tensometry, biochemical and histopathological analyses, the biomechanical parameters of muscle soleus contraction (contraction force and integrated muscle power), biochemical indicators of rat blood (concentrations of creatinine, creatine phosphokinase, urea and hydrogen peroxide, catalase and superoxide dismutase activity), glomerular filtration rate and fractional sodium excretion value, as well as pathohistological and morphometric features of muscle and kidney damages in rats on days 1, 3, 6 and 9 after the initiation of the injury were studied.
Results: Positive changes in biomechanical and biochemical parameters were found during the experiment by about 27–30 ± 2%, as well as a decrease in pathohistological and morphometric features of muscle and kidney damages in rats treated with water-soluble C60 fullerenes.
Conclusion: These findings indicate the potential application of water-soluble C60 fullerenes in the treatment of pathological conditions of the muscular system caused by rhabdomyolysis and the associated oxidative stress.
Бібліографічний опис :
Prylutskyy Y., Nozdrenko D., Omelchuk O., Prylutska S., Motuziuk O., Soroсa V., Vareniuk I., Stetska V., Bogutska K., Ritter U., Piosik J. Effect of C60 Fullerene on Muscle Injury-Induced Rhabdomyolysis and Associated Acute Renal Failure (2024) International Journal of Nanomedicine, 19, pp. 8043 - 8058, DOI: 10.2147/IJN.S468013
Проєкт(и) :
2022.01/0004
Фінансування :
НФДУ
Файл(и) :
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Формат
Adobe PDF
Розмір :
13.68 MB
Контрольна сума:
(MD5):1394a49e52973158419b2d6571bf4696
Ця робота розповсюджується на умовах ліцензії Creative Commons CC BY-NC-ND