C60fullerene improves the contractile activity of the injured ratmuscle gastrocnemius.

IF 2.9 4区 材料科学 Q3 MATERIALS SCIENCE, MULTIDISCIPLINARY Nanotechnology Pub Date : 2025-01-27 DOI:10.1088/1361-6528/ada29a
Yuriy Prylutskyy, Dmytro Nozdrenko, Olexandr Motuziuk, Svitlana Prylutska, Natalia Nurishchenko, Daria Franskevych, Vasil Soroca, Vsevolod Cherepanov, Ihor Kalinin, Olha Korzhyk, Uwe Ritter
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Abstract

The powerful antioxidant properties of C60fullerenes 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 C60fullerenes (daily oral dose 1 mg kg-1) on the process of restoration of contractile activity of skeletal muscle of rats (muscle gastrocnemius) 15 d after the initiation of open trauma of different severity was studied for the first time. The structural organization of C60fullerene nanoparticles in aqueous solution was analyzed by dynamic light scattering and atomic force microscopy techniques. Such biomechanical parameters ofmuscle gastrocnemiuscontraction 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 C60fullerenes statistically significantly improves biomechanical parameters of contraction of injuredmuscle gastrocnemiusat 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 C60fullerenes as potential therapeutic nanoagents capable of correcting pathological states of the muscular system during the physiological repair of open injuries.

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C60富勒烯可改善大鼠腓肠肌损伤后的收缩活性。
C60富勒烯具有强大的抗氧化性能,已广泛应用于生物医学纳米技术。由于自由基在氧化应激过程中的负面影响,需要抗氧化剂来保护受伤的肌肉。本研究首次研究了水溶性C60富勒烯(每日口服剂量1mg /kg)对不同严重程度开放性创伤开始15天后大鼠(腓肠肌)骨骼肌收缩活动恢复过程的影响。采用动态光散射和原子力显微镜技术分析了C60富勒烯纳米颗粒在水溶液中的结构组织。分析腓肠肌收缩的生物力学参数,如综合肌力、最大最小力的产生水平、达到肌肉力反应水平50%的时间间隔。研究了大鼠血液中c反应蛋白、肌酐、乳酸浓度等生化指标,以及实验动物血液和肌肉组织中亲、抗氧化平衡指标(超氧化物歧化酶、过氧化氢酶活性、还原性谷胱甘肽浓度)。结果发现,应用水溶性C60富勒烯可显著改善30-45±3%水平下损伤腓肠肌收缩的生物力学参数,与开放损伤组相比,大鼠血液和肌肉组织生化指标分别在35-50±3%和20-37±3%水平下恢复正常,具有统计学意义。这些发现开启了使用C60富勒烯作为潜在治疗纳米剂的可能性,它能够纠正开放性损伤生理修复过程中肌肉系统的病理状态。
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来源期刊
Nanotechnology
Nanotechnology 工程技术-材料科学:综合
CiteScore
7.10
自引率
5.70%
发文量
820
审稿时长
2.5 months
期刊介绍: The journal aims to publish papers at the forefront of nanoscale science and technology and especially those of an interdisciplinary nature. Here, nanotechnology is taken to include the ability to individually address, control, and modify structures, materials and devices with nanometre precision, and the synthesis of such structures into systems of micro- and macroscopic dimensions such as MEMS based devices. It encompasses the understanding of the fundamental physics, chemistry, biology and technology of nanometre-scale objects and how such objects can be used in the areas of computation, sensors, nanostructured materials and nano-biotechnology.
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