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抗氧化稀土正钒酸纳米粒子对 Wistar 大鼠的抗衰老作用。

Anti-aging Effects of Antioxidant Rare-Earth Orthovanadate Nanoparticles in Wistar Rats.

机构信息

Karazin Kharkiv National University, 4 Svobody Sq., Kharkiv, 61022, Ukraine.

Institute for Scintillation Materials, National Academy of Sciences of Ukraine, 60 Nauky Ave, Kharkiv, 61072, Ukraine.

出版信息

Biol Trace Elem Res. 2021 Nov;199(11):4183-4192. doi: 10.1007/s12011-020-02531-y. Epub 2021 Jan 6.

Abstract

Biomedical application of rare-earth-based nanoparticles attracts much attention due to their unique optical and redox properties and quite low toxicity. Earlier, we found age-related beneficial effects of rare-earth-based orthovanadate nanoparticles (OV NPs) on the prooxidant/antioxidant balance in liver and blood of Wistar rats, as reported by Nikitchenko et al. (Biol Trace Elem Res (2020). https://doi.org/10.1007/s12011-020-02196-7 ). However, the question remained unclear whether OV NPs' redox activity directly defines the protection ability. In the present work, antiradical, antioxidant, and membrane-protective properties of GdYVO/Eu NPs (1-2 nm), GdVO/Eu NPs (8 × 25 nm), LaVO/Eu (57 × 8 nm) were assayed in a comparative manner in various model systems. All OV NPs demonstrated the protective properties, but extra-small GdYVO/Eu NPs revealed the weakest antioxidant efficacy. In isolated mitochondria, OV NPs lowered (most evidently-extra-small NPs) respiration and oxidative phosphorylation, as well as ATP concentration. We conclude that not only the direct antioxidant effect but also slight suppression of bioenergetic processes by the OV NPs as well as the triggering of GSH-dependent antioxidant system may represent the principal mechanisms of their beneficial influences in an aged organism. This statement is consistent with improvement of the oxidative balance of 33-month-old rats due to prolonged administration of GdVO /Eu NPs (for 11 months) accompanied by retention of the GSH signaling of the old rats at the level of 12 months mature animals. Consequently, an increase of antioxidant defense upon prolonged usage of OV NPs will lead to oxidative balance stabilization increasing the health span and survival of an organism.

摘要

基于稀土的纳米粒子由于其独特的光学和氧化还原性质以及相当低的毒性,在生物医学领域的应用引起了广泛关注。早些时候,我们发现基于稀土的正钒酸盐纳米粒子(OV NPs)对 Wistar 大鼠肝脏和血液中促氧化剂/抗氧化剂平衡具有与年龄相关的有益作用,这是由 Nikitchenko 等人报道的(Biol Trace Elem Res(2020)。https://doi.org/10.1007/s12011-020-02196-7)。然而,OV NPs 的氧化还原活性是否直接决定其保护能力仍不清楚。在本工作中,我们以比较的方式在各种模型系统中测定了 GdYVO/Eu NPs(1-2nm)、GdVO/Eu NPs(8×25nm)和 LaVO/Eu(57×8nm)的抗氧化、抗自由基和膜保护特性。所有 OV NPs 均表现出保护特性,但超小 GdYVO/Eu NPs 的抗氧化效果最弱。在分离的线粒体中,OV NPs 降低了呼吸和氧化磷酸化以及 ATP 浓度(最明显的是超小 NPs)。我们得出结论,不仅 OV NPs 的直接抗氧化作用,而且对生物能过程的轻微抑制以及 GSH 依赖性抗氧化系统的触发,可能代表了它们在衰老生物体中有益影响的主要机制。这一说法与由于长期(11 个月)给予 GdVO/Eu NPs 而导致 33 个月大的大鼠氧化平衡得到改善的情况一致,同时保留了老年大鼠的 GSH 信号,使其达到 12 个月成熟动物的水平。因此,OV NPs 的长期使用会增加抗氧化防御能力,从而稳定氧化平衡,延长生物体的健康寿命和生存时间。

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