Laser fragmentation of amorphous and crystalline selenium of various morphologies and assessment of their antioxidant and protection properties

A. Simakin, I. V. Baimler, Anastasia O. Dikovskaya, Dina V. Kazantseva, D. Yanykin, Valery V. Voronov, O. V. Uvarov, M. Astashev, R. M. Sarimov, Vladimir E. Ivanov, V.I. Bruskov, Valeriy A. Kozlov
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Abstract

Introduction: The process of laser-induced breakdown of amorphous and crystalline selenium nanoparticles (Se NPs) of various shapes during nanosecond laser fragmentation of aqueous colloidal solutions of nanoparticles with different concentrations has been studied.Methods: The methods of studying the characteristics of plasma and acoustic oscillations induced by optical breakdown are applied. The methods of assessing the concentration of hydrogen peroxide and hydroxyl radicals, the amount of long-lived reactive species of protein and 8-oxoguanine are applied.Results: It has been established that in the process of laser fragmentation of selenium nanoparticles at a wavelength of 532 nm, corresponding to the maximum absorption of selenium, the highest probability of breakdown, the number of plasma flashes, their luminosity and the amplitude of acoustic signals are achieved at concentrations of the order of 109 NPs/mL. It has been shown that the use of selenium nanoparticles of various shapes and structures leads to a change in the photoacoustic signal during laser-induced breakdown. When crystalline selenium nanoparticles are irradiated, the intensity of the photoacoustic response during breakdown turns out to be greater (1.5 times for flash luminosity and 3 times for acoustics) than when amorphous particles are irradiated at the same concentration. It has been shown that selenium nanoparticles exhibit significant antioxidant properties. Selenium nanoparticles effectively prevent the formation of reactive oxygen species (ROS) during water radiolysis, eliminate radiation-induced long-lived reactive species of protein, and reduce the radiation-chemical yield of a key marker of oxidative DNA damage - 8-oxoguanine.Discussion: In general, the intensity of processes occurring during laser fragmentation of amorphous and crystalline selenium nanoparticles differs significantly. The antioxidant properties are more pronounced in amorphous selenium nanoparticles compared to crystalline selenium nanoparticles.
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激光破碎不同形态的无定形硒和晶体硒并评估其抗氧化和保护特性
导言:研究了纳秒激光击碎不同浓度的纳米粒子胶体水溶液时激光诱导的各种形状的无定形和晶体硒纳米粒子(Se NPs)的击穿过程:方法:采用光学击穿诱发等离子体和声波振荡特性的研究方法。方法:采用了研究等离子体特征和光学击穿引起的声波振荡的方法;采用了评估过氧化氢和羟基自由基浓度、蛋白质长寿命反应物和 8-氧鸟嘌呤量的方法:结果:已经确定,在 532 纳米波长(硒的最大吸收波长)激光破碎硒纳米粒子的过程中,当硒纳米粒子的浓度达到 109 NPs/mL 的数量级时,击穿概率、等离子体闪烁的次数、亮度和声学信号的振幅都是最高的。研究表明,使用不同形状和结构的硒纳米粒子会导致激光诱导击穿过程中光声信号的变化。当晶体硒纳米粒子被照射时,击穿过程中的光声响应强度比相同浓度的无定形粒子被照射时要大(闪光光度是无定形粒子的 1.5 倍,声学强度是无定形粒子的 3 倍)。研究表明,纳米硒粒子具有显著的抗氧化特性。纳米硒粒子能有效防止水辐射分解过程中活性氧(ROS)的形成,消除辐射诱导的蛋白质长寿命活性物种,降低氧化 DNA 损伤的关键标志物--8-氧鸟嘌呤的辐射化学产量:总的来说,激光碎裂无定形硒纳米粒子和晶体硒纳米粒子的过程强度有很大不同。与晶体纳米硒粒子相比,无定形纳米硒粒子的抗氧化特性更为明显。
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