Carbon-Containing Nanoparticles From Grass: Green Synthesis, Optical, Spectrospopic, Oxidative Properties And Neurotropic Action In Brain Nerve Terminals

K. Paliienko, L. Kalynovska, N. Pozdnyakova, N. Krisanova, A. Tarasenko, A. Pastukhov, Ulana Afonina, O. Gnatyuk, G. Dovbeshko, T. Borisova
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Abstract

Green synthesis is very perspective to produce nano-sized materials and composites. Here, carbon-containing nanoparticles were obtained from grass (grass nanoparticles, GP) by heating in accordance with green principles. Optical and fluorescent properties of GP were characterized and molecular groups at the GP surface were analyzed using FTIR and Raman spectroscopy. Biological effects of GP were assessed using isolated rat cortex nerve terminals (synaptosomes). Generation of spontaneous and H2 O2-evoked reactive oxygen species (ROS) detected using fluorescent dye 2’,7-dichlorofluorescein was decreased by GP in nerve terminals. GP did not change the synaptosomal membrane potential in fluorimetric experiments using potential-sensitive dye rhodamine 6G. Analyzing synaptosomal transporter-mediated uptake of excitatory and inhibitory neurotransmitters, $\mathrm{L}-[^{14}\mathrm{C}$] glutamate and $[^{3}\mathrm{H}$] GABA, respectively, it was revealed that GP did not influence accumulation of $\mathrm{L}-[^{14}\mathrm{C}$] glutamate by nerve terminals, but decreased that of $[^{3}\mathrm{H}$] GABA. Therefore, carbon-containing nanoparticles with antioxidant properties were synthesized from natural resources/agricultural wastes using energy savings approach with low toxicity reagents, and low damage to the environment.
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草中含碳纳米颗粒:绿色合成、光学、光谱、氧化特性和在脑神经末梢的嗜神经作用
绿色合成是生产纳米材料和复合材料的重要途径。在这里,从草中获得含碳纳米颗粒(草纳米颗粒,GP),按照绿色原则加热。研究了GP的光学和荧光特性,并利用红外光谱和拉曼光谱分析了GP表面的分子基团。用离体大鼠皮质神经末梢(突触体)评价GP的生物学效应。荧光染料2′,7-二氯荧光素检测的自发活性氧和h2o2诱发的活性氧(ROS)的产生减少GP在神经末梢。在电位敏感染料罗丹明6G荧光实验中,GP未改变突触体膜电位。分析突触体转运体介导的兴奋性和抑制性神经递质$\ mathm {L}-[^{14}\ mathm {C}$]谷氨酸和$[^{3}\ mathm {H}$] GABA的摄取,发现GP不影响神经末梢对$\ mathm {L}-[^{14}\ mathm {C}$]谷氨酸的积累,但会降低$[^{3}\ mathm {H}$] GABA的积累。因此,以自然资源/农业废弃物为原料,采用低毒性、低环境破坏的节能方法合成了具有抗氧化性能的含碳纳米颗粒。
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