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从过氧化氢诱导的氧化应激中保护间充质基质细胞的提取物。

Extracts from Protect Mesenchymal Stromal Cells from Oxidative Stress Induced by Hydrogen Peroxide.

作者信息

Savvidou Maria G, Georgiopoulou Ioulia, Antoniou Nasia, Tzima Soultana, Kontou Maria, Louli Vasiliki, Fatouros Chronis, Magoulas Kostis, Kolisis Fragiskos N

机构信息

Biotechnology Laboratory, School of Chemical Engineering, National Technical University of Athens, Iroon Polytechniou Str., Zografou Campus, 15780 Athens, Greece.

Laboratory of Thermodynamics and Transport Phenomena, School of Chemical Engineering, National Technical University of Athens, 9 Iroon Polytechniou Str., Zografou Campus, 15780 Athens, Greece.

出版信息

Plants (Basel). 2023 Jan 12;12(2):361. doi: 10.3390/plants12020361.

Abstract

Microalgae as unicellular eukaryotic organisms demonstrate several advantages for biotechnological and biological applications. Natural derived microalgae products demand has increased in food, cosmetic and nutraceutical applications lately. The natural antioxidants have been used for attenuation of mitochondrial cell damage caused by oxidative stress. This study evaluates the in vitro protective effect of bioactive extracts against oxidative stress in human mesenchymal stromal/stem cells (MSCs). The classical solid-liquid and the supercritical extraction, using biomass of commercially available and laboratory cultivated , are employed. Oxidative stress induced by 300 μM HO reduces cell viability of MSCs. The addition of extracts, with increased protein content compared to carbohydrates, to HO treated MSCs counteracted the oxidative stress, reducing reactive oxygen species levels without affecting MSC proliferation. The supercritical extraction was the most efficient extraction method for carotenoids resulting in enhanced antioxidant activity. Pre-treatment of MSCs with extracts mitigates the oxidative damage ensued by HO Initial proteomic analysis of secretome from licensed (TNFα-activated) MSCs treated with algal extracts reveals a signature of differentially regulated proteins that fall into clinically relevant pathways such as inflammatory signaling. The enhanced antioxidative and possibly anti-inflammatory capacity could be explored in the context of future cell therapies.

摘要

微藻作为单细胞真核生物,在生物技术和生物学应用中展现出诸多优势。近来,天然来源的微藻产品在食品、化妆品和营养保健品应用中的需求有所增加。天然抗氧化剂已被用于减轻氧化应激引起的线粒体细胞损伤。本研究评估了生物活性提取物对人间充质基质/干细胞(MSCs)氧化应激的体外保护作用。采用了经典的固液萃取法以及超临界萃取法,萃取原料为市售和实验室培养的生物量。300μM过氧化氢诱导的氧化应激降低了MSCs的细胞活力。向经过氧化氢处理的MSCs中添加蛋白质含量高于碳水化合物的提取物,可抵消氧化应激,降低活性氧水平,且不影响MSCs的增殖。超临界萃取法是提取类胡萝卜素最有效的方法,可增强抗氧化活性。用提取物预处理MSCs可减轻过氧化氢引发的氧化损伤。对经藻类提取物处理的许可(肿瘤坏死因子α激活)MSCs的分泌蛋白组进行初步蛋白质组学分析,揭示了一组差异调节蛋白的特征,这些蛋白涉及炎症信号传导等临床相关途径。在未来的细胞治疗中,可以探索增强的抗氧化和可能的抗炎能力。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ce6b/9866266/c9cd3b09c401/plants-12-00361-g0A1.jpg

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