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解析壳聚糖-硒纳米粒子对癌细胞的细胞毒性机制:来自靶向和非靶向代谢组学的见解

Unraveling the Mechanisms of Ch-SeNP Cytotoxicity against Cancer Cells: Insights from Targeted and Untargeted Metabolomics.

作者信息

Estevez Hector, Garcia-Calvo Estefania, Mena Maria L, Alvarez-Fernandez Garcia Roberto, Luque-Garcia Jose L

机构信息

Department of Analytical Chemistry, Faculty of Chemical Sciences, Complutense University of Madrid, 28040 Madrid, Spain.

出版信息

Nanomaterials (Basel). 2023 Jul 29;13(15):2204. doi: 10.3390/nano13152204.

Abstract

Although chitosan-stabilized selenium nanoparticles (Ch-SeNPs) have emerged as a promising chemical form of selenium for anticancer purposes, gathering more profound knowledge related to molecular dysfunctions contributes significantly to the promotion of their evolution as a chemotherapeutic drug. In this sense, metabolites are the end products in the flow of gene expression and, thus, the most sensitive to changes in the physiological state of a biological system. Therefore, metabolomics provides a functional readout of the biochemical activity and cell state. In the present study, we evaluated alterations in the metabolomes of HepG2 cells after the exposure to Ch-SeNPs to elucidate the biomolecular mechanisms involved in their therapeutic effect. A targeted metabolomic approach was conducted to evaluate the levels of four of the main energy-related metabolites (adenosine triphosphate (ATP); adenosine diphosphate (ADP); nicotinamide adenine dinucleotide (NAD); and 1,4-dihydronicotinamide adenine dinucleotide (NADH)), revealing alterations as a result of exposure to Ch-SeNPs related to a shortage in the energy supply system in the cell. In addition, an untargeted metabolomic experiment was performed, which allowed for the study of alterations in the global metabolic profile as a consequence of Ch-SeNP exposure. The results indicate that the TCA cycle and glycolytic pathways were impaired, while alternative pathways such as glutaminolysis and cysteine metabolism were upregulated. Additionally, increased fructose levels suggested the induction of hypoxia-like conditions. These findings highlight the potential of Ch-SeNPs to disrupt cancer cell metabolism and provide insights into the mechanisms underlying their antitumor effects.

摘要

尽管壳聚糖稳定的硒纳米颗粒(Ch-SeNPs)已成为一种有前景的用于抗癌的硒化学形式,但深入了解与其分子功能障碍相关的知识对于推动其作为化疗药物的发展具有重要意义。从这个意义上讲,代谢物是基因表达流程中的最终产物,因此对生物系统生理状态的变化最为敏感。所以,代谢组学提供了生化活性和细胞状态的功能读数。在本研究中,我们评估了HepG2细胞暴露于Ch-SeNPs后的代谢组变化,以阐明其治疗效果所涉及的生物分子机制。采用靶向代谢组学方法评估四种主要能量相关代谢物(三磷酸腺苷(ATP);二磷酸腺苷(ADP);烟酰胺腺嘌呤二核苷酸(NAD);和1,4-二氢烟酰胺腺嘌呤二核苷酸(NADH))的水平,揭示了由于暴露于Ch-SeNPs导致的与细胞能量供应系统短缺相关的变化。此外,进行了非靶向代谢组学实验,该实验允许研究由于Ch-SeNP暴露导致的整体代谢谱变化。结果表明,三羧酸循环和糖酵解途径受损,而谷氨酰胺分解和半胱氨酸代谢等替代途径上调。此外,果糖水平升高表明诱导了类似缺氧的状况。这些发现突出了Ch-SeNPs破坏癌细胞代谢的潜力,并为其抗肿瘤作用的潜在机制提供了见解。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/02a1/10420838/5214ac9edd38/nanomaterials-13-02204-g001.jpg

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