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西兰花水提取物水热法制备的绿色碳点:毒性降低、自由基清除能力增强及抗炎性能提升

Hydrothermally Derived Green Carbon Dots from Broccoli Water Extracts: Decreased Toxicity, Enhanced Free-Radical Scavenging, and Anti-Inflammatory Performance.

作者信息

Deng Wen-Wen, Zang Chuan-Ru, Li Qiu-Chen, Sun Bo, Mei Xue-Ping, Bai Lu, Shang Xin-Miao, Deng Ying, Xiao Ya-Qian, Ghiladi Reza A, Lorimer George H, Zhang Xue-Ji, Wang Jun

机构信息

Autism & Depression Diagnosis and Intervention Institute, National 111 Center for Cellular Regulation and Molecular Pharmaceutics, Hubei University of Technology, Wuhan 430068, Hubei, China.

Department of Chemistry, North Carolina State University, Raleigh, North Carolina 27695, United States.

出版信息

ACS Biomater Sci Eng. 2023 Mar 13;9(3):1307-1319. doi: 10.1021/acsbiomaterials.2c01537. Epub 2023 Feb 6.

Abstract

Biomass carbon dots (CDs) derived from natural plants possess the advantages of low cost, photostability, and excellent biocompatibility, with potential applications in chemical sensing, bioimaging, and nanomedicine. However, the development of biomass CDs with excellent antioxidant activity and good biocompatibility is still a challenge. Herein, we propose a hypothesis for enhancing the antioxidant capacity of biomass CDs based on precursor optimization, extraction solvent, and other conditions with broccoli as the biomass. Compared to broccoli water extracts, broccoli powders, and broccoli organic solvent extracts, CDs derived from broccoli water extracts (BWE-CDs) have outstanding antioxidant properties due to the abundant C═C, carbonyl, and amino groups on their surface. After optimization of the preparation condition, the obtained BWE-CDs exhibit excellent free-radical scavenging activity with an EC of 68.2 μg/mL for DPPH and 22.4 μg/mL for ABTS. Cytotoxicity and zebrafish embryotoxicity results indicated that BWE-CDs have lower cytotoxicity and better biocompatibility than that of CDs derived from organic solvents. In addition, BWE-CDs effectively scavenged reactive oxygen species (ROS) in A549 cells, 293T cells, and zebrafish, as well as eliminating inflammation in LPS-stimulated zebrafish. Mechanistic studies showed that the anti-inflammatory effect of BWE-CDs was dependent on the direct reaction of CDs with free radicals, the regulation of NO levels, and the upregulation of the expression of SOD and GPX-4. This work indicates that the antioxidant activity of CDs could be enhanced by using solvent extracts of biomass as precursors, and the obtained BWE-CDs exhibit characteristics of greenness, low toxicity, and excellent antioxidant and anti-inflammatory activities, which suggests the potential promising application of BWE-CDs as an antioxidant nanomedicine for inflammatory therapy.

摘要

源自天然植物的生物质碳点(CDs)具有成本低、光稳定性好和生物相容性优异等优点,在化学传感、生物成像和纳米医学等领域具有潜在应用价值。然而,开发具有优异抗氧化活性和良好生物相容性的生物质碳点仍然是一项挑战。在此,我们提出一个基于前体优化、提取溶剂及其他条件,以西兰花作为生物质来增强生物质碳点抗氧化能力的假设。与西兰花水提取物、西兰花粉末和西兰花有机溶剂提取物相比,由西兰花水提取物制备的碳点(BWE-CDs)因其表面丰富的C═C、羰基和氨基而具有出色的抗氧化性能。优化制备条件后,所得的BWE-CDs表现出优异的自由基清除活性,对DPPH的半数有效浓度(EC)为68.2 μg/mL,对ABTS的EC为22.4 μg/mL。细胞毒性和斑马鱼胚胎毒性结果表明,BWE-CDs比有机溶剂衍生的碳点具有更低的细胞毒性和更好的生物相容性。此外,BWE-CDs能有效清除A549细胞、293T细胞和斑马鱼中的活性氧(ROS),并消除脂多糖刺激的斑马鱼体内的炎症。机制研究表明,BWE-CDs的抗炎作用依赖于碳点与自由基的直接反应、对一氧化氮(NO)水平的调节以及超氧化物歧化酶(SOD)和谷胱甘肽过氧化物酶4(GPX-4)表达的上调。这项工作表明,以生物质的溶剂提取物作为前体可以增强碳点的抗氧化活性,所得的BWE-CDs具有绿色、低毒以及优异的抗氧化和抗炎活性等特点,这表明BWE-CDs作为用于炎症治疗的抗氧化纳米药物具有潜在的应用前景。

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