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染料木黄酮碳点在体外具有抗氧化和抗炎作用。

Genistein carbon dots exhibit antioxidant and anti-inflammatory effects in vitro.

作者信息

Jaiswal Kumar Sagar, Malka Orit, Shauloff Nitzan, Bersudsky Marina, Voronov Elena, Gupta Bhawna, Jelinek Raz

机构信息

Department of Chemistry, Ben Gurion University of the Negev, 84105 Beer Sheva, Israel; Disease Biology Laboratory, School of Biotechnology, Kalinga Institute of Industrial Technology (KIIT) Deemed to be University, 751024 Bhubaneswar, India.

Department of Chemistry, Ben Gurion University of the Negev, 84105 Beer Sheva, Israel.

出版信息

Colloids Surf B Biointerfaces. 2023 Mar;223:113173. doi: 10.1016/j.colsurfb.2023.113173. Epub 2023 Jan 25.

Abstract

Genistein, an isoflavone from soybean, has attracted attention due to its health benefits, particularly antioxidant and anti-inflammatory activities. Clinical applications of genistein, however, have been limited due to the considerable hydrophobicity and lower bioavailability of the molecule. In this study, carbon dots (C-dots) synthesized from genistein as the carbonaceous precursor exhibit antioxidant properties in test-tube and cell experiments. Anti-inflammatory activity of the genistein-C-dots was also recorded in LPS stimulated macrophages, manifested in inhibition of pro-inflammatory cytokine levels and enhancement anti-inflammatory cytokine expression. The antioxidant and anti-inflammatory effects of the genistein-C-dots, particularly in comparison to the parent genistein molecules, likely account to the display of functional genistein residues on the C-dots' surfaces, and low band gap energy facilitating electron scavenging. Importantly, the genistein-C-dots featured biocompatibility and low cytotoxicity, underlining their potential as a therapeutic vehicle against inflammatory conditions.

摘要

染料木黄酮是一种来自大豆的异黄酮,因其对健康有益,特别是具有抗氧化和抗炎活性而受到关注。然而,由于该分子具有相当大的疏水性和较低的生物利用度,染料木黄酮的临床应用受到限制。在本研究中,以染料木黄酮为碳质前体合成的碳点在试管和细胞实验中表现出抗氧化特性。在脂多糖刺激的巨噬细胞中也记录到了染料木黄酮碳点的抗炎活性,表现为抑制促炎细胞因子水平和增强抗炎细胞因子表达。染料木黄酮碳点的抗氧化和抗炎作用,特别是与母体染料木黄酮分子相比,可能归因于碳点表面功能性染料木黄酮残基的展示,以及低带隙能量有利于电子清除。重要的是,染料木黄酮碳点具有生物相容性和低细胞毒性,突出了它们作为抗炎疾病治疗载体的潜力。

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