Ebrahim Hanan S, Deyab Nourhan M, Shaheen Basamat S, Gabr Ahmed M M, Allam Nageh K
Department of Plant Biotechnology, Biotechnology Research Institute, National Research Centre (NRC), Cairo 12622, Egypt.
Energy Materials Laboratory (EML), School of Sciences and Engineering, The American University in Cairo, New Cairo City 11835, Egypt.
BioTech (Basel). 2024 Jul 4;13(3):24. doi: 10.3390/biotech13030024.
Rutin, a flavonoid phytochemical compound, plays a vital role in human health. It is used in treating capillary fragility and has anti-Alzheimer, anti-inflammatory, and antioxidant effects. In this study, Ti-Mo-Ni-O nanotubes (NTs) were used, for the first time, in an unprecedented plant biotechnology application, wherein in vitro Philodendron shoots () known as "Imperial Red" were targeted for rutin accumulation. The antioxidant responses and the accumulation of rutin were evaluated in treated () shoots using 5.0 mg/L of Ti-Mo-Ni-O NTs. The total phenolic content and total flavonoid content were estimated, and an ABTS assay, FRAP assay, and iron metal chelation assay were performed. The application of Ti-Mo-Ni-O NTs enhanced the rutin content considerably from 0.02 mg/g to 2.96 mg/g for dry-weight shootlet extracts. Therefore, the use of Ti-Mo-Ni-O NTs is proposed to be a superior alternative to elevate the rutin content. The aim of the current study is to target shoots grown in vitro for the accumulation of rutin compounds using Ti-Mo-Ni-O NT powder, to determine the quantitative and qualitative accumulation of rutin via HPLC-DAD analysis, and to estimate the antioxidant activity of shoot extract. This study presents a novel methodology for utilizing nano-biotechnology in the synthesis of plant secondary metabolites.
芦丁是一种类黄酮植物化学化合物,对人体健康起着至关重要的作用。它用于治疗毛细血管脆弱症,具有抗阿尔茨海默病、抗炎和抗氧化作用。在本研究中,首次将钛-钼-镍-氧纳米管(NTs)用于一项前所未有的植物生物技术应用中,其中以体外培养的名为“帝王红”的喜林芋嫩枝为目标进行芦丁积累。使用5.0 mg/L的钛-钼-镍-氧纳米管对处理后的喜林芋嫩枝的抗氧化反应和芦丁积累进行了评估。测定了总酚含量和总黄酮含量,并进行了ABTS测定、FRAP测定和铁金属螯合测定。对于干重嫩枝提取物,钛-钼-镍-氧纳米管的应用使芦丁含量从0.02 mg/g大幅提高到2.96 mg/g。因此,建议使用钛-钼-镍-氧纳米管作为提高芦丁含量的一种更好的替代方法。本研究的目的是利用钛-钼-镍-氧纳米管粉末,以体外培养的喜林芋嫩枝为目标积累芦丁化合物,通过HPLC-DAD分析确定芦丁的定量和定性积累,并评估喜林芋嫩枝提取物的抗氧化活性。本研究提出了一种利用纳米生物技术合成植物次生代谢产物的新方法。