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基于两种不同提取技术的 - 植物合成、表征、酚类和生物评价。

Phytosynthesis, Characterization, Phenolic and Biological Evaluation of -Based Zn and Fe Nanoparticles Utilizing Two Different Extraction Techniques.

机构信息

Department of Chemistry, College of Science, United Arab Emirates University, Al Ain, United Arab Emirates.

Pharmacognosy Department, Faculty of Pharmacy, Egyptian Chinese University, Cairo, Egypt.

出版信息

Int J Nanomedicine. 2024 Nov 1;19:11003-11021. doi: 10.2147/IJN.S480716. eCollection 2024.

Abstract

INTRODUCTION

Phyto-nanotechnology offers a sustainable method for synthesizing biocompatible metal nanoparticles (NPs) with therapeutic potential. The diverse medicinal flora in the UAE, particularly (LP), provides a vital resource for advancing this research area. This plant is historically valued in the region for its wide medicinal applications due to its abundance of bioactive compounds.

METHODS

In this study, eco-friendly, straightforward, and low-temperature hydrothermal synthesis methods were applied to synthesize potentially therapeutic Zn and Fe NPs using LP extracts. The generated NPs were characterized using UV-VIS, FT-IR, SEM, EDX, XRD and DLS. Moreover, they were investigated for their total phenolic and flavonoid contents, along with their antioxidant and skin anticancer effects.

RESULTS

The UV-Vis spectra disclosed absorption band at about 275 nm, and the FT-IR confirmed the successful coating of the NPs with the plants' phytochemicals, thus ensuring the successful bio-fabrication of the proposed NPs. SEM/EDX outcomes suggest a more potent reducing effect of the aqueous extract, while a more effective coating of the alcoholic extract. DLS revealed monodispersed NPs, with average sizes ranging from 43.82 to 207.8 nm. LFeC demonstrated the highest phenolic and flavonoid contents (49.96±4.76 μg of GAE/mg of DW and 43.89±2.89 μg of Qu/mg of DW, respectively) and the greatest potency against skin cancer cell lines (IC=263.56 µg/mL). However, LZnC exhibited the strongest radical scavenging effect against DPPH and ABTS radicals (IC=139.45µg/mL and 35.1µg/mL, respectively).

DISCUSSION

The results of this study demonstrated that both extracts of LP are effective in the green synthesis of Fe and Zn nanoparticles for biomedical applications, with alcoholic extracts providing superior coating, capping, and stabilizing properties, leading to lower agglomeration, higher carbon content, total phenolic and flavonoid contents, along with enhanced anticancer and antioxidant effects. This work gives a showcase of sustainable materials that are promising for therapeutic applications.

摘要

简介

植物纳米技术为合成具有治疗潜力的生物相容性金属纳米粒子(NPs)提供了一种可持续的方法。阿联酋多样化的药用植物资源,特别是(LP),为推进这一研究领域提供了重要资源。由于其丰富的生物活性化合物,该植物在该地区因其广泛的药用应用而具有历史价值。

方法

在这项研究中,应用了环保、简单和低温水热合成方法,使用 LP 提取物合成潜在治疗性 Zn 和 Fe NPs。所生成的 NPs 通过 UV-VIS、FT-IR、SEM、EDX、XRD 和 DLS 进行了表征。此外,还研究了它们的总酚和类黄酮含量以及抗氧化和皮肤抗癌作用。

结果

紫外-可见光谱显示在约 275nm 处有吸收带,傅里叶变换红外光谱证实 NPs 成功地用植物的植物化学物质进行了涂层,从而确保了所提出的 NPs 的成功生物制造。SEM/EDX 结果表明,水提物具有更强的还原作用,而醇提物具有更强的涂层作用。DLS 显示单分散 NPs,平均粒径范围为 43.82-207.8nm。LFeC 表现出最高的酚类和类黄酮含量(分别为 49.96±4.76μg 的 GAE/mg 的 DW 和 43.89±2.89μg 的 Qu/mg 的 DW)和对皮肤癌细胞系最强的抑制作用(IC=263.56μg/mL)。然而,LZnC 对 DPPH 和 ABTS 自由基表现出最强的自由基清除作用(IC=139.45μg/mL 和 35.1μg/mL)。

讨论

本研究结果表明,LP 的两种提取物均能有效用于生物医学应用的 Fe 和 Zn 纳米粒子的绿色合成,醇提物提供了更好的涂层、封端和稳定性能,导致更低的聚集、更高的碳含量、总酚类和类黄酮含量,以及增强的抗癌和抗氧化作用。这项工作展示了具有治疗应用潜力的可持续材料。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/28bb/11537101/409759f083f4/IJN-19-11003-g0001.jpg

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