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利用黑叶花椒进行金纳米粒子的绿色合成及其在抗菌和抗癌方面的应用

Green Synthesis of Gold Nanoparticles Using Thunberg for Antibacterial and Anticancer Applications.

作者信息

Shakoor Adnan, Ferdous Umme Tamanna, Khan Shakeel Ahmad, Gulzar Muhammad Majid

机构信息

Department of Control & Instrumentation Engineering, King Fahd University of Petroleum & Minerals, Dhahran, 31261, Saudi Arabia.

Center for Bio Systems and Machines, King Fahd University of Petroleum & Minerals, Dhahran, 31261, Saudi Arabia.

出版信息

Int J Nanomedicine. 2025 Mar 3;20:2645-2658. doi: 10.2147/IJN.S503254. eCollection 2025.

Abstract

PURPOSE

The potential use of gold nanoparticles (AuNPs) in healthcare research has increased dramatically in recent years, owing to advancements in their synthesis techniques, including green synthesis. Although is a popular medicinal plant that harbors many bioactive phytochemicals in various parts of the world, the green synthesis of AuNPs using this precious plant is still under investigation. Therefore, this study aimed to explore the green synthesis of AuNPs from Thunberg leaves (CTT-AuNPs) and their antibacterial and cytotoxic properties.

METHODS

AuNPs were synthesized from Thunberg and characterized using various microscopic and spectroscopic techniques. A serial dilution technique was used to determine the antibacterial activity of the synthesized CTT-AuNPs against two bacterial species, and . The cytotoxicity assay was carried out in the breast cancer cell line (MCF-7), whereas the biocompatibility test was performed in the kidney cell line (293T).

RESULTS

Multiple spectroscopic characterization techniques confirmed the successful synthesis of CTT-AuNPs. The average size of CTT-AuNPs was 19.1±2.2 nm. The results of this study revealed that CTT-AuNPs showed strong antibacterial activity against and , which was further confirmed using a live/dead dual staining assay. CTT-AuNPs also significantly reduced the proliferation of MCF-7 breast cancer cells to 32.67% at 120 µg/mL after 24 hours of incubation. These green-synthesized CTT-AuNPs exhibited excellent cytobiocompatibility with 293T kidney cells. The dual staining method further confirmed the cytotoxicity and biocompatibility of CTT-AuNPs compared with chemically synthesized AuNPs.

CONCLUSION

This work will pave the way for the production of biocompatible AuNPs from Thunberg that can be used in different disease treatments.

摘要

目的

近年来,由于包括绿色合成在内的金纳米颗粒(AuNPs)合成技术的进步,其在医疗保健研究中的潜在应用显著增加。尽管[植物名称]是一种广受欢迎的药用植物,在世界各地的不同部位含有许多具有生物活性的植物化学物质,但利用这种珍贵植物进行AuNPs的绿色合成仍在研究中。因此,本研究旨在探索从[植物名称]Thunberg叶片中绿色合成AuNPs(CTT-AuNPs)及其抗菌和细胞毒性特性。

方法

从[植物名称]Thunberg中合成AuNPs,并使用各种显微镜和光谱技术进行表征。采用系列稀释技术测定合成的CTT-AuNPs对两种细菌[细菌名称1]和[细菌名称2]的抗菌活性。在乳腺癌细胞系(MCF-7)中进行细胞毒性测定,而在肾细胞系(293T)中进行生物相容性测试。

结果

多种光谱表征技术证实了CTT-AuNPs的成功合成。CTT-AuNPs的平均尺寸为19.1±2.2nm。本研究结果表明,CTT-AuNPs对[细菌名称1]和[细菌名称2]表现出强大的抗菌活性,使用活/死双重染色试验进一步证实了这一点。在孵育24小时后,CTT-AuNPs在120μg/mL时也显著将MCF-7乳腺癌细胞的增殖降低至32.67%。这些绿色合成的CTT-AuNPs与293T肾细胞表现出优异的细胞生物相容性。与化学合成的AuNPs相比,双重染色方法进一步证实了CTT-AuNPs的细胞毒性和生物相容性。

结论

这项工作将为从[植物名称]Thunberg生产可用于不同疾病治疗的生物相容性AuNPs铺平道路。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/01d2/11887508/65b0bf270a5a/IJN-20-2645-g0001.jpg

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