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黑曲霉培养上清液生物合成双金属银金纳米粒子的环保合成、表征及生物医学应用

Eco-Friendly Synthesis, Characterization, and Biomedical Applications of Biosynthesized Bimetallic Silver-Gold Nanoparticles by Culture Supernatant of Aspergillus niger.

作者信息

Abu-Tahon Medhat Ahmed, Alshammari Fahdah Ayed, Shahhat Ismail Mahmoud, Ghareib Mohamed, Abdallah Wafaa E

机构信息

Department of Biology, Faculty of Science and Arts, Northern Border University, Rafha, Saudi Arabia.

Biological and Geological Sciences Department, Faculty of Education, Ain Shams University, Roxy, Heliopolis, Cairo, P.C.11757, Egypt.

出版信息

Appl Biochem Biotechnol. 2025 Jan;197(1):137-158. doi: 10.1007/s12010-024-05035-w. Epub 2024 Aug 6.

Abstract

Green synthesis of bimetallic nanoparticles of noble metals is highly desirable in nanomedicine because of their potential use as anticoagulant, thrombolytic and anticancer agents. In this study, it was discovered that the filamentous fungus Aspergillus niger proved effective in producing bimetallic Ag-Au nanoparticles. A. niger culture supernatant was able to produce Ag-AuNPs by reducing the solution of chloroauric acid/silver nitrate (1.0:1.0 mM) within 2 min at 100 °C and pH 8. Experimental Ag-AuNP detection was performed by visually observing the color change to reddish brown. The produced nanoparticles displayed maximal absorbance at 530 nm in UV-vis spectroscopy. According to transmission electron microscopy, most of the nanoparticles were spherical, with a mean diameter of 8-10 nm. The biosynthesis of Ag-AuNPs by A. niger was confirmed by Fourier transform infrared spectroscopy, X-ray diffraction and energy dispersive X-ray analytical techniques. Its zeta potential was discovered to be -34.01 mV. The biosynthesized Ag-AuNPs exhibited effective thrombolytic and antiplatelet aggregation actions by totally preventing and dissolving the blood clot which was verified by microscopic examination, amelioration of blood coagulation assays, and carrageenan-induced tail thrombosis model. The findings verified the effectiveness of biosynthesized Ag-AuNPs as a powerful antitumor agent against HepG2 and A549 cell lines with IC values of 15.57 and 27.07 μg/mL, respectively. Crystal violet assay validated the cytopathic effects of Ag-AuNPs on A549 and HepG2 cell lines. Therefore, the produced Ag-AuNPs from A. niger are a promising candidate in the management of thrombosis.

摘要

由于贵金属双金属纳米颗粒具有作为抗凝剂、溶栓剂和抗癌剂的潜在用途,因此在纳米医学中非常需要对其进行绿色合成。在本研究中,发现丝状真菌黑曲霉在生产双金属银-金纳米颗粒方面被证明是有效的。黑曲霉培养上清液能够在100°C和pH 8的条件下,在2分钟内通过还原氯金酸/硝酸银溶液(1.0:1.0 mM)来生产银-金纳米颗粒。通过肉眼观察颜色变为红棕色来进行实验性银-金纳米颗粒检测。所产生的纳米颗粒在紫外-可见光谱中在530 nm处显示出最大吸光度。根据透射电子显微镜观察,大多数纳米颗粒是球形的,平均直径为8-10 nm。通过傅里叶变换红外光谱、X射线衍射和能量色散X射线分析技术证实了黑曲霉对银-金纳米颗粒的生物合成。发现其zeta电位为-34.01 mV。通过显微镜检查、改善血液凝固测定以及角叉菜胶诱导的尾部血栓形成模型证实,生物合成的银-金纳米颗粒通过完全预防和溶解血凝块表现出有效的溶栓和抗血小板聚集作用。这些发现证实了生物合成的银-金纳米颗粒作为一种强大的抗肿瘤剂对HepG2和A549细胞系的有效性,其IC值分别为15.57和 27.07 μg/mL。结晶紫测定法验证了银-金纳米颗粒对A549和HepG2细胞系的细胞病变效应。因此,从黑曲霉产生的银-金纳米颗粒是血栓形成管理中有前景的候选物。

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