Department of Bioprocess Development, Genetic Engineering and Biotechnology Research Institute, City of Scientific Research and Technological Applications (SRTA-City), New Borg El-Arab City, 21934, Alexandria, Egypt.
Biotechnology and Its Application Program, Department of Botany, Faculty of Science, Mansoura University, Mansoura, 35516, Egypt.
Sci Rep. 2023 Aug 4;13(1):12686. doi: 10.1038/s41598-023-39177-4.
Gold nanoparticles (AuNPs) have emerged as promising and versatile nanoparticles for cancer therapy and are widely used in drug and gene delivery, biomedical imaging, diagnosis, and biosensors. The current study describes a biological-based strategy for AuNPs biosynthesis using the cell-free supernatant of Streptomyces flavolimosus. The biosynthesized AuNPs have an absorption peak at 530-535 nm. The TEM images indicate that AuNPs were spherical and ranged in size from 4 to 20 nm. The surface capping molecules of AuNPs are negatively charged, having a Zeta potential of - 10.9 mV. FTIR analysis revealed that the AuNPs surface composition contains a variety of functional groups as -OH, C-H, N-, C=O, NH, amine hydrochloride, amide group of proteins, C-C and C-N. The bioprocess variables affecting AuNPs biosynthesis were optimized by using the central composite design (CCD) in order to maximize the AuNPs biosynthesis. The maximum yield of AuNPs (866.29 µg AuNPs/mL) was obtained using temperature (35 °C), incubation period (4 days), HAuCl concentration (1000 µg/mL) and initial pH level 6. Comparison was made between the fitness of CCD versus Artificial neural network (ANN) approach based on their prediction and the corresponding experimental results. AuNPs biosynthesis values predicted by ANN exhibit a more reasonable agreement with the experimental result. The anticancer activities of AuNPs were assessed under both in vitro and in vivo conditions. The results revealed a significant inhibitory effect on the proliferation of the MCF-7 and Hela carcinoma cell lines treated with AuNPs with IC value of 13.4 ± 0.44 μg/mL and 13.8 ± 0.45 μg/mL for MCF-7 and Hela cells; respectively. Further, AuNPs showed potential inhibitory effect against tumor growth in tumor-bearing mice models. AuNPs significantly reduced the tumor volume, tumor weight, and decreased number of viable tumor cells in EAC bearing mice.
金纳米粒子 (AuNPs) 作为一种有前途和多功能的纳米粒子,已被广泛应用于癌症治疗领域,用于药物和基因递送、生物医学成像、诊断和生物传感器。本研究描述了一种使用链霉菌黄素的无细胞上清液合成 AuNPs 的基于生物学的策略。合成的 AuNPs 在 530-535nm 处有一个吸收峰。TEM 图像表明 AuNPs 是球形的,尺寸在 4 到 20nm 之间。AuNPs 的表面封端分子带负电荷,Zeta 电位为-10.9mV。FTIR 分析表明,AuNPs 表面组成包含各种功能基团,如-OH、C-H、N-、C=O、NH、盐酸胺、蛋白质的酰胺基团、C-C 和 C-N。通过使用中心组合设计 (CCD) 优化了影响 AuNPs 生物合成的生物过程变量,以最大限度地提高 AuNPs 的生物合成。在温度(35°C)、孵育期(4 天)、HAuCl 浓度(1000μg/mL)和初始 pH 值 6 的条件下,获得了 AuNPs 的最大产量(866.29μg AuNPs/mL)。比较了 CCD 与人工神经网络 (ANN) 方法的拟合度,根据它们的预测和相应的实验结果。ANN 预测的 AuNPs 生物合成值与实验结果更吻合。在体外和体内条件下评估了 AuNPs 的抗癌活性。结果表明,AuNPs 对 MCF-7 和 Hela 癌细胞系的增殖有显著的抑制作用,对 MCF-7 和 Hela 细胞的 IC 值分别为 13.4±0.44μg/mL 和 13.8±0.45μg/mL。此外,AuNPs 对荷瘤小鼠模型的肿瘤生长具有潜在的抑制作用。AuNPs 显著降低了荷瘤小鼠的肿瘤体积、肿瘤重量和存活肿瘤细胞数量。