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溶胶-凝胶法制备的氧化锌纳米晶体的治疗潜力:抗癌、抗氧化和抗菌三重作用

Therapeutic Potential of Sol-Gel ZnO Nanocrystals: Anticancer, Antioxidant, and Antimicrobial Tri-Action.

作者信息

Eren Busra, Gunduz Meliha Koldemir, Kaymak Gullu, Berikten Derya, Bahsi Zehra Banu

机构信息

Institute of Biotechnology, Gebze Technical University, Gebze, Kocaeli 41400, Turkey.

Faculty of Engineering and Natural Sciences, Department of Basic Sciences of Engineering, Kutahya Health Sciences University, Kütahya 43100, Turkey.

出版信息

ACS Omega. 2024 Mar 20;9(13):14818-14829. doi: 10.1021/acsomega.3c07191. eCollection 2024 Apr 2.

Abstract

Zinc oxide nanocrystals (ZnO NCs) hold great promise in nanomedicine with fascinating multifunctional properties. We investigated the therapeutic potential of sol-gel synthesized ZnO NCs with crystal sizes of 52.65 and 25.11 nm, focusing on their anticancer effects on HepG2 and HT29 cells, antioxidant properties, and antimicrobial activity. Both samples displayed a hexagonal wurtzite ZnO structure, wherein the crystal sizes diminished with lower calcination temperatures according to X-ray diffraction. The scanning electron microscopy analysis revealed that lowering the calcination temperature resulted in a decrease in the grain size of the ZnO NCs, as expected. This reduction in grain size combined with a decrease in crystal size resulted in a significant 40% reduction in the reflectance of the ZnO NCs in UV-vis-NIR spectroscopy. It was also observed that the ZnO NCs calcined at higher temperatures exhibited larger particle sizes with a reduced surface area mean of 69.30 μm and a stable negative zeta potential of -11.2 mV. In contrast, the ZnO NCs calcined at lower temperatures exhibited a larger surface area mean of 34.56 μm and a positive zeta potential of +10 mV. In both cell lines, the cytotoxic potential was found to be higher in HepG2 cells. Specifically, when ZnO nanocrystals (NCs) with a crystal size of 52.65 nm were used, the lowest cell viability was observed at a concentration of 5.74 μg/mL. Based on oxidative stress index values, a lower crystal size of ZnO NCs displayed greater effectiveness in HT29 cells, while a higher crystal size of ZnO NCs had pronounced effects in HepG2 cells. Moreover, both ZnO NCs exhibited significant antimicrobial activity against Gram-positive bacteria ( and ) and fungus. These findings emphasize sol-gel ZnO NCs' potential as versatile agents in nanomedicine, spurring research on targeted cancer therapies and antimicrobial innovations.

摘要

氧化锌纳米晶体(ZnO NCs)凭借其迷人的多功能特性在纳米医学领域具有巨大的应用前景。我们研究了通过溶胶 - 凝胶法合成的晶体尺寸分别为52.65纳米和25.11纳米的ZnO NCs的治疗潜力,重点关注它们对HepG2和HT29细胞的抗癌作用、抗氧化性能以及抗菌活性。根据X射线衍射分析,两个样品均呈现六方纤锌矿ZnO结构,其中较低的煅烧温度会使晶体尺寸减小。扫描电子显微镜分析表明,正如预期的那样,降低煅烧温度会导致ZnO NCs的晶粒尺寸减小。晶粒尺寸的减小与晶体尺寸的减小相结合,使得ZnO NCs在紫外 - 可见 - 近红外光谱中的反射率显著降低了40%。还观察到,在较高温度下煅烧的ZnO NCs呈现出较大的粒径,平均表面积为69.30μm,并且具有稳定的 -11.2 mV的负zeta电位。相比之下,在较低温度下煅烧的ZnO NCs的平均表面积较大,为34.56μm,并且具有 +10 mV的正zeta电位。在两种细胞系中,发现HepG2细胞的细胞毒性潜力更高。具体而言,当使用晶体尺寸为52.65纳米的ZnO纳米晶体(NCs)时,在浓度为5.74μg/mL时观察到最低的细胞活力。基于氧化应激指数值,较低晶体尺寸的ZnO NCs在HT29细胞中表现出更高的有效性,而较高晶体尺寸的ZnO NCs在HepG2细胞中具有显著效果。此外,两种ZnO NCs对革兰氏阳性菌( 和 )以及真菌均表现出显著的抗菌活性。这些发现强调了溶胶 - 凝胶法制备的ZnO NCs作为纳米医学中多功能试剂的潜力,推动了针对癌症治疗和抗菌创新的研究。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6df4/10993253/0282c45d920d/ao3c07191_0001.jpg

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