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使用不同辐射品质评估球形金纳米颗粒诱导细胞损伤的潜在放射增敏作用。

An Evaluation of the Potential Radiosensitization Effect of Spherical Gold Nanoparticles to Induce Cellular Damage Using Different Radiation Qualities.

作者信息

Engelbrecht-Roberts Monique, Miles Xanthene, Vandevoorde Charlot, de Kock Maryna

机构信息

Department of Medical Bioscience, Faculty of Natural Sciences, University of the Western Cape, Cape Town 7535, South Africa.

Radiation Biophysics Division, Separated Sector Cyclotron Laboratory, iThemba LABS (NRF), Cape Town 7100, South Africa.

出版信息

Molecules. 2025 Feb 24;30(5):1038. doi: 10.3390/molecules30051038.

Abstract

Global disparities in cancer prevention, detection, and treatment demand a unified international effort to reduce the disease's burden and improve outcomes. Despite advances in chemotherapy and radiotherapy, many tumors remain resistant to these treatments. Gold nanoparticles (AuNPs) have shown promise as radiosensitizers, enhancing the effectiveness of low-energy X-rays by emitting Auger electrons that cause localized cellular damage. In this study, spherical AuNPs of 5 nm and 10 nm were characterized and tested on various cell lines, including malignant breast cells (MCF-7), non-malignant cells (CHO-K1 and MCF-10A), and human lymphocytes. Cells were treated with AuNPs and irradiated with attenuated 6 megavoltage (MV) X-rays or p(66)/Be neutron radiation to assess DNA double-strand break (DSB) damage, cell viability, and cell cycle progression. The combination of AuNPs and neutron radiation induced higher levels of γ-H2AX foci and micronucleus formation compared to treatments with AuNPs or X-ray radiation alone. AuNPs alone reduced cellular kinetics and increased the accumulation of cells in the G2/M phase, suggesting a block of cell cycle progression. For cell proliferation, significant effects were only observed at the concentration of 50 μg/mL of AuNPs, while lower concentrations had no inhibitory effect. Further research is needed to quantify internalized AuNPs and correlate their concentration with the observed cellular effects to unravel the biological mechanisms of their radioenhancement.

摘要

癌症预防、检测和治疗方面的全球差异需要国际社会统一努力,以减轻该疾病的负担并改善治疗效果。尽管化疗和放疗取得了进展,但许多肿瘤对这些治疗仍具有抗性。金纳米颗粒(AuNP)已显示出作为放射增敏剂的潜力,通过发射能引起局部细胞损伤的俄歇电子来增强低能X射线的有效性。在本研究中,对5纳米和10纳米的球形AuNP进行了表征,并在各种细胞系上进行了测试,包括恶性乳腺癌细胞(MCF-7)、非恶性细胞(CHO-K1和MCF-10A)以及人类淋巴细胞。用AuNP处理细胞,并用衰减的6兆伏(MV)X射线或p(66)/Be中子辐射进行照射,以评估DNA双链断裂(DSB)损伤、细胞活力和细胞周期进程。与单独使用AuNP或X射线辐射的处理相比,AuNP与中子辐射的组合诱导了更高水平的γ-H2AX焦点和微核形成。单独的AuNP降低了细胞动力学,并增加了细胞在G2/M期的积累,表明细胞周期进程受阻。对于细胞增殖,仅在AuNP浓度为50μg/mL时观察到显著影响,而较低浓度则没有抑制作用。需要进一步研究来量化内化的AuNP,并将其浓度与观察到的细胞效应相关联,以阐明其放射增强的生物学机制。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/40d8/11902069/fa68501ca5cb/molecules-30-01038-g001.jpg

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