Faculty of Medicine, "Iuliu Hatieganu" University of Medicine and Pharmacy, 400349 Cluj-Napoca, Romania.
MedFuture-Research Center for Advanced Medicine, "Iuliu Hatieganu" University of Medicine and Pharmacy, 400349 Cluj-Napoca, Romania.
Biosensors (Basel). 2024 Jan 12;14(1):41. doi: 10.3390/bios14010041.
This study delves into the intricate interaction between DNA and nanosystems, exploring its potential implications for biomedical applications. The focus lies in understanding the adsorption geometry of DNA when in proximity to plasmonic nanoparticles, utilizing ultrasensitive vibrational spectroscopy techniques. Employing a combined Raman-SERS analysis, we conducted an in-depth examination to clarify the molecular geometry of interactions between DNA and silver nanoparticles. Our findings also reveal distinctive spectral features regarding DNA samples due to their distinctive genome stability. To understand the subtle differences occurring between normal and cancerous DNA, their thermal stability was investigated by means of SERS measurement performed before and after a thermal treatment at 94 °C. It was proved that thermal treatment did not affect DNA integrity in the case of normal cells. On the other hand, due to epimutation pattern that characterizes cancerous DNA, variations between spectra recorded before and after heat treatment were observed, suggesting genome instability. These findings highlight the potential of DNA analysis using SERS for cancer detection. They demonstrate the applicability of this approach to overcoming challenges associated with low DNA concentrations (e.g., circulating tumor DNA) that occur in biofluids. In conclusion, this research contributes significant insights into the nanoscale behavior of DNA in the presence of nanosystems.
本研究深入探讨了 DNA 与纳米系统之间的复杂相互作用,探索了其在生物医学应用中的潜在意义。研究重点在于利用超灵敏振动光谱技术,了解 DNA 在接近等离子体纳米粒子时的吸附几何形状。我们采用拉曼-表面增强拉曼散射(Raman-SERS)分析相结合的方法,对 DNA 与银纳米粒子之间相互作用的分子几何形状进行了深入研究。我们的研究结果还揭示了由于基因组稳定性的不同,DNA 样本具有独特的光谱特征。为了了解正常和癌变 DNA 之间发生的细微差异,我们通过在 94°C 下进行热治疗前后的 SERS 测量来研究它们的热稳定性。结果证明,正常细胞中的热治疗不会影响 DNA 的完整性。另一方面,由于癌变 DNA 的表观遗传模式,我们观察到热治疗前后记录的光谱之间存在差异,表明基因组不稳定。这些发现突显了使用 SERS 进行 DNA 分析在癌症检测中的潜力。它们证明了这种方法适用于克服生物流体中存在的低 DNA 浓度(例如循环肿瘤 DNA)相关挑战。总之,本研究为纳米系统存在下的 DNA 纳米尺度行为提供了重要的见解。