Institute of Nuclear Physics Polish Academy of Sciences, Radzikowskiego 152, 31-342 Krakow, Poland.
ACS Sens. 2024 Sep 27;9(9):4887-4897. doi: 10.1021/acssensors.4c01455. Epub 2024 Sep 18.
Radiotherapy is one of the most common approaches for cancer treatment, especially in the case of peripheral nervous system tumors. As it requires exposure to high doses of ionizing radiation, it is important to look for substances that support efficient reduction of the tumor volume with simultaneous prevention of the surrounding noncancerous cells. Cannabidiol (CBD), which exhibits both anticancer and neuroprotective properties, was applied as a potential modulator of radiological response; however, its influence on cells undergoing irradiation remains elusive. Here, we have applied high-resolution optical spectroscopy techniques to capture biomolecules associated with CBD shielding of normal and damaging cancerous cells upon X-ray exposure. Conventional Raman (RS) and Fourier transformed infrared (FT-IR) spectroscopies provided semiquantitative information mainly about changes in the concentration of total lipids, DNA, cholesteryl esters, and phospholipids in cells. A through assessment of the single cells by atomic force microscopy coupled with infrared spectroscopy (AFM-IR) allowed us to determine not only the alterations in DNA content but also in its conformation due to cell treatment. Pronounced nanoscale changes in cholesteryl ester metabolites, associated with CBD treatment and radiation, were also observed. AFM-IR chemoselective maps of the single cells indicate the modified distribution of cholesteryl esters with 40 nm spatial resolution. Based on the obtained results, we propose a label-free and fast analytical method engaging optical spectroscopy to assess the mechanism of normal and cancerous cell susceptibility to ionizing radiation when pretreated with CBD.
放射治疗是癌症治疗中最常见的方法之一,尤其是在周围神经系统肿瘤的情况下。由于它需要暴露于高剂量的电离辐射,因此寻找支持有效减少肿瘤体积同时预防周围非癌性细胞的物质非常重要。大麻二酚 (CBD) 具有抗癌和神经保护特性,被用作放射反应的潜在调节剂;然而,它对接受辐射的细胞的影响仍然难以捉摸。在这里,我们应用高分辨率光学光谱技术来捕获与 CBD 屏蔽正常和受损癌细胞在 X 射线照射下相关的生物分子。常规拉曼 (RS) 和傅里叶变换红外 (FT-IR) 光谱学主要提供有关细胞中总脂质、DNA、胆固醇酯和磷脂浓度变化的半定量信息。通过原子力显微镜与红外光谱学 (AFM-IR) 对单个细胞进行全面评估,使我们不仅能够确定 DNA 含量的变化,还能够确定由于细胞处理而导致的其构象变化。还观察到与 CBD 治疗和辐射相关的胆固醇酯代谢物的明显纳米级变化。单个细胞的 AFM-IR 化学选择图表明,胆固醇酯的分布发生了改变,空间分辨率为 40nm。基于获得的结果,我们提出了一种无标记且快速的分析方法,该方法涉及使用光学光谱学来评估 CBD 预处理后正常和癌细胞对电离辐射敏感性的机制。