Louvain Drug Research Institute, Biomedical Magnetic Resonance Research Group, Université Catholique de Louvain, Brussels, Belgium.
Exp Dermatol. 2012 May;21(5):341-6. doi: 10.1111/j.1600-0625.2012.01461.x.
Malignant melanoma is a tumor characterized by the uncontrolled proliferation of melanocytes, mainly in skin, but also in eyes. Its incidence is rising each year. To improve the diagnosis and treatment of the tumor, it is essential to develop new effective methods to early detect and characterize melanoma. Previously, we demonstrated in a single-shot study that it was possible to map free radicals of melanin pigments using an electron paramagnetic resonance (EPR)-based method. Furthermore, we demonstrated that X-Band (9 GHz) EPR spectrometry was an accurate tool to assess the growth stage of a pigmented tumor. The aim of the present study was to investigate the ability of EPR imaging to detect and localize melanin pigments inside melanin phantoms, B16 melanoma tumor models and resected human melanomas. We show that EPR can provide an accurate image of synthetic samples, both in terms of shape and size, with errors always lower than 10% compared to the real size. Regarding melanoma studies, the ability of EPR imaging to map accurately the melanoma was depending on the concentration of melanin in the sample, which is proportional to the growth stage of the tumor and the consequent signal-to-noise ratio (SNR) provided by the EPR signal intensity. This led us to define an operational concept, considering SNR and interferences with other EPR signals, to determine when EPR imaging was feasible.
恶性黑色素瘤是一种以黑色素细胞不受控制地增殖为特征的肿瘤,主要发生在皮肤,但也可发生在眼睛。其发病率逐年上升。为了提高肿瘤的诊断和治疗水平,开发新的有效方法来早期检测和表征黑色素瘤至关重要。以前,我们在一项单次研究中证明,使用基于电子顺磁共振(EPR)的方法可以对黑色素颜料的自由基进行成像。此外,我们还证明了 X 波段(9GHz)EPR 光谱仪是一种准确的工具,可以评估色素肿瘤的生长阶段。本研究的目的是研究 EPR 成像检测和定位黑色素颜料在黑色素模型、B16 黑色素瘤肿瘤模型和切除的人类黑色素瘤中的能力。我们表明,EPR 可以提供合成样本的准确图像,无论在形状和大小方面,与真实尺寸相比,误差始终低于 10%。关于黑色素瘤研究,EPR 成像准确绘制黑色素瘤的能力取决于样本中黑色素的浓度,这与肿瘤的生长阶段以及 EPR 信号强度提供的信噪比(SNR)成正比。这使我们定义了一个操作概念,考虑 SNR 和与其他 EPR 信号的干扰,以确定何时可以进行 EPR 成像。