Centre for Radiation and Environmental Science, FOCAS Research Institute, Technological University Dublin. City Campus, Dublin, Ireland.
School of Physics & Clinical & Optometric Sciences, Technological University Dublin, City Campus, Dublin, Ireland.
J Biophotonics. 2020 Nov;13(11):e202000079. doi: 10.1002/jbio.202000079. Epub 2020 Aug 23.
This study demonstrates the efficacy of Raman micro-spectroscopy of oral cytological samples for differentiating dysplastic, potentially malignant lesions from those of normal, healthy donors. Cells were collected using brush biopsy from healthy donors (n = 20) and patients attending a Dysplasia Clinic (n = 20). Donors were sampled at four different sites (buccal mucosa, tongue, alveolus, gingiva), to ensure matched normal sites for all lesions, while patient samples were taken from clinically evident, histologically verified dysplastic lesions. Spectra were acquired from the nucleus and cytoplasm of individual cells of all samples and subjected to partial least squares-discriminant analysis. Discriminative sensitivities of 94% and 86% and specificity of 85% were achieved for the cytoplasm and nucleus, respectively, largely based on lipidic contributions of dysplastic cells. Alveolar/gingival samples were differentiated from tongue/buccal samples, indicating that anatomical site is potentially a confounding factor, while age, gender, smoking and alcohol consumption were confirmed not to be.
本研究表明,拉曼微光谱技术可用于分析口腔细胞学样本,从而区分发育不良、潜在恶性病变与正常、健康供体的样本。采用刷取活检术收集健康供体(n=20)和就诊于发育不良临床科室的患者(n=20)的细胞。供体在四个不同部位(颊黏膜、舌、牙槽、牙龈)进行采样,以确保所有病变都有匹配的正常部位,而患者的样本则取自临床上明显、经组织学验证的发育不良病变。对所有样本的单个细胞的核和细胞质采集光谱,并进行偏最小二乘判别分析。细胞质和细胞核的判别灵敏度分别达到 94%和 86%,特异性分别为 85%,主要基于发育不良细胞的脂质贡献。牙槽/牙龈样本与舌/颊样本区分开来,表明解剖部位可能是一个混杂因素,而年龄、性别、吸烟和饮酒则被证实不是。