School of Dentistry, University of Missouri-Kansas City, Kansas City, MO 64108, USA.
Int J Mol Sci. 2021 Jan 26;22(3):1206. doi: 10.3390/ijms22031206.
Oral cancer is one of the most common cancers worldwide. Despite easy access to the oral cavity and significant advances in treatment, the morbidity and mortality rates for oral cancer patients are still very high, mainly due to late-stage diagnosis when treatment is less successful. Oral cancer has also been found to be the most expensive cancer to treat in the United States. Early diagnosis of oral cancer can significantly improve patient survival rate and reduce medical costs. There is an urgent unmet need for an accurate and sensitive molecular-based diagnostic tool for early oral cancer detection. Fourier transform infrared spectroscopy has gained increasing attention in cancer research due to its ability to elucidate qualitative and quantitative information of biochemical content and molecular-level structural changes in complex biological systems. The diagnosis of a disease is based on biochemical changes underlying the disease pathology rather than morphological changes of the tissue. It is a versatile method that can work with tissues, cells, or body fluids. In this review article, we aim to summarize the studies of infrared spectroscopy in oral cancer research and detection. It provides early evidence to support the potential application of infrared spectroscopy as a diagnostic tool for oral potentially malignant and malignant lesions. The challenges and opportunities in clinical translation are also discussed.
口腔癌是全球最常见的癌症之一。尽管人们容易接触口腔,治疗方面也取得了显著进展,但口腔癌患者的发病率和死亡率仍然很高,主要原因是诊断较晚,治疗效果较差。在美国,口腔癌的治疗费用也是最高的。早期诊断口腔癌可以显著提高患者的生存率并降低医疗费用。因此,迫切需要一种准确、敏感的基于分子的诊断工具来早期检测口腔癌。傅里叶变换红外光谱技术因其能够阐明复杂生物系统中生化含量的定性和定量信息以及分子水平的结构变化,在癌症研究中受到越来越多的关注。疾病的诊断基于疾病病理学下的生化变化,而不是组织的形态变化。它是一种多功能的方法,可以用于组织、细胞或体液。在这篇综述文章中,我们旨在总结红外光谱在口腔癌研究和检测中的应用。它为红外光谱作为口腔潜在恶性和恶性病变的诊断工具提供了早期证据支持。本文还讨论了其在临床转化中的挑战和机遇。