Beijing Laboratory of Biomedical Materials, Department of Geriatric Dentistry, Peking University School and Hospital of Stomatology, Beijing, 100081, P. R. China.
CAS Key Laboratory of Bio-inspired Smart Interfacial Science Technical Institute of Physics and Chemistry, Chinese Academy of Sciences, 29 Zhongguancun East Road, Haidian District, Beijing, 100190, P. R. China.
Small Methods. 2021 May;5(5):e2001205. doi: 10.1002/smtd.202001205. Epub 2021 Jan 18.
The early diagnosis of recurrence and metastasis is critically important for decreasing the morbidity and mortality associated with oral cancers. Although liquid biopsy methods hold great promise that provide a successive "time-slice" profile of primary and metastatic oral cancer, the development of non-invasive, rapid, simple, and cost-effective liquid biopsy techniques remains challenging. In this study, an ultrasensitive and selective electrochemical liquid biopsy is developed for oral cancer screening based on tracking trace amounts of cancer biomarker by functionalized asymmetric nano-channels. Detection via antigen-antibody reactions is assayed by evaluating changes in ionic current. Upon the recognition of cancer biomarker antigens in bio-fluids, the inner wall of nano-channel immobilized with the corresponding antibodies undergoes molecular conformation transformation and surface physicochemical changes, which significantly regulate the ion transport through the nano-channel and help achieve sensitivity with a detection limit of 10 g mL . Furthermore, owing to the specificity of the monoclonal antibody for the antigen, the nano-channel exhibits high selectivity for the biomarker than for structurally similar biological molecules present in bio-fluids. The effectiveness of this technique is confirmed through the diagnosis of clinical cases of oral squamous cell carcinoma. This study presents a novel diagnostic tool for oral cancer detection in bio-fluids.
早期诊断复发和转移对于降低口腔癌相关发病率和死亡率至关重要。虽然液体活检方法具有很大的潜力,可以提供原发性和转移性口腔癌的连续“时间切片”谱,但开发非侵入性、快速、简单和具有成本效益的液体活检技术仍然具有挑战性。在这项研究中,基于通过功能化不对称纳米通道跟踪痕量癌症生物标志物,开发了一种用于口腔癌筛查的超灵敏和选择性电化学液体活检。通过评估离子电流的变化来检测抗原-抗体反应。在生物流体中识别癌症生物标志物抗原后,固定有相应抗体的纳米通道的内壁会发生分子构象转变和表面物理化学变化,这会显著调节离子通过纳米通道的传输,有助于实现具有 10 g mL 的检测限的灵敏度。此外,由于单克隆抗体对抗原的特异性,纳米通道对生物标志物的选择性高于生物流体中存在的结构相似的生物分子。通过对口腔鳞状细胞癌临床病例的诊断证实了该技术的有效性。这项研究为生物流体中的口腔癌检测提供了一种新的诊断工具。