Department of Spinal Surgery, Xinxiang Central Hospital, Xinxiang City, Henan Province 453000, People's Republic of China.
Faculty of Chemical Engineering Technology, Universiti Malaysia Perlis (UniMAP), Arau, Perlis 02600, Malaysia.
Int J Nanomedicine. 2020 Dec 14;15:10171-10181. doi: 10.2147/IJN.S284752. eCollection 2020.
In recent years, nanomaterials have justified their dissemination for biosensor application towards the sensitive and selective detections of clinical biomarkers at the lower levels. MXene is a two-dimensional layered transition metal, attractive for biosensing due to its chemical, physical and electrical properties along with the biocompatibility.
This work was focused on diagnosing osteosarcoma (OS), a common bone cancer, on MXene-modified multiple junction triangles by dielectrode sensing. Survivin protein gene is highly correlated with OS, identified on this sensing surface. Capture DNA was immobilized on MXene by using 3-glycidoxypropyltrimethoxysilane as an amine linker and duplexed by the target DNA sequence.
The limitation and sensitivity of detection were found as 1 fM with the acceptable regression co-efficient value (y=1.0037⨰ + 0.525; R=0.978) and the current enhancement was noted when increasing the target DNA concentrations. Moreover, the control sequences of single- and triple-mismatched and noncomplementary to the target DNA sequences failed to hybridize on the capture DNA, confirming the specificity. In addition, different batches were prepared with capture probe immobilized sensing surfaces and proved the efficient reproducibility.
This microgap device with Mxene-modified multiple junction triangles dielectrode surface is beneficial to quantify the survivin gene at its lower level and diagnosing OS complication levels.
近年来,纳米材料因其在生物传感器应用方面的灵敏和选择性检测临床生物标志物的优势而得到广泛应用。MXene 是一种二维层状过渡金属,由于其化学、物理和电学性质以及生物相容性,在生物传感方面具有吸引力。
本工作集中于通过介电极传感在 MXene 修饰的多结三角形上诊断骨肉瘤(OS),这是一种常见的骨癌。在这个传感表面上,鉴定出与 OS 高度相关的存活蛋白基因。通过使用 3-缩水甘油丙基三甲氧基硅烷作为胺连接体将捕获 DNA 固定在 MXene 上,并通过目标 DNA 序列进行双链化。
检测的局限性和灵敏度分别为 1 fM 和可接受的回归系数值(y=1.0037⨰ + 0.525;R=0.978),并且当目标 DNA 浓度增加时,检测电流增强。此外,单链和三链错配以及与目标 DNA 序列不互补的对照序列未能与捕获 DNA 杂交,从而证实了特异性。此外,用固定有捕获探针的传感表面制备了不同批次,并证明了其高效的重现性。
这种带有 MXene 修饰的多结三角形介电电极表面的微间隙装置有利于定量检测较低水平的存活蛋白基因,并诊断 OS 并发症水平。