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Magnetic-Composite-Modified Polycrystalline Silicon Nanowire Field-Effect Transistor for Vascular Endothelial Growth Factor Detection and Cancer Diagnosis

机译:磁性复合修饰的多晶硅纳米线场效应晶体管用于血管内皮生长因子检测和癌症诊断

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This study proposes a vascular endothelial growth factor (VEGF) biosensor for diagnosing various stages of cervical carcinoma. In addition, VEGF concentrations at various stages of cancer therapy are determined and compared to data obtained by computed tomography (CT) and cancer antigen 125 (CA-125). The increase in VEGF concentrations during operations offers useful insight into dosage timing during cancer therapy. This biosensor uses Avastin as the biorecognition element for the potential cancer biomarker VEGF and is based on a n-type polycrystalline silicon nanowire field-effect transistor (poly-SiNW-FET). Magnetic nanoparticles with poly[aniline-co-N-(1-one-butyric acid) aniline]-Fe_3O_4 (SPAnH-Fe_3O_4) shell-core structures are used as carriers for Avastin loading and provide rapid purification due to their magnetic properties, which prevent the loss of bioactivity; furthermore, the high surface area of these structures increases the quantity of Avastin immobilized. Average concentrations in human blood for species that interfere with detection specificity are also evaluated. The detection range of the biosensor for serum samples covers the results expected from both healthy individuals and cancer patients.
机译:这项研究提出了一种用于诊断宫颈癌各个阶段的血管内皮生长因子(VEGF)生物传感器。此外,确定了癌症治疗各个阶段的VEGF浓度并将其与通过计算机断层扫描(CT)和癌症抗原125(CA-125)获得的数据进行比较。手术期间VEGF浓度的增加为癌症治疗期间的给药时机提供了有用的见识。该生物传感器使用Avastin作为潜在癌症生物标记VEGF的生物识别元件,并基于n型多晶硅纳米线场效应晶体管(poly-SiNW-FET)。具有聚[苯胺-co-N-(1-一丁酸)苯胺] -Fe_3O_4(SPAnH-Fe_3O_4)壳核结构的磁性纳米粒子用作载有Avastin的载体,并由于其磁性而提供快速纯化防止生物活性的丧失;此外,这些结构的高表面积增加了固定化的阿瓦斯丁的数量。还评估了人类血液中干扰检测特异性的物种的平均浓度。血清样品生物传感器的检测范围涵盖了健康个体和癌症患者的预期结果。

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