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SURFACE FUNOTIONALIZATION OF AN OVARIAN CANCER DIAGNOSTIC BIOSENSOR

机译:卵巢癌诊断生物传感器的表面功能化

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Ovarian cancer is the fifth leading cause of death among women in United States and the disease has 1.4% (1 in 71) lifetime risk. Patients with ovarian cancer have a short median survival time after diagnosis with their 5-year survival rate being less than 40%. Early stage ovarian cancer represents an important target for screening since it is lethal in most late stage cases (1). Currently the primary screening procedure for ovarian cancer are blood levels of cancer antigen (CA) 125, however CA 125 levels can also be elevated due to other disorders and do not provide conclusive results (2). Utilizing the research done at the Cell and Molecular Biology department at the University of South Florida which conclusively revealed that urinary levels of bcl-2 are elevated in ovarian cancer patients (3), this research it the first of its kind looking to assess the capture of an analyte protein on a series of potential bioconjugated surfaces for use in a novel acoustic biosensor. Therefore, this research addresses the need for a reliable and economic testing platform to detect ovarian cancer.
机译:卵巢癌是美国女性中第五大死亡原因,该病有1.4%(71分之一)的终生风险。卵巢癌患者的诊断后中位生存时间较短,其5年生存率低于40%。早期卵巢癌是筛查的重要目标,因为它在大多数晚期病例中都是致命的(1)。当前,卵巢癌的主要筛查方法是血液中的癌抗原(CA)125水平,但是由于其他疾病,CA 125水平也可能升高,因此无法提供结论性结果(2)。利用南佛罗里达大学细胞与分子生物学系进行的研究得出的结论是,卵巢癌患者的尿中bcl-2水平升高了(3),这是该研究中首次尝试评估捕获率的研究用于新型声学生物传感器的一系列潜在生物共轭表面上的分析物蛋白质的分析因此,本研究满足了对可靠且经济的检测平台以检测卵巢癌的需求。

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