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Is small really beautiful? Nanosensors and low abundance biomarkers for personalized medicine

机译:小真的漂亮吗?纳米传感器和低丰度生物标志物用于个性化医学

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Biomarkers are defined as a characteristic that is objectively measured and evaluated as an indicator of normal biological or pathogenic processes or pharmacological responses to a therapeutic intervention. Over the past few decades, a growing interest in the identification of biomarkers has emerged in order to detect different pathologies in the early stages. Thus, it would be possible to provide a customized treatment to the patient, improving their outcome. Owing this purpose, proteomics has allowed the development of new methodologies and technologies which are able of detecting low-abundance proteins. This is due, in part, to the development of novel promising materials, such as quantum dots or silicon nanowires. Such emerging approaches come with the advantage of their high sensitivity, low-volume requirements or the potential high-throughput applications, among others. However, since huge information has been generated through nanoproteomic techniques, only few applications have arrived to the clinics. Referring to personalized medicine and targeted therapies, it has to be mentioned that the development of more specific drugs can be improved by the use of biomarkers, helping with decisions about dose, schedule and patient population. In this review, we summarize and highlight the utility of biomarkers identified through nanoproteomics for personalized medicine as well as the applications in the clinic and the future perspectives.
机译:生物标志物定义为客观测量和评估的特征,作为正常生物学或致病过程或对治疗干预的药理反应的指标。在过去的几十年中,人们对识别生物标记物的兴趣日益浓厚,以便在早期阶段检测出不同的病理。因此,有可能为患者提供定制的治疗,从而改善他们的结果。由于这个目的,蛋白质组学允许开发能够检测低丰度蛋白质的新方法和技术。这部分是由于新型有希望的材料的发展,例如量子点或硅纳米线。此类新兴方法具有以下优势:灵敏度高,体积小或潜在的高通量应用。但是,由于通过纳米蛋白质组学技术已经产生了巨大的信息,因此只有很少的应用程序到达了临床。关于个性化药物和靶向疗法,必须提到的是,可以通过使用生物标记物来改善更具体药物的开发,从而帮助确定剂量,时间表和患者人数。在这篇综述中,我们总结并强调了通过纳米蛋白质组学鉴定的生物标志物在个性化医学中的效用以及在临床和未来前景中的应用。

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