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Nanoscale Sensor Technologies for Disease Detection via Volatolomics

机译:纳米技术用于通过火山爆发检测疾病

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The detection of many diseases is missed because of delayed diagnoses or the low efficacy of some treatments. This emphasizes the urgent need for inexpensive and minimally invasive technologies that would allow efficient early detection, stratifying the population for personalized therapy, and improving the efficacy of rapid bed-side assessment of treatment. An emerging approach that has a high potential to fulfill these needs is based on so-called "volatolomics", namely, chemical processes involving profiles of highly volatile organic compounds (VOCs) emitted from body fluids, including breath, skin, urine and blood. This article presents a didactic review of some of the main advances related to the use of nanomaterial-based solid-state and flexible sensors, and related artificially intelligent sensing arrays for the detection and monitoring of disease with volatolomics. The article attempts to review the technological gaps and confounding factors related to VOC testing. Different ways to choose nanomaterial-based sensors are discussed, while considering the profiles of targeted volatile markers and possible limitations of applying the sensing approach. Perspectives for taking volatolomics to a new level in the field of diagnostics are highlighted.
机译:由于诊断延误或某些治疗方法效率低下,因此错过了许多疾病的检测。这强调了对廉价和微创技术的迫切需求,这些技术应能进行有效的早期发现,对人群进行个性化治疗,并提高快速床旁评估治疗的效果。满足这些需求的潜力很大的新兴方法是基于所谓的“挥发物学”,即涉及从呼吸,皮肤,尿液和血液等体液中释放出的高挥发性有机化合物(VOC)的化学过程。本文介绍了一些与基于纳米材料的固态和柔性传感器的使用有关的主要进展的教学评论,以及与用于利用波动法检测和监测疾病的相关人工智能传感阵列有关的一些主要进展。本文试图回顾与VOC测试相关的技术差距和混杂因素。讨论了选择基于纳米材料的传感器的不同方法,同时考虑了目标挥发性标记物的概况以及应用传感方法的可能局限性。重点介绍了在诊断学领域将挥发性火山学提高到新水平的前景。

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