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A microcantilever-based silver ion sensor using DNA-functionalized gold nanoparticles as a mass amplifier

机译:使用DNA官能化金纳米颗粒作为批量放大器的基于微电子的银离子传感器

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Silver ions have been used to sterilize many products, however, it has recently been demonstrated that silver ions can be toxic. This toxicity has been studied over many years with the lethal concentration at 10 mu M. Silver ions can accumulate through the food chain, causing serious health problems in many species. Hence, there is a need for a commercially available silver ion sensor, with high detection sensitivity. In this work, we develop an ultra-sensitive silver ion sensor platform, using cytosine based DNA and gold nanoparticles as the mass amplifier. We achieve a lower detection limit for silver ions of 10 pM; this detection limit is one million times lower than the toxic concentration. Using our sensor platform we examine highly selective characteristics of other typical ions in water from natural sources. Furthermore, our sensor platform is able to detect silver ions in a real practical sample of commercially available drinking water. Our sensor platform, which we have termed a 'MAIS' (mass amplifier ion sensor), with a simple detection procedure, high sensitivity, selectivity and real practical applicability has shown potential as an early toxicity assessment of silver ions in the environment.
机译:银离子已被用来对许多产品进行灭菌,然而,它最近已经证明银离子可以是有毒的。这种毒性已经过多年来随着10亩M.银离子的致死浓度通过食物链积累,在许多物种中引起严重的健康问题。因此,需要市售的银离子传感器,具有高检测灵敏度。在这项工作中,我们使用基于胞嘧啶的DNA和金纳米颗粒作为质量放大器开发超敏感的银离子传感器平台。我们达到了下午10点的银离子的较低检测限;该检测限度比毒浓度低一百万次。使用我们的传感器平台,我们从自然来源中检查其他典型离子的高度选择性特征。此外,我们的传感器平台能够在市售饮用水的真正实际样品中检测银离子。我们的传感器平台,我们称之为“MAIS”(大众放大器离子传感器),具有简单的检测程序,高灵敏度,选择性和实际实际适用性,表明了环境中银离子的早期毒性评估。

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