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Development and optimization of heavy metal lead biosensors in biomedical and environmental applications

机译:生物医学与环境应用中重金属铅生物传感器的开发与优化

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The detrimental impact of the heavy metal lead (Pb) on human health has been studied for years. The fact that Pb impairs human body has been established from countless painful and sad historical events. Nowadays, World Health Organization and many developmental countries have established regulations concerning the use of Pb. Measuring the blood lead level (BLL) is so far the only way to officially evaluate the degree of Pb exposure, but the so-called safety value (10 μg/dL in adults and 5 μg/dL in children) seems unreliable to represent the security checkpoint for children through daily intake of drinking water or physical contact with a lower contaminated level of Pb contents. In general, unsolved mysteries about the Pb toxicological mechanisms still remain. In this review article, we report on the methods to prevent Pb poison for further Pb toxicological research. We establish high-sensitivity Pb monitoring, and also report on the use of fluorescent biosensors such as genetically-encoded fluorescence resonance energy transfer-based biosensors built for various large demands such as the detection of severe acute respiratory syndrome coronavirus 2. We also contribute to the development and optimization of the FRET-based Pb biosensors. Our well-performed version of Met-lead 1.44 M1 has achieved a limit of detection of 10?nM (2 ppb; 0.2 μg/dL) and almost 5-fold in dynamic range (DR) supported for the real practical applications—that is, the in-cell Pb sensing device for blood and blood-related samples, and the Pb environmental detections in vitro. The perspective of our powerful Pb biosensor incorporated with a highly sensitive bio-chip of the portable device for quick Pb measurements will be addressed for further manipulation.
机译:重金属铅(Pb)对人体健康的不利影响已经研究。 PB损害人体的事实已经从无数痛苦和悲伤的历史活动中建立。如今,世界卫生组织和许多发展国家都有关于使用PB的法规。迄今为止测量血铅水平(BLL)是唯一官能评价PB暴露程度的唯一方法,但所谓的安全值(10μg/ dl在成人中和5μg/ dl中)似乎不可靠地代表儿童安全检查点通过每日摄入饮用水或与较低污染的Pb内容水平的物理接触。通常,关于PB毒理机制的未解决的奥秘仍然存在。在本综述文章中,我们报告了预防PB毒物以进一步的PB毒理学研究的方法。我们建立高敏感性Pb监测,还报告使用荧光生物传感器,如遗传编码的荧光共振能量转移的生物传感器,用于各种大需求,如检测重症急性呼吸综合征冠状病毒2.我们也有助于基于FRET的PB生物传感器的开发与优化。我们的Met-Lead 1.44 M1的良好版本已经实现了10?NM(2ppb;0.2μg/ dL)的检测限,并且在适用于真正的实际应用的动态范围(DR)中的几乎5倍 - 这是,血液和血液相关样品的细胞内PB传感装置,以及体外PB环境检测。我们的强大PB生物传感器与便携式设备的高度敏感的生物芯片结合的透视,以便进行进一步操纵。

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