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Nanoplasmonic Paper-Based Platform for General Screening of Biomacromolecules

机译:基于纳米升性的纸纸平台用于筛选生物筛选

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摘要

Hygiene assessment in industrial and clinical environments is crucial in the prevention of health risks. Current technologies for routine cleanliness evaluation rely on the detection of specific biomolecules, thus requiring more than one test for broad-range screening. Herein, the modulation of the catalytic activity of gold nanoparticles (AuNPs) by biomacromolecules was employed to develop a nanoplasmonic platform for general hygiene screening. AuNPs were immobilized on cellulose paper by simple adsorption. When ferricyanide was dispensed onto the paper, the AuNPs catalysed the ferricyanide’s dissociation, releasing free cyanide ions that dissolved them. The AuNP dissolution produced an intense colour shift detectable with the naked eye. When biomacromolecules (e.g., proteins and polysaccharides) were present, they spontaneously attached to AuNPs, forming a biomolecular corona (biocorona), reducing their catalytic activity until complete suppression when the NPs were fully covered by molecules. The concentration-dependent decrease in the catalytic activity was here used to quantify biomacromolecules and complex samples such as milk, eggs, soy sauce and yeast extract (in 20 min), with detection limits comparable to those of standard methods, i.e., 0.25 µg mL−1 for albumin. This nano-enabled technology may be applied as a broad-range (unspecific) alert system for inexpensive cleanliness evaluation, with potential applications in sensitive sectors including productive industries and hospitals.
机译:工业和临床环境中的卫生评估对于预防健康风险至关重要。常规清洁度评估的当前技术依赖于检测特定生物分子,从而需要多于一个用于宽范围筛选的测试。这里,采用生物致摩洛族催化活性的调节金纳米粒子(AUNP)的催化活性,用于开发纳米​​型卫生筛选的纳米升性平台。通过简单的吸附在纤维素纸上固定在纤维素纸上。将铁氰化物分配到纸上时,AUNPS催化了铁氰化物的解离,释放溶解它们的游离氰基离子。 AUNP溶解产生了肉眼可检测的激烈变形。当存在生物致摩洛(例如,蛋白质和多糖)时,它们自发地连接到AuNPS,形成生物分子电晕(生物侵入),减少它们的催化活性直至当NPS完全被分子完全覆盖时完全抑制。催化活性的浓度依赖性降低用于量化生物致摩洛和复杂的样品,如牛奶,鸡蛋,酱油和酵母提取物(在20分钟内),检测限与标准方法相当,即0.25μgmL -1白蛋白。这种支持纳米的技术可以作为廉价清洁度评估的广泛(非特异性)警报系统应用,具有敏感行业的潜在应用,包括生产行业和医院。

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