School of Public Health , Hebei Medical University , Shijiazhuang 050017 , China.
ACS Appl Mater Interfaces. 2018 Dec 19;10(50):43450-43461. doi: 10.1021/acsami.8b16333. Epub 2018 Dec 5.
A simple, rapid, inexpensive, eco-friendly, and high-throughput biological strategy for the preparation of functional microspheres on a yeast-cell platform was introduced. Microspheres prepared through the treatment of yeast cells with formaldehyde and decoating buffer exhibited excellent characteristics, such as superior mechanical strength, high sulfhydryl group content, and mesoporous structure. Au nanoparticles (NPs) easily and rapidly self-assembled onto the surfaces of the yeast-based microspheres within 5 min to form rigid yeast@Au microspheres with high monodispersity and uniformity. The rapid formation of yeast@Au microspheres mainly involved the enhancement of sulfhydryl groups and mesoporosity. The yeast@Au microspheres were successfully used in a flow cytometry immunoassay to detect Pseudorabies viral infection events. Signal-to-noise ratio was enhanced by approximately 49.4-fold. The presence of Au NPs on the yeast-based microspheres greatly improved sensitivity by decreasing noise through reducing nonspecific adsorption, highly enhancing the fluorescence signal caused by the surface plasmon resonance effect, and increasing the coupling efficiency of the capture protein. The presented method was used to analyze 81 clinical swine serum specimens. The results obtained by this developed method were compared to those of commercial diagnostic kits. The sensitivity, specificity, and efficiency of the developed method were 92.31, 88.24, and 88.89%, respectively. The excellent characteristics of the yeast@Au microspheres illustrate its great potential for high-throughput immunoassay applications in the fields of disease diagnosis, environmental analysis, and food safety.
介绍了一种在酵母细胞平台上制备功能性微球的简单、快速、廉价、环保和高通量的生物策略。通过用甲醛和去壳缓冲液处理酵母细胞制备的微球具有优异的特性,如机械强度高、巯基含量高和中孔结构。金纳米粒子(NPs)在 5 分钟内很容易且快速地自组装到基于酵母的微球表面上,形成具有高单分散性和均匀性的刚性酵母@Au 微球。酵母@Au 微球的快速形成主要涉及巯基和中孔性的增强。酵母@Au 微球成功地用于检测伪狂犬病病毒感染事件的流式细胞术免疫分析。信噪比提高了约 49.4 倍。基于酵母的微球上的 Au NPs 的存在通过减少非特异性吸附来降低噪声,高度增强表面等离子体共振效应引起的荧光信号,并增加捕获蛋白的耦合效率,从而极大地提高了灵敏度。该方法用于分析 81 份临床猪血清标本。将该方法获得的结果与商业诊断试剂盒进行比较。该方法的灵敏度、特异性和效率分别为 92.31%、88.24%和 88.89%。酵母@Au 微球的优异特性表明其在疾病诊断、环境分析和食品安全等领域的高通量免疫分析应用中具有巨大潜力。