Cevenini Luca, Calabretta Maria Maddalena, Lopreside Antonia, Tarantino Giuseppe, Tassoni Annalisa, Ferri Maura, Roda Aldo, Michelini Elisa
Department of Chemistry "G. Ciamician", University of Bologna, Via Selmi 2, 40126, Bologna, Italy.
Centro Interdipartimentale di Ricerche sul Cancro "Giorgio Prodi" (CIRC), Bologna, Italy.
Anal Bioanal Chem. 2016 Dec;408(30):8859-8868. doi: 10.1007/s00216-016-0062-3. Epub 2016 Nov 16.
The availability of smartphones with high-performance digital image sensors and processing power has completely reshaped the landscape of point-of-need analysis. Thanks to the high maturity level of reporter gene technology and the availability of several bioluminescent proteins with improved features, we were able to develop a bioluminescence smartphone-based biosensing platform exploiting the highly sensitive NanoLuc luciferase as reporter. A 3D-printed smartphone-integrated cell biosensor based on genetically engineered Hek293T cells was developed. Quantitative assessment of (anti)-inflammatory activity and toxicity of liquid samples was performed with a simple and rapid add-and-measure procedure. White grape pomace extracts, known to contain several bioactive compounds, were analyzed, confirming the suitability of the smartphone biosensing platform for analysis of untreated complex biological matrices. Such approach could meet the needs of small medium enterprises lacking fully equipped laboratories for first-level safety tests and rapid screening of new bioactive products. Graphical abstract Smartphone-based bioluminescence cell biosensor.
具备高性能数字图像传感器和处理能力的智能手机的出现,彻底重塑了即时分析的格局。得益于报告基因技术的高度成熟以及几种具有改进特性的生物发光蛋白的可得性,我们得以开发出一种基于智能手机的生物发光生物传感平台,该平台利用高灵敏度的纳米荧光素酶作为报告基因。我们开发了一种基于基因工程改造的Hek293T细胞的3D打印集成智能手机细胞生物传感器。通过简单快速的添加和测量程序,对液体样品的(抗)炎活性和毒性进行了定量评估。对白葡萄渣提取物进行了分析,已知其含有多种生物活性化合物,这证实了智能手机生物传感平台适用于分析未经处理的复杂生物基质。这种方法可以满足缺乏配备齐全实验室进行一级安全测试和快速筛选新生物活性产品的中小企业的需求。图形摘要 基于智能手机的生物发光细胞生物传感器。