D Basavaraja, Dey Dibyendu, T L Varsha, Thodi F Salfeena Chettiyan, Panda Manas K, Somappa Sasidhar B
Chemical Sciences & Technology Division, CSIR-National Institute for Interdisciplinary Science & Technology (NIIST), Thiruvanthapuram-695019, Kerala India.
Academy of Scientific and Innovative Research (AcSIR), Ghaziabad 201002, India.
ACS Appl Bio Mater. 2020 Feb 17;3(2):772-778. doi: 10.1021/acsabm.9b00711. Epub 2020 Jan 21.
Amines are ubiquitous in biological world, but are toxic and harmful in nature. Detection of biogenic amines that are released from spoiled seafood, meat, or dairy products is an important task to maintain the quality and safety of these packaged foods. To this endeavor, herein we report pyrylium salts that are capable of sensing various amines by rapid change of fluorescence color or intensity. In molecular level, this change of fluorescence is rooted to the formation of pyridine or analogous product that have distinct optical property. The pyrylium salts are capable of efficiently sensing amine vapors or amine solutions both in solid state and in solution state and thus demonstrating a multiphase sensing platform. Utilizing the excellent sensing property, we have employed our pyrylium compounds as spoilage indicator for food products such as fish, meat or cheese which relies on sensing biogenic amines released from these spoiled foods and provide optical response. Prominent change in visible and luminescence color was observed within 4-18 h of packaging at room temperature (∼33 °C). Considering the rapid response for biogenic amines, these molecular sensors have great potential to be utilized for food packaging industry, medical diagnostics, or other sensory devices.
胺类物质在生物界广泛存在,但本质上具有毒性和危害性。检测从变质海鲜、肉类或乳制品中释放出的生物胺,对于维持这些包装食品的质量和安全而言是一项重要任务。为此,我们在此报告了一类能够通过荧光颜色或强度的快速变化来传感各种胺类物质的吡喃鎓盐。在分子层面,这种荧光变化源于具有独特光学性质的吡啶或类似产物的形成。这些吡喃鎓盐能够在固态和溶液状态下高效地传感胺类蒸汽或胺类溶液,从而展示出一个多相传感平台。利用其出色的传感特性,我们已将我们的吡喃鎓化合物用作鱼、肉或奶酪等食品的变质指示剂,该指示剂依赖于传感从这些变质食品中释放出的生物胺并提供光学响应。在室温(约33°C)下包装4 - 18小时内,观察到可见颜色和发光颜色有显著变化。鉴于对生物胺的快速响应,这些分子传感器在食品包装行业、医学诊断或其他传感设备中具有巨大的应用潜力。