Department of Chemical Science and Engineering, National Institute of Technology (KOSEN), Miyakonojo College, Miyakonojo, Miyazaki 885-8567, Japan.
Molecules. 2019 Dec 4;24(24):4441. doi: 10.3390/molecules24244441.
From a high-potential biomass perspective, microalgae have recently attracted considerable attention due to their extensive application in many areas. Although studies searching for algal species with extensive application potential are ongoing, technical development for their assessment and maintenance of quality in culture are also critical and inescapable challenges. Considering the sensitivity of microalgae to environmental changes, management of algal quality is one of the top priorities for industrial applications. Helping substitute for conventional methods such as manual hemocytometry, turbidity, and spectrophotometry, this review presents an image-based, automated cell counter with a fluorescence filter to measure chlorophyll autofluorescence emitted by algae. Capturing chlorophyll-bearing cells selectively, the device accomplished precise qualification of algal numbers. The results for cell density using the device with fluorescence detection were almost identical to those obtained using hemocytometry. The automated functions of the device allow operators to reduce working hours, for not only cell density analysis but simultaneous multiparametric analysis such as cell size and algal status based on chlorophyll integrity. The automated device boldly supports further development of algal application and might contribute to opening up more avenues in the microalgal industry.
从高生物质潜力的角度来看,微藻因其在许多领域的广泛应用而受到了极大的关注。尽管正在进行寻找具有广泛应用潜力的藻类物种的研究,但评估和维持其在培养中的质量的技术发展也是至关重要和不可避免的挑战。考虑到微藻对环境变化的敏感性,藻类质量的管理是工业应用的首要任务之一。该综述提出了一种基于图像的、自动化的细胞计数器,带有荧光滤光片,可测量藻类发出的叶绿素自发荧光,有助于替代传统的方法,如手动血细胞计数、浊度和分光光度法。该设备选择性地捕获含有叶绿素的细胞,精确地确定藻类数量。使用荧光检测的设备测量细胞密度的结果与血细胞计数法几乎相同。该设备的自动化功能不仅允许操作人员减少工作时间,进行细胞密度分析,还可以同时进行多参数分析,如基于叶绿素完整性的细胞大小和藻类状态。自动化设备大胆地支持藻类应用的进一步发展,并可能有助于开拓微藻产业的更多途径。