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In situ fluorescence/photoacoustic monitoring of diatom algae

机译:原位荧光/光声监测硅藻藻类

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Photosynthetic single-celled diatom algae, due to their unique structure and properties, represent promising candidates for various applications in technology and biomedicine. These nanostructured objects, enveloped within a silica cell wall called a frustule, play a significant role in Earth's ecology. In this study, we proposed new techniques for monitoring the growth of diatoms-in situ fluorescence measurements using the IVIS imaging system and photoacoustic measurements with a raster scanning optoacoustic mesoscopy (RSOM) setup. Two different diatom cultures, Achnanthidium sibiricum and Encyonema silesiacum, were cultivated under the optimal conditions in the incubator and monitored over the period of 70 days. Our results showed that the total radiant efficiency increases with increasing incubation time for E. silesiacum. Simultaneously, for A. sibiricum it slightly decreases after 56 days, indicating that diatoms were at the end of their exponential growth phase. The photoacoustic signal from E. silesiacum was lower than from A. sibiricum, which is in good agreement with spectroscopic characterization results. The IVIS imaging system made it possible to assess the growth and viability of diatom cells without compromising cell integrity. In contrast, photoacoustic imaging has proved to be suitable for the rapid detection and thorough in situ assessment of the density of diatom colonies due to the presence of light-absorbing chromophores. These methods can be used to monitor the growth of diatoms and facilitate the harvesting of bioactive substances derived from diatoms for pharmaceutical and biomedical purposes.
机译:由于其独特的结构和性质,光合单细胞硅藻藻类代表了技术和生物医学中各种应用的有希望的候选者。这些纳米结构的物体包围在称为截肢的二氧化硅细胞壁内,在地球生态中发挥着重要作用。在这项研究中,我们提出了使用IVIS成像系统和光声测量来监测用于监测硅藻荧光测量的生长的新技术,以及使用光栅扫描光声介质(RSOM)设置。在培养箱的最佳条件下培养了两种不同的硅藻培养物,疼痛术,嗜酸剂和对yonyonema silesiacum,并在70天内监测。我们的研究结果表明,随着E. Silesiacum的孵育时间的增加,总辐射效率增加。同时,对于A. sibiricum,它在56天后稍微减少,表明硅藻在其指数增长阶段结束时。来自E. Silesiacum的光声信号低于A.Sibiricum,与光谱表征结果很好。 IVIS成像系统使得可以评估硅藻细胞的生长和活力而不损害细胞完整性。相比之下,由于存在光学发色团的存在,已经证明了光声成像适用于原位评估硅藻菌落密度的快速检测和彻底。这些方法可用于监测硅藻的生长,并促进用于药物和生物医学目的的硅藻的生物活性物质的收获。

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