College of Science and Engineering, Flinders University, Bedford Park, 5042, Australia.
Institute for NanoScale Science and Technology, Flinders University, Bedford Park, 5042, Australia.
Small. 2024 Nov;20(47):e2402463. doi: 10.1002/smll.202402463. Epub 2024 Aug 19.
Mass production of microalgae is a research focus owing to their promising aspects for sustainable food, biofunctional compounds, nutraceuticals, and biofuel feedstock. This study uses a novel approach to enhance microalgae-derived biomass and metabolites by using an aggregation-induced emission (AIE) photosensitizer (PS), CN-TPAQ-PF ([CHN]). The unique AIE features of CN-TPAQ-PF facilitate nano-aggregation in aquatic media for an effective light spectral shift for photosynthetic augmentation in a green microalga, Chlamydomonas reinhardtii. The high reactive oxygen species (ROS) production capacity and redox-based cellular modulations reveal its potential to upsurge algal growth and lipid biosynthesis and fabricate fatty acid profiles in the metabolic pathways. Algal cells are labeled with other AIE-based nanoprobes, which are suitable as an in vivo visualization toolkit with superior fluorescence. Furthermore, cytotoxicity analysis of CN-TPAQ-PF on the HaCat cell line confirms that this AIE PS is biocompatible without adverse impact on living cells. The results demonstrate the property of AIE PS for the first time in enhancing algal growth and lipid accumulation simultaneously.
大规模生产微藻是一个研究重点,因为它们在可持续食品、生物功能化合物、营养保健品和生物燃料原料方面具有广阔的前景。本研究采用一种新颖的方法,通过使用聚集诱导发射(AIE)光敏剂(PS)CN-TPAQ-PF([CHN])来增强微藻衍生的生物量和代谢物。CN-TPAQ-PF 的独特 AIE 特性有助于在水介质中形成纳米聚集,从而有效地进行光光谱位移,以增强绿色微藻莱茵衣藻的光合作用。高活性氧(ROS)产生能力和基于氧化还原的细胞调节作用表明,它有可能促进藻类生长和脂质生物合成,并在代谢途径中构建脂肪酸图谱。用其他基于 AIE 的纳米探针对藻类细胞进行标记,这些探针适合作为具有优越荧光的体内可视化工具包。此外,CN-TPAQ-PF 对 HaCat 细胞系的细胞毒性分析证实,这种 AIE PS 具有生物相容性,对活细胞没有不良影响。结果首次证明了 AIE PS 在促进藻类生长和脂质积累方面的特性。