CAS Key Laboratory of Algal Biology, Institute of Hydrobiology, Chinese Academy of Sciences, Wuhan 430072, China; College of Advanced Agricultural Sciences, University of Chinese Academy of Sciences, Beijing 100049, China; Institute of Marine and Environmental Technology, University of Maryland Center for Environmental Science, Baltimore, MD 21202, USA.
CAS Key Laboratory of Algal Biology, Institute of Hydrobiology, Chinese Academy of Sciences, Wuhan 430072, China.
Harmful Algae. 2024 May;135:102635. doi: 10.1016/j.hal.2024.102635. Epub 2024 May 13.
Ongoing research on cyanotoxins, driven by the socioeconomic impact of harmful algal blooms, emphasizes the critical necessity of elucidating the toxicological profiles of algal cell extracts and pure toxins. This study comprehensively compares Raphidiopsis raciborskii dissolved extract (RDE) and cylindrospermopsin (CYN) based on Daphnia magna assays. Both RDE and CYN target vital organs and disrupt reproduction, development, and digestion, thereby causing acute and chronic toxicity. Disturbances in locomotion, reduced behavioral activity, and weakened swimming capability in D. magna have also been reported for both RDE and CYN, indicating the insufficiency of conventional toxicity evaluation parameters for distinguishing between the toxic effects of algal extracts and pure cyanotoxins. Additionally, chemical profiling revealed the presence of highly active tryptophan-, humic acid-, and fulvic acid-like fluorescence compounds in the RDE, along with the active constituents of CYN, within a 15-day period, demonstrating the chemical complexity and dynamics of the RDE. Transcriptomics was used to further elucidate the distinct molecular mechanisms of RDE and CYN. They act diversely in terms of cytotoxicity, involving oxidative stress and response, protein content, and energy metabolism, and demonstrate distinct modes of action in neurofunctions. In essence, this study underscores the distinct toxicity mechanisms of RDE and CYN and emphasizes the necessity for context- and objective-specific toxicity assessments, advocating nuanced approaches to evaluate the ecological and health implications of cyanotoxins, thereby contributing to the precision of environmental risk assessments.
目前,有害藻类水华导致的社会经济影响推动了对蓝藻毒素的研究,该研究强调阐明藻细胞提取物和纯毒素的毒理学特征的必要性。本研究通过大型溞试验全面比较了莱茵衣藻溶解提取物(RDE)和柱胞藻毒素(CYN)。RDE 和 CYN 均靶向重要器官,并破坏生殖、发育和消化,从而导致急性和慢性毒性。RDE 和 CYN 也会导致大型溞运动障碍、行为活性降低和游泳能力减弱,这表明传统的毒性评估参数不足以区分藻提取物和纯蓝藻毒素的毒性效应。此外,化学特征分析表明,在 15 天内,RDE 中存在高活性色氨酸、腐殖酸和富里酸样荧光化合物以及 CYN 的活性成分,表明 RDE 的化学复杂性和动态变化。转录组学进一步阐明了 RDE 和 CYN 的不同分子机制。它们在细胞毒性方面表现出不同的作用,涉及氧化应激和反应、蛋白质含量和能量代谢,并在神经功能方面表现出不同的作用模式。本质上,本研究强调了 RDE 和 CYN 的不同毒性机制,并强调了针对具体情况和具体目标进行毒性评估的必要性,倡导采用细致的方法来评估蓝藻毒素对生态和健康的影响,从而提高环境风险评估的准确性。