Exploring the Appetite Inhibition Potential of Bioactive Metabolites from Cyanobacterial Strains

A. Fonseca, Javier Sanz Moxó, V. Vasconcelos, Mariana A. Reis, R. Urbatzka
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Abstract

: Higher food intake promotes obesity, a critical public health challenge with increasing prevalence worldwide. Selective modulators of appetite can be applied as therapeutic intervention. Nevertheless, currently the appetite suppressant drugs trigger severe side effects, such as anxiety and depression. For that reason, there is a priority to discover new pharmaceuticals. In this study, a library of 117 cyanobacterial fractions from marine and freshwater environments belonging to The Blue Biotechnology and Ecotoxicology Culture Collection (LEGE-CC) of CIIMAR (Interdisciplinary Centre of Marine and Environmental Research) were screened for their ability to interfere in the food intake behavior of zebrafish larvae—a whole small animal model. Two different bioassays were performed for appetite-reducing activity, using fluorescent stained liposomes (passive food intake) or Paramecia bursaria (active food intake). Three cyanobacterial fractions from the order Nostocales, Chroococcidiopsidales and Pleurocapsales expressed appetite-suppression bioactivity in the liposomes assay, while three different fractions from the order Synechococcales, Oscilatoriales and Nostocales significantly reduced the appetite in the Paramecium assay. To highlight putatively associated metabolites for the bioactivities, dereplication by metabolomics approaches (LC-MS/MS) was performed, as well as a bioactivity-guided feature-based molecular networking using GNPS, and four compounds were positively correlated to the bioactivity. No matches were found in any database for these molecules, indicating putatively new compounds. Molecular analyses are currently ongoing to discover the involved genes that regulate the passive and active food intake in zebrafish larvae, and consequently uncover the mechanisms of action.
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探索蓝藻菌株生物活性代谢物的食欲抑制潜力
食物摄入增加会促进肥胖,这是一项重大的公共卫生挑战,在世界范围内日益流行。选择性食欲调节剂可作为治疗干预。然而,目前的食欲抑制药物会引发严重的副作用,如焦虑和抑郁。因此,开发新药是当务之急。本研究从CIIMAR(海洋与环境研究跨学科中心)的蓝色生物技术与生态毒理学培养库(LEGE-CC)中筛选了117个来自海洋和淡水环境的蓝藻菌组分,以研究它们对斑马鱼幼体(一个完整的小动物模型)进食行为的干扰能力。使用荧光染色脂质体(被动食物摄入)或草草虫(主动食物摄入)进行两种不同的食欲降低活性生物测定。在脂质体实验中,来自褐藻目、Chroococcidiopsidales和Pleurocapsales的3个蓝藻菌组分表现出抑制食欲的生物活性,而来自聚球菌目、振荡球菌目和褐藻目的3个不同组分在草履虫实验中显著降低了食欲。为了突出推测与生物活性相关的代谢物,通过代谢组学方法(LC-MS/MS)进行了去复制,并使用GNPS进行了生物活性引导特征的分子网络,发现4个化合物与生物活性呈正相关。在任何数据库中都没有发现这些分子的匹配,这表明推定是新的化合物。目前正在进行分子分析,以发现调节斑马鱼幼虫被动和主动食物摄入的相关基因,从而揭示其作用机制。
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