Li Song-Wei, Yu Dan-Dan, Su Ming-Zhi, Yao Li-Gong, Wang Hong, Liu Xueting, Guo Yue-Wei
Collaborative Innovation Center of Yangtze River Delta Region Green Pharmaceuticals, College of Pharmaceutical Science, Zhejiang University of Technology, Hangzhou, 310014 China.
Shandong Laboratory of Yantai Drug Discovery, Bohai Rim Advanced Research Institute for Drug Discovery, Yantai, 264117 China.
Mar Life Sci Technol. 2023 Jul 6;5(3):373-386. doi: 10.1007/s42995-023-00179-w. eCollection 2023 Aug.
Marine invertebrates serve as rich sources of secondary metabolites with intriguing chemical diversities and a wide spectrum of biological activities. Particularly, marine shell-less sacoglossan mollusks have attracted much attentions due to the fact that mollusks apply complex metabolites as chemical defense agents against to their predators. With the purpose of discovering bioactive secondary metabolites to develop marine-derived medicines from the South China Sea, we have conducted a chemical study on the photosynthetic mollusk As a result, seven new -pyrone polypropionates, namely ( ±)-ocellatuspyrone A (), ( ±)-ocellatuspyrone B (), and ocellatuspyrones C-G (, -), along with five known polypropionates, have been isolated and characterized from the South China Sea photosynthetic mollusk . Extensive spectroscopic analysis, single crystal X-ray diffraction analysis, modified Mosher's method, ECD comparison, CD exciton chirality method, TDDFT-ECD calculation, and chemical conversion were used to determine the structures and absolute configurations of the new compounds and the stereochemistry of undefined known compounds , and . All these isolated polypropionates were evaluated in bioassays for their biological activities, including antibacterial, neuroprotective effect, anti-inflammatory, PTP1B inhibitory, and antiviral activities. Compounds , and were found for the first time to show antibacterial activity against fish pathogenic bacteria (the main pathogen causing fish streptococcal infections and acute death) with MIC values of 35.8, 34.2, and 37.4 μg/mL, respectively, which might be potential novel antibacterial agents for the treatment of fish infectious diseases.
The online version contains supplementary material available at 10.1007/s42995-023-00179-w.
海洋无脊椎动物是次生代谢产物的丰富来源,具有引人入胜的化学多样性和广泛的生物活性。特别是,海洋无壳裸鳃亚目软体动物因其将复杂的代谢产物用作抵御捕食者的化学防御剂而备受关注。为了发现生物活性次生代谢产物以开发源自南海的海洋药物,我们对光合软体动物进行了化学研究。结果,从南海光合软体动物中分离并鉴定出了七种新的 - 吡喃酮聚丙酸酯,即 (±)-ocellatuspyrone A ()、(±)-ocellatuspyrone B () 以及 ocellatuspyrones C - G (, -),同时还分离出了五种已知的聚丙酸酯。通过广泛的光谱分析、单晶X射线衍射分析、改良的莫舍尔方法、ECD比较、CD激子手性方法、TDDFT - ECD计算以及化学转化来确定新化合物的结构和绝对构型以及未明确的已知化合物 、 和 的立体化学。对所有这些分离出的聚丙酸酯进行了生物活性评估,包括抗菌、神经保护作用、抗炎、PTP1B抑制和抗病毒活性。首次发现化合物 、 和 对鱼类病原菌 (引起鱼类链球菌感染和急性死亡的主要病原体)具有抗菌活性,MIC值分别为35.8、34.2和37.4 μg/mL,它们可能是治疗鱼类传染病的潜在新型抗菌剂。
在线版本包含可在10.1007/s42995 - 023 - 00179 - w获取的补充材料。